[00:00.760 --> 00:02.160] ...camera with a flash. [00:02.380 --> 00:04.340] That flash device is actually an EMP device. [00:04.780 --> 00:07.040] And I measure the voltage and the capacitance. [00:07.220 --> 00:09.960] And I'm able to figure out the energy that's produced from it. [00:10.720 --> 00:12.360] And I calculate the energy. [00:12.540 --> 00:22.820] And also it's documented that other people have done it on a center fuel tank and tried to figure out how many millijoules or joules of energy we needed to have that center fuel tank explode. [00:23.360 --> 00:24.740] EMP device and a camera. [00:26.100 --> 00:27.140] Power and joules. [00:27.400 --> 00:32.600] It's one half of the capacitance times the voltage squared. [00:33.400 --> 00:35.920] I talk about the power grid, power quality, and Tesla coil. [00:37.220 --> 00:43.380] The history of EMP, the Compton Effect, the H-bomb, Tesla coil, Marx Generator, explosive devices, armatures. [00:44.380 --> 00:46.080] The H-bomb, Starfish. [00:46.180 --> 00:47.700] This is what really started it all off. [00:47.860 --> 00:51.480] In 1962, they exploded an H-bomb about 800 miles from Hawaii. [00:52.260 --> 00:56.240] 30 strings of street lights went out and 300 street lights all in all went out. [00:57.060 --> 01:00.560] And they attributed it to just this H-bomb, the electromagnetic pulse. [01:01.500 --> 01:06.760] There's a lot of conflicting information that I've gotten about whether or not this really happened as it was said. [01:06.760 --> 01:17.600] They never developed a type of scientific process to see how much the input pulse disabled things or whether it really was a cause. [01:17.840 --> 01:18.940] But this is the history. [01:19.740 --> 01:21.140] The Marx Generator. [01:21.280 --> 01:23.900] I again use the Marx Generator in developing all these pulses. [01:24.240 --> 01:25.440] Invented in 1924. [01:25.840 --> 01:27.560] It's a novel concept to create high voltage. [01:32.050 --> 01:39.470] I'm sorry I've got to take drinks, but the medication that gives me dry mouth and I need all the caffeine I can stand. [01:41.210 --> 01:43.310] It's a novel concept to create high voltages. [01:43.790 --> 01:45.330] Capacitors charge in parallel. [01:46.090 --> 01:47.850] The capacitors are then discharged in series. [01:48.930 --> 01:50.090] Pulse injecting. [01:50.270 --> 01:51.250] Electrical lines. [01:51.370 --> 01:52.170] Telephone cable. [01:52.510 --> 01:53.470] Coax network. [01:53.990 --> 01:54.530] Grounding scrap. [01:54.530 --> 01:56.830] I found my favorite thing to use is a grounding scrap. [01:57.110 --> 02:01.110] Because a grounding scrap has access to everything. [02:01.270 --> 02:01.970] Everything is well. [02:02.050 --> 02:02.930] We put it to ground. [02:03.710 --> 02:05.210] And I find that it's a... [02:05.210 --> 02:12.550] The only people who would actually know never to use a grounding scrap for grounding were people who did serious work with Tesla coils. [02:12.870 --> 02:16.370] Because they would know that you'll fry all your electronics. [02:16.790 --> 02:19.790] But nobody else would know that. [02:22.830 --> 02:24.170] Dumb digital devices. [02:24.750 --> 02:26.230] Some digital devices I found. [02:26.450 --> 02:28.470] And usually it's just stupid calculators. [02:28.750 --> 02:29.970] They just keep on going. [02:30.210 --> 02:33.490] Putting any numbers on the display. [02:33.890 --> 02:35.890] No matter how much you pulse and everything else. [02:36.750 --> 02:37.970] They just keep on working. [02:38.130 --> 02:39.890] And you're going to see samples of this. [02:40.610 --> 02:43.730] It's also a type of EMP fuzzing when you inject these pulses. [02:44.610 --> 02:46.710] Because the microprocessor is picking up these pulses. [02:47.910 --> 02:49.390] And it's just randomness. [02:49.530 --> 02:50.030] They don't know what to do. [02:50.110 --> 02:55.170] Unless it has a sophisticated algorithm to see whether or not this is actually garbage. [02:57.450 --> 02:58.790] Smart devices, what they do? [02:58.930 --> 02:59.790] They reboot. [03:00.170 --> 03:01.650] And I'll show you device rebooting. [03:02.990 --> 03:05.930] Unfortunately, I killed a laptop that I did have. [03:06.290 --> 03:07.970] I did destroy the hard drive. [03:08.390 --> 03:09.810] And I just about killed it. [03:10.330 --> 03:12.430] But I did have a demo that I was going to do. [03:12.550 --> 03:14.270] Which shows I booted with Linux. [03:14.590 --> 03:16.330] And it stops as an error message. [03:16.650 --> 03:18.070] Then I booted with Windows 98. [03:18.310 --> 03:19.350] And it stops as an error message. [03:19.810 --> 03:21.690] I also had a new Acer computer. [03:21.750 --> 03:24.390] Which was only like 15 months old. [03:24.550 --> 03:26.870] And it needed a new motherboard and processor. [03:27.570 --> 03:29.210] And also the hard drive went. [03:29.330 --> 03:30.630] And then the optical device went. [03:31.150 --> 03:36.650] And again, this was before I was just knowledgeable that these processes are much more sensitive. [03:36.830 --> 03:38.410] And there is an aging to them. [03:41.550 --> 03:42.790] Controlling the network of devices. [03:42.950 --> 03:45.730] As long as you keep pulsing, they cannot bring the network up. [03:46.130 --> 03:48.530] Again, Linux, UNIX, Sun, Windows, routers. [03:48.710 --> 03:49.830] They will not be able to reboot. [03:50.670 --> 03:53.710] Moore's law, every 18 months, the number of transistors doubles. [03:53.790 --> 03:55.870] That can be put on a silicone wafer. [03:55.870 --> 03:58.810] Again, as you decrease the die size. [03:58.950 --> 03:59.790] And decrease the voltages. [04:00.470 --> 04:01.910] Things are becoming much more susceptible. [04:04.830 --> 04:07.590] Not all electromagnetic pulses are the same. [04:08.490 --> 04:09.570] You have some known pulse width. [04:10.050 --> 04:11.310] The pulse rise time. [04:11.450 --> 04:12.090] The pulse rate. [04:12.370 --> 04:13.590] The harmonics that are generated. [04:13.830 --> 04:14.310] The frequency. [04:15.730 --> 04:20.990] I should have set up a demonstration with a Marx generator as a null test. [04:21.190 --> 04:24.370] Showing that even though I have Marx generator and I'm creating pulses, nothing happens. [04:24.370 --> 04:30.390] Because these pulses are not combination of rise time and intensity and frequency. [04:31.250 --> 04:32.610] That they'll disturb something. [04:33.230 --> 04:37.150] Which, by the way, I say, if anybody... you're going to have my phone number and card. [04:37.410 --> 04:40.650] If anybody wants to challenge me, I can show them some place. [04:40.950 --> 04:43.510] And I'm... they take all challenges. [04:43.670 --> 04:47.770] It's very possible somebody could set up a Marx generator and say, Hey, I can't reproduce this guy's experiment. [04:49.830 --> 04:51.070] Byzantine faults. [04:51.490 --> 04:53.230] Large real time distributive systems. [04:53.650 --> 04:56.870] What is a big Byzantine fault problem today? [04:57.250 --> 05:00.490] It's the robotically controlled airlines. [05:02.870 --> 05:07.570] And pulsing one of them would just be right up its alley to disable it. [05:08.530 --> 05:10.790] Both Boeing and... [05:12.010 --> 05:18.970] Airbus have tried to use different operating systems on different devices, different schemas, network protocols. [05:19.250 --> 05:24.650] They tried to mix it up enough so that no worm, no one virus could be lethal to everything. [05:25.370 --> 05:27.010] My pulses are lethal to everything. [05:29.950 --> 05:31.490] Supervisors control data acquisition. [05:31.490 --> 05:35.810] Well, these are the large scale real time distributive systems that control a number of things. [05:36.510 --> 05:40.570] Obviously, you do not want somebody injecting pulses into any of these systems. [05:43.890 --> 05:48.230] As we go green, we're increasingly more and more microprocessor dependent. [05:50.210 --> 05:51.050] Robotic trains. [05:51.410 --> 05:53.250] In New York City, we have the L train now. [05:53.390 --> 05:54.390] In this instance, totally robotic. [05:54.730 --> 05:58.170] There is one motorman up front, but there's no conductor. [06:00.250 --> 06:05.310] And I think robotic trains can be particularly susceptible to this. [06:05.590 --> 06:06.770] One thing that they've never... [06:06.770 --> 06:11.550] I've never gotten information about, the third rail arcing actually current makes pulses. [06:12.730 --> 06:20.030] I don't know if it's out of the frequency or spectrum that it's a problem, or it's that they did record it, they know what it is, and they filtered it out. [06:20.670 --> 06:25.550] But again, you can inject pulses into it that is outside this filter range. [06:27.490 --> 06:28.690] Fly-by-wire again. [06:29.150 --> 06:30.410] The Boeing, I prefer Boeing. [06:30.530 --> 06:31.510] The pilot is in control. [06:31.930 --> 06:33.450] Airbus, the computer is in control. [06:34.190 --> 06:41.830] In Airbus, the pilot can only go within a certain range of attitudes with the aircraft. [06:42.070 --> 06:44.290] The computer is overruling them. [06:44.710 --> 06:46.750] Boeing, the pilot is always in control. [06:47.030 --> 06:48.810] The computer is just there to augment them. [06:51.410 --> 06:52.990] T-W flight 800. [06:53.570 --> 06:54.690] Let me just take a drink. [06:59.460 --> 07:05.320] There was a test, and I think it was on a 737 main fuel tank, not on T-W flight. [07:05.520 --> 07:08.080] And it was on, I think, Science Magazine, Science Channel. [07:08.900 --> 07:14.620] Basically, they found that 75 millijoules injected into the tank could cause it to explode. [07:16.760 --> 07:23.960] The one thing, if you did inject these pulses into an aircraft, the flight recorder probably would record some artifacts. [07:24.520 --> 07:32.660] You'd probably see some artifacts of spike, or at least some ringing, because they'd actually be some type of ringing as it reverberates through the network. [07:34.260 --> 07:38.840] And again, this ringing, probably, they would not, if they saw the ringing, they would not understand what it means. [07:40.100 --> 07:41.140] And certainly, none of the others do. [07:42.240 --> 07:43.960] Again, power, capacitance. [07:45.040 --> 07:47.080] I measured the capacitance. [07:47.240 --> 07:53.380] This is from one of those simple cameras, you know, the throwaway camera, with the strobe that you throw away for $10. [07:54.460 --> 07:57.980] And the capacitance was 102 microfarads. [07:57.980 --> 08:02.700] The voltage was about 300 volts, probably 4.5 joules of energy. [08:02.940 --> 08:09.640] So it was well outside the range, where it could actually, if you injected it from just this camera, it could cause a center fuel tank explosion. [08:09.800 --> 08:12.980] Doesn't mean it did, but it could... [08:13.620 --> 08:17.180] Air France, this one went down. [08:17.420 --> 08:19.100] I don't want to talk too much about this. [08:19.720 --> 08:22.020] I was waiting for them to recover the flight recorder. [08:22.260 --> 08:24.100] This was a robotically controlled plane, too. [08:25.720 --> 08:37.620] If some of these robotically, Air France, robotically controlled planes, especially the Airbus, start going down, or disappearing mysteriously, I would say there's a good chance somebody's injecting pulses into them. [08:39.460 --> 08:41.420] Hospitals, their microprocessors are rich. [08:41.980 --> 08:44.920] They have a combination of dumb devices, smart devices. [08:45.960 --> 08:50.880] Smart devices, somebody will always have to reset them, or they'll try to reboot, or they'll turn themselves off. [08:53.540 --> 08:54.500] The power grid. [08:54.700 --> 08:56.920] We have three main power grids and subgrids. [08:57.160 --> 09:01.620] We have an east grid, a west grid, and a Texas grid. [09:02.040 --> 09:03.280] We also have something else. [09:03.420 --> 09:09.660] And again, this is covered more in my other talk on injecting pulses into the electric grid and infrastructure. [09:10.860 --> 09:16.280] And again, this is something that Homeland Security or the other people would not think of or anything else. [09:16.420 --> 09:21.180] They do not think of it coming from this type of a vector or that you can build a device powerful. [09:21.360 --> 09:22.600] You don't need that much power. [09:23.180 --> 09:25.420] You really don't need as much power as people think. [09:25.860 --> 09:27.920] Certainly not to black out Queens and Brooklyn. [09:27.920 --> 09:29.140] And that's pretty big. [09:30.380 --> 09:36.140] You're going to need to run your pulsing devices longer to cause the transformers to fail, the insulation. [09:36.580 --> 09:40.740] But to bring down the microprocessor controls, it'll go down in about five minutes. [09:42.120 --> 09:44.000] And they won't understand what's going on either. [09:45.620 --> 09:46.500] Power quality. [09:47.060 --> 09:50.200] Again, this is something that can be affected by injecting pulses into the grid. [09:50.640 --> 09:54.260] Inductance, capacitance, harmonics, transients. [09:56.540 --> 10:03.800] The gadget that I'm talking about, I think to bring down the whole grid in the United States, I think you'd be about 20 to 30 of them. [10:04.300 --> 10:06.880] And the total cost would be about $25,000 to $35,000. [10:07.460 --> 10:08.500] It's not really a lot of money. [10:09.540 --> 10:12.320] The gadget would be about 60% based on the Tesla coil. [10:15.800 --> 10:19.480] I would probably try to use solid-state MOSFETs. [10:19.580 --> 10:21.280] And that's what I'm using on the Marx generator. [10:21.280 --> 10:23.740] And when you see the video of it... [10:24.640 --> 10:25.540] Stand by for the video. [10:25.620 --> 10:27.320] The videos are much more interesting than the... [10:27.320 --> 10:28.420] You'll remember the videos. [10:28.520 --> 10:29.120] You won't remember this. [10:30.680 --> 10:33.820] Unfortunately, you have a good deal of problem with fractricide. [10:34.100 --> 10:37.580] That you end up destroying your own solid-state devices after a while. [10:39.520 --> 10:39.780] That's a problem. [10:40.380 --> 10:41.400] The tube... this is... [10:41.840 --> 10:43.100] A33A is a vacuum tube. [10:43.300 --> 10:44.460] And a lot of people use it. [10:44.620 --> 10:47.120] And it's indestructible from electromagnetic pulse. [10:48.540 --> 10:50.420] That's also something that's an idea. [10:52.220 --> 10:53.340] Grid stresses. [10:53.680 --> 10:55.260] What stresses the electric grid? [10:55.600 --> 10:56.660] High temperatures. [10:57.580 --> 10:58.940] New windows viruses. [10:59.240 --> 11:01.200] Because there's a windows change cycle. [11:01.360 --> 11:02.540] There's a change cycle that... [11:02.540 --> 11:04.720] Some of these supervising control data records... [11:04.720 --> 11:05.880] They actually want windows. [11:06.240 --> 11:07.840] Not everybody's up-to-date on the windows. [11:08.800 --> 11:10.060] Software change cycle. [11:10.060 --> 11:12.140] When there's a new change to this... [11:12.140 --> 11:14.440] Supervisor control version. [11:14.880 --> 11:15.420] Hot weather. [11:16.240 --> 11:17.540] Injecting pulses into the grid. [11:17.660 --> 11:18.520] That's another stressor. [11:19.720 --> 11:21.500] And again, it's not something that they would understand. [11:23.160 --> 11:24.740] Bringing down an automatic power grid. [11:24.840 --> 11:26.940] I believe 20, 30 devices will do it. [11:27.280 --> 11:29.740] I didn't build the Tesla coil yet. [11:30.380 --> 11:32.100] I've been gaining more information. [11:32.500 --> 11:34.000] I've been sick for a while. [11:34.260 --> 11:35.300] For the past two years. [11:35.400 --> 11:36.740] I haven't been able to build it yet. [11:36.900 --> 11:38.380] But I will be able to build it. [11:38.380 --> 11:39.020] And it's doable. [11:39.820 --> 11:40.240] And... [11:41.100 --> 11:41.860] I mean... [11:42.380 --> 11:42.740] Basically... [11:42.740 --> 11:45.880] You could probably take the Marx generator type device. [11:46.120 --> 11:47.480] To one police plaza. [11:48.040 --> 11:49.300] Or to... [11:49.300 --> 11:50.620] 166th Street. [11:50.860 --> 11:52.480] On Jamaica Avenue. [11:52.700 --> 11:55.160] Which is where NYPD has their... [11:56.080 --> 11:57.020] Forensic labs. [11:57.340 --> 11:58.240] And take everything out. [11:59.140 --> 12:00.040] But it's doable. [12:01.500 --> 12:04.560] What it is, is that this is tremendously asymmetrical. [12:04.780 --> 12:06.040] And that... [12:06.040 --> 12:10.680] For a relatively small device, you can produce large scale disturbances. [12:10.960 --> 12:13.280] Because these microprocessors are just so sensitive. [12:16.560 --> 12:17.080] Um... [12:17.080 --> 12:18.780] And again, if you inject it into wired systems. [12:23.460 --> 12:23.980] Now... [12:23.980 --> 12:26.920] Let me go to something really fascinating and interesting. [12:30.680 --> 12:31.040] Um... [12:32.420 --> 12:34.200] Let me do a dumb device first. [12:35.060 --> 12:36.960] And the only reason why I call it a dumb device is because... [12:40.410 --> 12:42.650] I probably should have plugged the sound in. [12:45.840 --> 12:47.340] Can everybody hear it or not really? [12:48.400 --> 12:49.580] Can everybody see the number of strings? [12:50.160 --> 12:51.380] Yeah, this is a dumb device. [12:51.500 --> 12:52.200] This, uh... [12:52.200 --> 12:54.680] No matter how much I probably just, um... [12:54.680 --> 12:55.960] You also hear my power keys in the background. [12:56.180 --> 12:58.260] It just keeps recording any stupid number can. [12:59.420 --> 13:01.500] Generally, stand alone type devices. [13:02.140 --> 13:03.420] Like a pressure sensor. [13:04.360 --> 13:05.600] A temperature sensor. [13:05.600 --> 13:07.740] Anything else that's collected through a supervised control data. [13:08.020 --> 13:09.080] Would be a dumb type device. [13:09.400 --> 13:12.500] Basically, it would be an analog device reading this. [13:12.960 --> 13:15.600] And then it's digitized and out on the network. [13:17.480 --> 13:18.700] The batteries are running down. [13:18.820 --> 13:19.600] That's why you don't... [13:19.600 --> 13:21.360] But again, this is a dumb device. [13:21.800 --> 13:24.180] And again, that's my Spark app in the background. [13:31.000 --> 13:32.700] Can everybody see that well enough or... [13:36.730 --> 13:37.170] What? [13:37.370 --> 13:38.910] The sound... [13:38.910 --> 13:39.150] What? [13:40.130 --> 13:40.570] The sound... [13:40.570 --> 13:43.170] No, the sound is from the Marx generator pulsing. [13:44.570 --> 13:50.110] Unfortunately, one other thing about the Marx generator is, as you go up in power, they become really, really loud. [13:50.290 --> 13:54.750] And big generators, you actually have to hear air muffs because it's over 135 decibels. [13:56.010 --> 13:58.990] But I think I got a way to fix that. [13:59.770 --> 14:01.570] Let me see which other one I want to do. [14:01.570 --> 14:03.570] Let me do the... [14:05.910 --> 14:06.730] I got... [14:06.730 --> 14:07.570] Believe me, I got... [14:12.960 --> 14:14.240] Oh, here it is over here. [14:20.780 --> 14:24.900] This would be considered a smart device because what happens is that it shuts... [14:24.900 --> 14:25.980] It turns itself off. [14:27.540 --> 14:30.440] It turns itself off when I try to pulse it. [14:30.500 --> 14:32.560] I keep trying to put numbers in it and it just... [14:32.560 --> 14:33.700] It just keeps going off. [14:33.880 --> 14:38.820] You can't really see too much, but the smarter devices, the most of them are much more sensitive. [14:38.820 --> 14:40.040] I don't have to show them... [14:40.040 --> 14:42.160] The dumb thing that I was holding right over there. [14:42.420 --> 14:44.920] This I'm holding at a greater distance away. [14:45.220 --> 14:46.700] They're just much more sensitive. [14:47.080 --> 14:49.760] And, of course, this doesn't work too well anymore because... [14:52.080 --> 14:53.780] So, again, this is turning itself off. [14:56.520 --> 14:57.940] And, again, that's the Marx generator. [14:58.060 --> 14:59.380] That's the pulses that you're hearing. [15:01.580 --> 15:03.600] What happens is the Marx generator is misfiring. [15:03.780 --> 15:05.580] You hear a pulse, but it's not fine here. [15:05.680 --> 15:05.940] It's misfiring. [15:28.800 --> 15:29.700] You're going to see it. [15:30.080 --> 15:33.440] I'm going to do the very last one, which is the Transformer. [15:33.980 --> 15:36.300] I did it twice with a Sony video cam. [15:36.800 --> 15:39.780] And just when I turn the Marx generator on, my wife is holding the video cam. [15:39.780 --> 15:40.820] It gets blown. [15:43.660 --> 15:44.820] She's about six, seven feet. [15:45.840 --> 15:47.060] But this is the same Marx generator. [15:47.320 --> 15:49.920] What happened is I have the wire... [15:49.920 --> 15:53.920] Since I have a Transformer and I want to spread it out so you can see it, I have basically a large antenna. [15:54.660 --> 15:57.040] So, the greater my antenna, the more problems I can find. [15:57.280 --> 16:01.560] I do have something designed that it will take out a couple buildings. [16:01.560 --> 16:04.300] Or I think that I can take out a burrow easily. [16:04.920 --> 16:06.380] But only with just a Tesla car. [16:06.540 --> 16:08.840] Again, I'm going through, I'm going through electric wiring. [16:09.040 --> 16:10.440] So, but I'll show you. [16:10.620 --> 16:11.920] My camera's not happy. [16:15.700 --> 16:16.140] And... [16:17.620 --> 16:19.680] Let me show you something else here. [16:19.940 --> 16:20.040] Okay. [16:29.360 --> 16:35.400] Right now, what I'm showing you is I'm connecting a wire up to an outlet. [16:35.760 --> 16:39.600] And I'm connecting this part of this wire up to one part of my spark gap. [16:40.360 --> 16:42.520] And it's plugged into a metal outlet. [16:43.100 --> 16:45.300] And again, you hear my parakeets over there. [16:45.760 --> 16:47.420] And it's connected to one side. [16:47.600 --> 16:51.220] And what I just want to demonstrate is that these pulses readily travel through. [16:51.220 --> 16:52.240] Any type of conductor. [16:52.780 --> 16:53.320] Very readily. [16:54.080 --> 16:55.660] You're attached to the ground wire to them? [16:56.460 --> 16:56.900] No. [16:57.360 --> 16:57.960] I don't ground. [16:58.100 --> 16:59.300] Everything is floating. [17:00.000 --> 17:02.300] And with the Tesla coil, everything will be floating. [17:06.310 --> 17:08.610] What happened is that I try to... [17:08.610 --> 17:09.370] You can't see it. [17:09.430 --> 17:10.310] I have the video camera set up. [17:10.370 --> 17:11.570] I eventually have to get my wife. [17:11.790 --> 17:14.530] And you will see the numbers disappearing on this. [17:14.730 --> 17:16.190] So, it does go through wire. [17:17.030 --> 17:17.270] No. [17:17.530 --> 17:18.410] Even the Tesla coil. [17:18.530 --> 17:19.230] Everything is floating. [17:26.790 --> 17:28.650] By the way, if anybody's interested in robotics. [17:28.650 --> 17:32.310] I want to design an EMP package to go in somebody's robot. [17:32.550 --> 17:33.690] For a robot warrior. [17:35.070 --> 17:35.730] I mean, you don't need... [17:36.350 --> 17:37.570] I mean, basically you're taking out the silencer. [17:37.770 --> 17:40.690] It doesn't matter how big or how powerful their robot is. [17:40.870 --> 17:42.070] You're taking out the silencer control. [17:42.450 --> 17:43.590] You're shooting it in the head. [17:44.530 --> 17:45.790] The only problem that I'm having. [17:45.890 --> 17:46.750] But I'm working it out. [17:46.910 --> 17:47.610] And I'll work it out. [17:48.050 --> 17:48.730] Is that... [17:49.830 --> 17:50.230] Fratricide. [17:51.310 --> 17:51.670] Fratricide. [17:51.850 --> 17:52.470] She's coming over. [17:52.870 --> 17:53.630] I'll hold it up. [17:53.770 --> 17:54.210] I'll start it. [18:03.110 --> 18:03.670] What happens? [18:03.750 --> 18:04.550] The battery's running down. [18:04.650 --> 18:05.830] I should have really redid this. [18:05.910 --> 18:06.690] But I was getting sick. [18:08.210 --> 18:08.930] And, um... [18:08.930 --> 18:12.250] But I promise you, you will see it going through the wire and everything. [18:16.190 --> 18:17.430] I've burned this off of batteries. [18:18.970 --> 18:19.690] The reason... [18:19.690 --> 18:20.610] And I'll tell you the reason why. [18:22.110 --> 18:22.950] Now she's... [18:23.410 --> 18:25.110] At the end, you'll see her zooming in. [18:25.110 --> 18:27.750] And you will see the numbers disappearing and disappearing. [18:28.510 --> 18:30.410] So again, this pulse is going through the wiring. [18:36.590 --> 18:37.950] And now my dogs are barking. [18:38.690 --> 18:40.050] My dogs don't like this. [18:41.950 --> 18:44.190] Actually, when my dogs hear the noise, they think I'm home. [18:48.480 --> 18:49.840] But you see the numbers disappearing. [18:51.960 --> 18:54.600] Again, it readily conducts to wiring. [18:54.600 --> 18:58.860] And again, you do not need a really big device. [18:59.540 --> 19:00.400] You really need... [19:00.400 --> 19:01.780] And this is... [19:02.460 --> 19:02.700] Okay. [19:03.100 --> 19:04.640] Now let's show something else. [19:05.760 --> 19:06.900] What else is good here? [19:07.360 --> 19:08.420] Do that, do that, do that. [19:08.760 --> 19:09.200] Okay. [19:09.280 --> 19:09.760] Let's show the... [19:09.760 --> 19:11.080] Let's show the Marx generator. [19:11.820 --> 19:13.340] Let me do a walkthrough of that. [19:18.260 --> 19:19.260] I know it's here. [19:25.220 --> 19:26.160] Oh, here it is. [19:27.240 --> 19:28.820] Here's the video type of the Marx scan. [19:30.000 --> 19:32.060] And I basically do a walkthrough of it. [19:33.260 --> 19:36.220] And I'm able to do it outside, so it looks even better. [19:37.660 --> 19:39.460] Each orange thing is a capacitor. [19:39.800 --> 19:42.480] And you see those little resistors that are basically... [19:42.480 --> 19:45.620] The reason why I have some sorted together is that... [19:46.760 --> 19:48.700] You can go through components pretty rapidly. [19:50.680 --> 19:51.960] So you see the... [19:52.380 --> 19:54.480] The capacitors, they charge in parallel. [19:55.920 --> 19:59.180] And then they discharge through these very thin wires here that are a little hard to see. [19:59.480 --> 20:00.940] They're in series. [20:01.440 --> 20:03.380] And then I'm pointing at those two wires there. [20:09.240 --> 20:10.680] And I'm going to show another... [20:11.340 --> 20:12.780] Other components, so... [20:14.580 --> 20:15.920] You won't feel left out. [20:16.860 --> 20:18.840] So I'm going to show the other components that I need. [20:19.280 --> 20:21.640] This is basically a jig to test different components. [20:21.900 --> 20:24.300] This is Spark app, which you've already seen. [20:39.030 --> 20:40.330] The integrated circuit... [20:41.010 --> 20:41.530] Well... [20:42.070 --> 20:46.610] I have two analog meters to see where my... [20:47.210 --> 20:48.550] What's happening in my circuit. [20:48.550 --> 20:50.390] I can't use digital meters because I... [20:50.390 --> 20:52.250] That's a 5-5-5 timer. [20:52.750 --> 20:54.710] Again, 5-5-5 timer all over the Internet. [20:56.230 --> 21:00.470] And that is basically sending a pulse to pulse my MOSFET. [21:00.650 --> 21:03.190] This is like a type of power transistor, this MOSFET here. [21:06.750 --> 21:08.350] And it gets pretty hard. [21:10.180 --> 21:12.120] And I also have a clamping circuit there too. [21:12.250 --> 21:13.350] Or a snubbing circuit. [21:18.540 --> 21:19.540] That's a flyback... [21:19.540 --> 21:20.960] That's a flyback transformer. [21:20.960 --> 21:22.280] It's a high power transformer. [21:22.580 --> 21:24.760] High voltage transformer for a cathode ray tube. [21:28.710 --> 21:29.490] It's a... [21:30.370 --> 21:32.890] A transformer for a cathode ray tube. [21:33.070 --> 21:33.470] It's a... [21:33.470 --> 21:36.090] It's a high voltage transformer. [21:39.130 --> 21:40.750] And now I think I'm going to show another... [21:42.470 --> 21:42.990] Mark... [21:43.410 --> 21:43.970] Marx generator. [21:43.970 --> 21:44.070] Marx generator. [21:44.690 --> 21:46.510] So again, the... [21:47.330 --> 21:48.830] Orange capacitors and the... [21:48.830 --> 21:50.010] Are the actual Marx generator. [21:50.310 --> 21:52.410] What I showed else is the... [21:52.410 --> 21:53.450] Charging circuit for it. [21:53.590 --> 21:54.150] And the spark cap. [21:54.330 --> 21:55.330] This is another... [21:55.330 --> 21:56.750] Marx generator where... [21:56.750 --> 21:58.730] The pulse... [21:59.610 --> 22:00.170] Is... [22:00.170 --> 22:01.410] Contained within this pipe. [22:02.730 --> 22:04.230] Because what happens is that... [22:05.190 --> 22:06.670] These can become very loud. [22:07.470 --> 22:07.950] And... [22:07.950 --> 22:08.410] They... [22:08.410 --> 22:09.210] They'll set off... [22:09.750 --> 22:10.230] Motion... [22:10.230 --> 22:11.110] Some... [22:11.110 --> 22:12.990] Noise sensors that attach to window panes. [22:13.170 --> 22:14.030] Breaking window panes. [22:14.190 --> 22:16.370] So they could set off somebody's alarm. [22:18.010 --> 22:18.490] Ininvertedly. [22:19.110 --> 22:20.050] Until you... [22:20.590 --> 22:21.690] Cut the power to the alarm. [22:22.430 --> 22:24.190] Well no, the alarms have a battery power tube. [22:24.410 --> 22:24.890] Actually... [22:24.890 --> 22:26.850] No, they'd still go out because... [22:26.850 --> 22:27.950] They'd still die. [22:30.930 --> 22:32.690] Okay, let me show something else. [22:32.870 --> 22:34.070] Let me show a surge protector. [22:37.400 --> 22:38.680] This is in my basement. [22:38.920 --> 22:39.680] And I have... [22:39.680 --> 22:40.700] The wire from... [22:41.220 --> 22:42.340] My spark cap. [22:42.780 --> 22:44.940] Connected to the grounding log of the surge protector. [22:46.180 --> 22:46.640] And... [22:46.640 --> 22:48.560] It doesn't really matter what surge protector it is. [22:48.640 --> 22:49.560] I mean... [22:49.560 --> 22:50.220] If you want to bring... [22:51.480 --> 22:52.140] Excuse me? [22:52.340 --> 22:54.540] Is the surge protector plugged in without... [22:54.540 --> 22:55.200] No. [22:55.740 --> 22:55.840] No. [22:56.700 --> 22:58.200] Surge protector is not even plugged in. [22:58.360 --> 22:59.600] Because if I plugged it in... [22:59.600 --> 23:01.560] I'd be transmitting the pulses into... [23:01.560 --> 23:02.760] My electric wiring system. [23:03.400 --> 23:03.600] And... [23:03.600 --> 23:04.580] Excuse me? [23:06.800 --> 23:07.400] Uh... [23:07.400 --> 23:07.780] Yeah. [23:08.120 --> 23:09.080] A generator would work. [23:09.620 --> 23:11.060] A regular... [23:11.700 --> 23:12.060] Well... [23:12.060 --> 23:12.960] That's a surge protector. [23:13.060 --> 23:14.020] And you see the numbers. [23:14.360 --> 23:15.520] This is a dumb device. [23:20.270 --> 23:20.870] And... [23:20.870 --> 23:23.630] These surge protectors were not designed... [23:23.630 --> 23:26.610] For malicious pulses... [23:26.610 --> 23:27.110] Or electro... [23:28.070 --> 23:29.990] Malicious electromagnetic interference. [23:30.950 --> 23:31.550] And... [23:31.550 --> 23:34.170] They can't really protect the device if somebody's going to inject a... [23:34.170 --> 23:35.990] A malicious pulse into them. [23:37.510 --> 23:38.890] But I knew I would have a question. [23:39.090 --> 23:40.310] Well, what about my surge protector? [23:40.410 --> 23:41.050] So I have that there. [23:44.980 --> 23:45.420] Okay. [23:45.980 --> 23:47.220] Let me show something else. [23:57.390 --> 23:57.830] Um... [23:57.830 --> 23:58.410] Uh... [23:58.410 --> 23:59.410] I'm looking for something else. [24:01.130 --> 24:01.630] Um... [24:01.630 --> 24:02.430] I have a kilowatt. [24:02.610 --> 24:02.980] I have a... [24:03.690 --> 24:04.190] Okay. [24:04.290 --> 24:04.390] Here. [24:09.920 --> 24:10.620] No, no. [24:10.800 --> 24:11.600] This is... [24:11.600 --> 24:11.900] Okay. [24:15.730 --> 24:16.230] Okay. [24:17.110 --> 24:18.750] Now, what I'm doing here is a little different. [24:18.910 --> 24:21.230] I still have it connected to my surge protector. [24:21.390 --> 24:22.590] And I have a wire. [24:22.810 --> 24:24.970] A black wire plugged into the surge protector. [24:25.350 --> 24:29.590] And you're going to see a yellow wire loosely wrapped around it. [24:30.050 --> 24:33.630] And that yellow wire has alligator clips both ends. [24:34.470 --> 24:39.210] And what you're going to see is that when I start pulsing, I'm going to do some... [24:39.210 --> 24:45.070] You're going to radiate enough of a pulse into the yellow wire that the calculator that's on it is going to feel the pulse and the numbers will disappear. [24:45.530 --> 24:46.730] Some of the numbers will disappear. [24:46.910 --> 24:55.350] This is very attenuating, but I just want to show you that when you inject these pulses, you're injecting, but you're also radiating into free space. [24:55.750 --> 25:00.410] And the bigger your antenna, like your wiring system in your house, the bigger the radiation area. [25:01.190 --> 25:02.590] So now you're going to see this... [25:02.590 --> 25:06.950] I'm going to have to reach over where I got all nines plugged into there. [25:08.770 --> 25:15.090] So again, this is an issue of radiation, which was in that excerpt that I read to you earlier about radiation. [25:15.370 --> 25:17.490] The conducted pulses also radiate. [25:23.550 --> 25:26.010] Fortunately, I'm working by myself, so I've got to reach over that. [25:36.610 --> 25:38.410] And you see some of the numbers have disappeared. [25:39.010 --> 25:41.950] And again, this is an example of the radiation that would come. [25:41.950 --> 25:48.590] But it's more of an issue if you start to do a whole power grid, because the power grid becomes your antenna. [25:58.150 --> 26:00.030] Okay, let me do another one. [26:01.110 --> 26:09.930] Let me do the camera, which is quite a pulse device. [26:13.070 --> 26:29.590] I took apart one of these cameras, and basically the capacitance, and it has a little transformer in there, which is set off by that big capacitor, which I measured the voltage. [26:29.590 --> 26:33.290] And it measured about four and a half joules. [26:33.430 --> 26:38.930] So this would have been enough to certainly set off the center fuel tank of the TWA 800. [26:44.280 --> 26:46.520] Now I'm outside with it, and I'm charging it up. [26:47.260 --> 26:49.520] And I wanted to try to show the voltage. [27:02.160 --> 27:05.960] I almost get it to 300 volts, but it really does pop. [27:24.440 --> 27:27.320] Yeah, it does give a pulse. [27:28.060 --> 27:33.110] Explain what you just did there again, and it totally lost you. [27:33.110 --> 27:35.510] Were you using the flash as a generator? [27:36.010 --> 27:36.630] No, no, no. [27:36.710 --> 27:47.330] I was using the device in the flash, part of the flash, that it charges up a capacitor, which discharges through like a fly black transformer, into the strobe. [27:47.710 --> 27:52.170] Instead, I was just discharging it as an arc, getting an arc by shortening out the terminals. [27:53.870 --> 27:55.530] And I was just showing that this is a pulse. [27:55.630 --> 27:58.290] But I measured the pulse, and it's about four and a half joules. [27:58.290 --> 28:07.650] And when they measured the amount of energy they needed to set off that center fuel tank, it was about 75 millijoules, 75 thousandths of a joule. [28:08.530 --> 28:12.930] So, I mean, you have quite an effective device there. [28:13.890 --> 28:15.850] Let me do... [28:15.850 --> 28:18.590] This is my kilowatt meter, which I killed. [28:20.450 --> 28:21.370] This was... [28:21.370 --> 28:22.770] This was... [28:22.770 --> 28:22.910] This was... [28:22.910 --> 28:23.810] Just... [28:23.810 --> 28:25.990] On my table, and... [28:25.990 --> 28:26.730] It's... [28:26.730 --> 28:31.770] The other meter, 126, is reading the correct voltage, and that's reading 201, 202 volts. [28:33.670 --> 28:34.590] And, um... [28:34.590 --> 28:35.710] Again, uh... [28:35.710 --> 28:36.890] I just fry different things. [28:37.170 --> 28:41.270] And what also happens is that, after a while, you find some things in the house stop working. [28:41.850 --> 28:42.530] But, but... [28:42.530 --> 28:44.770] No, my ASA, I was really upset about that. [28:44.770 --> 28:49.370] But, for the motherboard to go, and then the hard drive, and then the, uh... [28:49.370 --> 28:50.770] The, um... [28:51.730 --> 28:52.510] The optical reader. [28:57.660 --> 28:58.140] No. [28:58.500 --> 28:59.980] It's not too much interesting here. [29:00.280 --> 29:02.080] I do have something that... [29:02.080 --> 29:03.840] The next one, I think, is the last. [29:03.960 --> 29:05.890] But, I think that's probably one of the more interesting ones. [29:06.060 --> 29:06.300] Let me... [29:09.560 --> 29:10.280] Surge Yellow. [29:11.200 --> 29:12.160] Did I do this one? [29:16.120 --> 29:17.640] So, we got Marx generator. [29:17.640 --> 29:19.640] Alright, uh... [29:20.600 --> 29:20.800] Uh... [29:20.800 --> 29:22.160] What about going through a transformer? [29:23.120 --> 29:24.960] That's the last one, and that's what I'm gonna show. [29:26.200 --> 29:31.140] And this is the one where you will see the Sony video cam lose focus. [29:31.380 --> 29:32.460] And I did it twice. [29:33.140 --> 29:36.140] And when I looked at the, uh... [29:36.140 --> 29:40.780] I realized there wasn't anything my wife did that it was because of the, um... [29:41.320 --> 29:42.640] That is a, um... [29:43.500 --> 29:43.900] Transformer. [29:44.400 --> 29:48.040] I have on one side of it, I have a wire going to this calculator. [29:48.920 --> 29:51.040] The other calculators you see have died. [29:52.260 --> 29:53.380] And, and they will die. [29:53.380 --> 29:57.440] I mean, I don't know how soon they'll die, but they do die. [30:00.720 --> 30:01.160] Okay. [30:01.460 --> 30:02.640] Let me just stop this. [30:02.860 --> 30:03.460] One second. [30:03.580 --> 30:04.100] Let me just stop. [30:08.180 --> 30:09.920] You probably missed it, but... [30:10.620 --> 30:14.440] The minute I start the Marx generator, you hear the sound, it goes out of focus. [30:15.600 --> 30:17.100] And again, this happened... [30:17.580 --> 30:18.900] This was on the two takes. [30:19.280 --> 30:21.240] I did this twice, and it happened on both times. [30:22.960 --> 30:24.060] That it went out of focus. [30:26.480 --> 30:29.520] So the minute you hear these, the sound, you'll see it go out of focus. [30:40.200 --> 30:42.020] And she has it on this side of her head. [30:51.130 --> 30:52.310] Again, this is through the transform. [30:52.470 --> 30:54.990] The transform is still good, because I didn't do this too long. [30:55.650 --> 30:58.150] And then I should do a continuity test here too. [31:13.970 --> 31:15.630] Yeah, my wife is not a very good assistant. [31:19.610 --> 31:20.030] Well... [31:20.030 --> 31:22.070] No, basically, so you have the primary and secondary. [31:22.110 --> 31:24.010] It doesn't matter where you have the primary and secondary. [31:24.350 --> 31:26.630] These posters readily go through transformers. [31:28.990 --> 31:29.830] Primary, secondary... [31:31.190 --> 31:37.530] Again, if anybody wants to like call me on any of the information, and you're in the New York City area, you want me to demonstrate it, I have no problems. [31:42.090 --> 31:42.450] What? [31:46.100 --> 31:46.460] Yeah. [31:53.740 --> 31:55.800] No, I don't think it's... [31:56.420 --> 31:57.340] No, no, no. [31:59.220 --> 32:00.000] Yeah, yeah. [32:00.360 --> 32:01.260] No, you're right. [32:01.480 --> 32:02.760] But no, I don't think it's... [32:25.160 --> 32:27.760] I think so. [32:28.260 --> 32:28.800] Really? [32:29.100 --> 32:29.740] I think so. [32:31.340 --> 32:31.880] Okay. [32:33.000 --> 32:34.240] Let me show... [32:34.240 --> 32:36.660] No, I think readily it can be taken down. [32:38.340 --> 32:44.940] You cannot really, again, when you inject it through the wiring, and it's possible that if you inject it through the ground... [32:47.580 --> 32:48.680] I don't think you have to be. [32:48.740 --> 32:49.480] I think you have to... [32:49.480 --> 32:50.440] You could just be at your seat. [32:51.180 --> 32:52.280] In any power plug. [32:53.860 --> 32:58.580] Well, I think if you energize the superstructure of the thing, I think you'll cause problems. [32:59.600 --> 33:02.300] But I said I've been on an aircraft to actually get hit by lightning. [33:02.520 --> 33:02.880] Yes. [33:03.760 --> 33:04.480] External sources. [33:04.700 --> 33:05.800] They've been hit by lightning. [33:06.140 --> 33:07.660] They've gone through radar fields. [33:07.900 --> 33:09.100] These are all external sources. [33:09.100 --> 33:12.940] And the body acts as a Faraday shield. [33:13.120 --> 33:14.220] And it travels around it. [33:14.440 --> 33:17.560] It does knock the computers out of some of the fly-by-wire planes though. [33:17.640 --> 33:17.940] Excuse me? [33:18.320 --> 33:18.960] It does not [33:22.580 --> 33:24.540] wait for the rear booth before they can go any further. [33:25.420 --> 33:26.460] Some of the Airbus... [33:28.900 --> 33:30.340] Well, I don't know about that. [33:30.460 --> 33:32.360] But you would not want to... [33:32.360 --> 33:33.180] You would not... [33:33.180 --> 33:37.300] Yeah, you would not want to fly an Airbus because of the system it has. [33:38.240 --> 33:39.340] I have something else. [33:39.580 --> 33:39.960] I'm sorry. [33:41.120 --> 33:41.540] Yeah. [33:42.540 --> 33:42.940] Okay. [33:43.400 --> 33:44.380] Would anybody... [33:44.380 --> 33:46.220] I have something else that might be an interesting video. [33:46.420 --> 33:48.820] It shows a fabric which I have here. [33:49.120 --> 33:51.240] And a Geiger counter and an X-ray source. [33:51.500 --> 33:52.120] Or gamma-ray source. [33:52.240 --> 33:53.360] Would anybody like to see that? [33:53.500 --> 33:53.860] Yes. [33:54.080 --> 33:54.320] Yeah. [33:55.100 --> 33:58.480] That was another talk that I was going to give but I just got too sick. [33:59.120 --> 33:59.520] So... [34:01.440 --> 34:04.380] And I have, by the way, one of the fabrics here that you could feel. [34:04.900 --> 34:05.420] And... [34:05.420 --> 34:10.500] By the way, you can obtain those fabrics from a website called Less EMF. [34:11.540 --> 34:15.660] Because people who are very concerned about Wi-Fi... [34:15.660 --> 34:17.960] One man's Wi-Fi signal is another man's pollution. [34:18.220 --> 34:20.240] And we really have a saturated society. [34:20.920 --> 34:23.920] I'm probably going to do a talk on that at DEFCON next year. [34:24.480 --> 34:26.740] Originally, I was going to do that but I got... [34:27.120 --> 34:28.380] I'm just too sick to travel. [34:29.100 --> 34:32.740] As a matter of fact, I got to take another Percocet in a little while because I'm... [34:33.320 --> 34:34.580] Where did I put that? [34:34.700 --> 34:35.040] It's here. [34:35.140 --> 34:35.660] I know it's here. [34:35.860 --> 34:36.620] I know it's here. [34:37.400 --> 34:38.500] Turn to the box. [34:39.180 --> 34:40.740] Turn to the box. [34:40.740 --> 34:41.760] Oh, here it is. [34:41.860 --> 34:42.280] Here it is. [34:42.620 --> 34:43.000] Here it is. [34:44.800 --> 34:45.160] Oops. [34:45.640 --> 34:45.800] No. [34:49.360 --> 34:50.000] It's here. [34:50.200 --> 34:50.460] It's here. [34:50.460 --> 34:50.480] It's here. [34:56.530 --> 34:57.490] Last EMF? [34:57.670 --> 34:58.130] You don't see that. [34:58.170 --> 34:58.810] No, Rad. [35:02.210 --> 35:05.130] The CDV700, everybody rebuilds them. [35:05.370 --> 35:05.910] The Internet? [35:07.430 --> 35:09.570] That's a Geiger count on CDV. [35:10.030 --> 35:10.810] And it's... [35:10.810 --> 35:11.230] I'm 37. [35:11.950 --> 35:13.270] That's what I got up to them. [35:14.410 --> 35:16.210] If I put my probe on, I... [35:16.210 --> 35:17.350] ...for the beta. [35:18.890 --> 35:20.810] Making the probe as sensitive as possible. [35:21.410 --> 35:24.590] The x-rays that you have on those bison are soft x-rays. [35:25.570 --> 35:26.830] They don't penetrate the skin. [35:26.950 --> 35:27.450] They bounce off. [35:35.570 --> 35:38.050] And this is the fabric that... [35:38.050 --> 35:39.160] One of the first fabrics I tested. [35:39.740 --> 35:41.220] So I have no problems with people. [35:41.220 --> 35:42.920] If you want to feel it. [35:44.360 --> 35:44.820] What? [35:51.530 --> 35:53.730] I'm doing more testing with a lot of these fabrics. [35:54.090 --> 35:56.350] So probably at DEFCON I will do... [36:00.130 --> 36:00.850] Excuse me? [36:00.850 --> 36:02.990] If you walk into an airport scanner... [36:03.550 --> 36:04.470] I'm sure they heard it. [36:04.630 --> 36:05.410] Do you sleep like that? [36:05.550 --> 36:07.530] Do you guys know what any of those things you create? [36:09.510 --> 36:09.910] Um... [36:09.910 --> 36:12.290] If you created some of your clothes out of it. [36:12.550 --> 36:12.810] Okay. [36:13.290 --> 36:14.210] It would show... [36:14.210 --> 36:14.990] You would have to... [36:14.990 --> 36:16.890] One of the vendors for... [36:16.890 --> 36:17.910] One of the body scanners... [36:19.350 --> 36:19.750] Uh... [36:19.750 --> 36:20.450] Wrapped... [36:20.450 --> 36:21.850] A Beretta pistol. [36:22.110 --> 36:22.810] A Beretta... [36:23.490 --> 36:23.890] Uh... [36:23.890 --> 36:24.830] Nine millimeter pistol. [36:25.090 --> 36:25.390] In... [36:25.770 --> 36:27.030] A fabric that looked like this. [36:27.290 --> 36:27.910] But he wrapped it. [36:27.990 --> 36:29.170] So you could clearly see the outline. [36:29.290 --> 36:30.490] You knew clearly it was a pistol. [36:30.750 --> 36:32.010] But I'm not talking about wrapping it. [36:32.010 --> 36:33.050] I'm talking about creating clothing. [36:33.310 --> 36:34.370] And this is what it's meant to. [36:34.370 --> 36:35.590] To create clothing out of this. [36:37.750 --> 36:40.590] If anybody is interested in robots. [36:41.110 --> 36:43.750] By creating an EMP package for their robot. [36:44.170 --> 36:47.190] Or if they're interested in looking at something about these fabrics. [36:48.030 --> 36:49.030] Or um... [36:49.030 --> 36:49.970] It's... [36:49.970 --> 36:51.870] Those are copper fibers. [36:56.370 --> 36:57.310] By the way. [36:57.630 --> 36:59.050] When you go up on a plane. [36:59.370 --> 36:59.890] At 30,000. [36:59.950 --> 37:02.310] You're getting more of a gamma ray exposure. [37:02.650 --> 37:03.530] On a plane. [37:04.010 --> 37:05.630] Than you will through any of these uh... [37:05.630 --> 37:05.990] Scanners. [37:06.190 --> 37:06.910] Airport scanners. [37:07.310 --> 37:08.310] As a matter of fact. [37:08.750 --> 37:09.150] Um... [37:09.150 --> 37:10.550] If you have a dalsamina. [37:10.770 --> 37:11.550] With an alarm. [37:12.390 --> 37:12.970] A dalsamina. [37:13.330 --> 37:13.730] Measures. [37:13.990 --> 37:15.550] The amount of x-rays that you're exposed to. [37:15.830 --> 37:16.350] With an alarm. [37:16.590 --> 37:17.410] Most of them will have an alarm. [37:17.710 --> 37:18.650] If you go up on a plane. [37:18.870 --> 37:19.910] At 30,000 or 40,000 feet. [37:20.210 --> 37:21.490] The alarm will go way off. [37:21.790 --> 37:22.430] It will go off. [37:22.850 --> 37:24.030] Because you are more exposed. [37:27.720 --> 37:28.820] It seems to have about. [37:29.300 --> 37:29.640] Greater study. [37:29.820 --> 37:30.400] Greater attenuation. [37:30.580 --> 37:30.880] About that. [37:33.680 --> 37:34.080] Again. [37:34.220 --> 37:35.960] If anybody is interested in helping me out. [37:36.980 --> 37:37.380] Uh... [37:37.380 --> 37:37.820] Um... [37:37.820 --> 37:39.440] Especially when I get well. [37:40.680 --> 37:42.300] And I even have a box of cards. [37:42.640 --> 37:44.000] And my actual... [37:44.000 --> 37:46.700] This is actually my uh... [37:46.700 --> 37:48.180] My um... [37:48.180 --> 37:48.780] Again. [37:49.000 --> 37:49.920] It's pretty good attenuation. [37:53.020 --> 37:53.980] My cell phone. [37:54.920 --> 37:55.280] Yeah? [37:55.560 --> 37:56.160] I have a question. [38:06.890 --> 38:08.550] What type of shielding could you use? [38:08.710 --> 38:09.570] Like Faraday cage? [38:10.270 --> 38:10.630] Even... [38:10.630 --> 38:11.670] Even if they're powered off. [38:11.670 --> 38:12.550] They'll still be affected. [38:12.830 --> 38:13.750] Is there any shielding? [38:13.810 --> 38:14.930] Would a Faraday cage protect you? [38:15.050 --> 38:16.310] Or just more metal protect you? [38:16.430 --> 38:17.810] Or would they be willing to shield yourself? [38:18.990 --> 38:19.350] Um... [38:19.350 --> 38:19.890] I'm not sure. [38:20.070 --> 38:20.570] Believe it or not. [38:20.570 --> 38:30.130] I found that if I have my marks generator pulsing at extremely high rate, uh... the Faraday shield doesn't work. [38:30.370 --> 38:32.490] And I'm not sure if it's images. [38:32.970 --> 38:36.550] If anybody took physics, electrical dynamics. [38:36.810 --> 38:40.390] If it's images or what that I'm charging up the Faraday shield itself. [38:40.710 --> 38:43.730] And that the charge is again rapidly leaking off. [38:43.730 --> 38:45.110] And that's cranium pulse. [38:45.450 --> 38:46.730] That's something that's sort of... [38:47.410 --> 38:47.690] Nobody... [38:47.690 --> 38:48.730] I've never seen an explanation. [38:48.930 --> 38:53.590] Maybe nobody's done work that far in the field or figure that a Faraday... [38:53.590 --> 38:56.830] I mean every physics and engineering student learns of the Faraday shield. [38:56.970 --> 38:58.190] That's how you protect electronics. [38:58.870 --> 39:05.190] And now I see something that maybe something else happens when you go up to very high field changes. [39:05.390 --> 39:07.730] The second derivative of voltage versus time. [39:07.890 --> 39:11.830] When that becomes very, very high, something else happens. [39:11.830 --> 39:13.630] Maybe there's another... [39:13.630 --> 39:16.050] Anyway, I muted this. [39:16.230 --> 39:18.110] But, um... [39:18.530 --> 39:20.590] You really have seen what happens. [39:21.350 --> 39:22.430] Here's the fabric. [39:23.230 --> 39:24.030] And it's the A fabric. [39:24.190 --> 39:24.830] It's the first fabric. [39:26.490 --> 39:27.290] And, um... [39:27.290 --> 39:28.310] And there's cards up here. [39:29.190 --> 39:32.630] And, you know, anybody has questions, you know, go right away. [39:33.290 --> 39:36.150] I'm gonna take a Percocet only because I have a great deal of pain. [39:37.510 --> 39:38.230] Oh, so... [39:38.230 --> 39:39.130] Are there any extras up there already? [39:40.370 --> 39:40.930] Um... [39:41.530 --> 39:42.090] Um... [39:42.090 --> 39:44.970] No, um... [39:46.410 --> 39:46.970] Um... [39:47.810 --> 39:48.370] It's... [39:48.370 --> 39:48.870] Are you... [39:48.870 --> 39:51.570] Are you familiar with the Torgio project... product? [39:51.810 --> 39:54.110] It's a silver mesh woven fabric? [39:56.070 --> 40:00.250] I think that's one of the fabrics that's... you find a less EMF website. [40:00.470 --> 40:01.690] But I'm not really familiar with it. [40:01.710 --> 40:06.210] It's used for less than legal energy weapons like tasers and stun guns. [40:07.770 --> 40:10.210] That would probably work great for the, um... [40:10.750 --> 40:12.050] For the, um... [40:12.050 --> 40:13.210] The, um... [40:14.470 --> 40:14.910] Scanner. [40:15.090 --> 40:15.910] The airport scanners. [40:16.130 --> 40:16.970] Actually, something... [40:16.970 --> 40:17.290] I'm sorry. [40:17.470 --> 40:18.430] I just want to follow up. [40:18.610 --> 40:19.810] Can I show a video real quick? [40:19.950 --> 40:20.350] I got loaded. [40:20.730 --> 40:23.390] Because there was a comment about wearing the suit. [40:23.810 --> 40:26.850] But I just want to show how pliable this material can be. [40:28.310 --> 40:29.770] Do you have a physical sample? [40:29.890 --> 40:31.730] Like, I have a physical sample of, uh... [40:31.730 --> 40:32.950] The first fabric. [40:33.690 --> 40:33.910] The, uh... [40:33.910 --> 40:34.310] The eighth fabric. [40:34.510 --> 40:36.970] I mean, I just think it shows it being applied to the T-shirt. [40:37.170 --> 40:38.610] Also, it has some YouTube videos. [40:38.830 --> 40:39.130] Okay. [40:39.230 --> 40:39.550] Showed. [40:40.230 --> 40:41.250] I don't have a problem with that. [41:00.800 --> 41:02.620] I don't think I could get too directional. [41:03.200 --> 41:06.440] I might be able to shield some things with, let's say, a reflector. [41:06.740 --> 41:10.400] But I think I would be still 180 degrees in one direction. [41:12.140 --> 41:12.540] Um... [41:12.540 --> 41:17.400] It's sort of dangerous, in a sense, injecting the pulses, um... [41:18.180 --> 41:18.840] Into a thing. [41:18.940 --> 41:20.040] Because you don't know what's going to happen. [41:20.200 --> 41:21.460] And you don't know how far it's going to travel. [41:21.840 --> 41:23.140] And you also shouldn't do this. [41:23.200 --> 41:26.260] If anybody has a pacemaker in their household, you shouldn't play with this. [41:29.400 --> 41:30.200] All right, Paul. [41:30.500 --> 41:30.720] Yes. [41:30.740 --> 41:31.860] First of all, thank you. [41:32.160 --> 41:34.600] And, uh, we're blessed with, uh, good health. [41:34.820 --> 41:35.080] Thank you. [41:35.260 --> 41:37.460] You're going through all my cancers and problems, so... [41:38.880 --> 41:38.960] Uh-huh. [41:39.620 --> 41:41.000] ...you need the best wishes. [41:41.400 --> 41:47.080] And I'm sorry for, uh, being a little smart-ass about that first piece of fabric and a little bit of a piece of tin. [41:47.300 --> 41:47.960] No, no, no. [41:48.060 --> 41:50.260] The other ones were certainly softer. [41:50.640 --> 41:51.160] Yes, yeah. [41:51.440 --> 41:53.900] So, see if I understand this right. [41:54.120 --> 41:54.560] Okay. [41:55.100 --> 42:01.560] You're using, basically, the three-wire, you know, hot neutral parameters. [42:01.900 --> 42:02.200] Yes. [42:02.440 --> 42:02.920] Wires. [42:03.220 --> 42:03.340] Yes. [42:03.340 --> 42:03.740] Okay. [42:04.320 --> 42:07.220] That are running into any building. [42:07.420 --> 42:07.620] Yes. [42:07.860 --> 42:08.260] Okay. [42:09.140 --> 42:14.720] And you would don't induce enough of, like, the right pulse sequences. [42:14.940 --> 42:15.160] Yeah. [42:17.670 --> 42:22.810] We are signals, you know, like pulse width, repetition, all that. [42:23.210 --> 42:24.850] You know, you get the right pulse train. [42:25.450 --> 42:25.770] Okay. [42:25.890 --> 42:26.150] Yes. [42:26.390 --> 42:28.730] And you run that up through the wires. [42:28.910 --> 42:30.170] There's no firewall. [42:30.910 --> 42:31.250] Okay. [42:31.250 --> 42:32.470] You're attached. [42:32.710 --> 42:33.430] There's no protection. [42:34.150 --> 42:34.630] In the grid, yeah. [42:34.930 --> 42:35.270] Okay. [42:38.020 --> 42:39.200] I mean, a ground wire. [42:39.640 --> 42:39.760] Okay. [42:39.980 --> 42:41.660] You could, like, for... [42:41.660 --> 42:44.860] You can still ground the wire, but the pulse is all going up to the electronics. [42:45.700 --> 42:46.960] It's gonna go straight in. [42:47.180 --> 42:48.120] It's gonna go straight in, yeah. [42:48.140 --> 42:48.360] Yeah. [42:49.080 --> 42:49.160] Yeah. [42:49.300 --> 42:51.860] And it's, like, a localized RFI... [42:53.100 --> 42:53.380] Yes. [42:53.640 --> 42:53.720] Yes. [42:54.180 --> 42:54.580] ...weapon. [42:54.720 --> 42:54.900] Yes. [42:55.220 --> 43:02.740] I believe, I believe the Soviet Union, when I read that excerpt on that, that paragraph was very vague, very nebulous about what they were talking about. [43:02.740 --> 43:03.520] About disturbances. [43:03.740 --> 43:05.860] I believe they've done a lot of research with it. [43:06.060 --> 43:08.400] And I believe they also know how to take down a power grid with it. [43:08.560 --> 43:09.100] The Russians. [43:09.900 --> 43:12.700] Um, and we don't have anything that... [43:13.220 --> 43:18.560] Most of our work with EMP is through hydrogen bomb, armature, or something else like that. [43:19.000 --> 43:22.960] Um, so I believe that, uh, there's a lot more that's coming. [43:23.140 --> 43:25.720] Let me just, let me explain something about Con Edison. [43:26.420 --> 43:30.520] Con Edison, um, and it's a little different than other power companies. [43:30.520 --> 43:39.080] Con Edison has basically off their, their, uh, generators, they have three wires for the three wire, three phase system. [43:39.360 --> 43:46.400] And what they do is, when they locally distribute it, the three wires go into a transformer, a delta transformer. [43:46.400 --> 43:49.240] And the other side of the transformer is a Y transformer. [43:49.560 --> 43:51.520] And the center point of that Y is grounded. [43:51.620 --> 43:52.280] That's the ground. [43:53.140 --> 43:58.060] So basically, which, again, that's part of my talk on the electric grid. [43:58.360 --> 44:01.840] Uh, basically, it doesn't matter where you put that pulse. [44:02.580 --> 44:03.880] It's going into the grid. [44:05.600 --> 44:06.260] I'm sorry. [44:06.520 --> 44:09.450] How do they know? [44:09.810 --> 44:11.230] Lightning is a single pulse. [44:11.730 --> 44:13.270] Lightning is a single pulse. [44:13.670 --> 44:15.410] Or in the grid, they expect a couple pulses. [44:15.770 --> 44:16.490] Maybe nearby. [44:16.730 --> 44:18.070] I'm talking about many pulses. [44:18.290 --> 44:28.590] Again, I said that the semiconductors, they do have a learning, they do have a history to them that the more you do it, so you do for smaller pulses, adding up. [44:28.970 --> 44:30.470] So that's why I said multiple pulses. [44:30.670 --> 44:32.410] It's, I guess it's a little nebulous about this. [44:32.530 --> 44:33.730] But you saw multiple pulses. [44:33.970 --> 44:34.770] Some of these divide. [44:34.890 --> 44:35.330] Oh, wait. [44:35.530 --> 44:37.530] I missed the, I missed, uh, I missed the video. [44:37.690 --> 44:38.110] My God. [44:38.850 --> 44:39.570] Jesus Christ. [44:40.350 --> 44:41.570] Plug, plug me back in. [44:42.170 --> 44:42.990] I missed the video. [44:43.070 --> 44:43.970] I missed a good video, too. [44:45.390 --> 44:46.790] This is really a good video, too. [44:48.690 --> 44:49.050] Really. [44:51.950 --> 44:52.730] Am I in again? [44:54.710 --> 44:55.230] Okay. [44:57.010 --> 44:58.850] I missed a good, whoa. [45:00.150 --> 45:06.070] Again, um, um, uh, oh, here it is, up here. [45:06.430 --> 45:06.730] That's one. [45:07.130 --> 45:14.610] Again, um, don't try to do something cognitive or work with electricity when you're taking too many Percocets. [45:14.770 --> 45:20.490] This is gonna, this is gonna show, it's gonna show a cable box. [45:20.910 --> 45:22.610] And when I have this wire going up. [45:25.740 --> 45:27.440] And, um, what's his name, he's speaking. [45:27.880 --> 45:32.060] When you start seeing the static on the screen, that, that, that, no, you don't see it yet. [45:32.300 --> 45:37.960] When you start seeing the static, the lines on the screen, that means I turn on the, uh, uh, that I turned on the, um, the Mark Center. [45:38.160 --> 45:41.360] Now that's trying, that's gonna eventually lose the time they try to reboot. [45:43.520 --> 45:47.740] So, time's 1114 and just about, it's trying to reboot. [45:47.900 --> 45:54.200] It can't reboot off the network because, um, the longer I keep that up, it's just gonna do that. [45:54.860 --> 45:55.940] Even though, I mean, [45:59.190 --> 46:03.170] if I knew you applaud, I would have taken out Manhattan Island. [46:03.170 --> 46:07.950] I mean, and, and, and, you know, it's not that much to take out the grid. [46:08.170 --> 46:09.150] It's a lot less. [46:09.570 --> 46:11.850] Anyway, I, I did that only, I don't own the cable box. [46:11.950 --> 46:12.670] The cable company does. [46:12.850 --> 46:19.810] But the other problem, the other, the other problem is that my, my, my doing it, uh, I'm shutting down the lifetime of the cable box. [46:19.870 --> 46:20.730] Let me do it again. [46:21.470 --> 46:29.490] But again, this is an issue that I said smart devices turn themselves off, try to reboot, or they need some type of manual reset. [46:29.750 --> 46:37.630] Again, um, I need to do some more smart devices because usually, uh, oh, what happened is I muted it. [46:37.710 --> 46:38.010] That's why. [46:43.820 --> 46:45.340] But it's having a hard time already. [46:45.580 --> 46:47.600] And this is just, by the way, that's a metal box. [46:47.780 --> 46:50.840] That cable box is a metal box that I have that wire resting upon. [46:51.540 --> 46:52.820] Again, the Faraday shield. [46:54.660 --> 47:03.620] Um, again, if I crank up, in other words, the second derivative of voltage versus time, if it's really, really up there, the Faraday shield doesn't seem to help you. [47:06.020 --> 47:10.880] Uh, it should be putting out between 30,000 to 50,000 volts. [47:11.200 --> 47:20.080] It's not, uh, it's not a big, uh, it's not a big, uh, um, I'm telling you, it's not, even with a Tesla coil, it's not a big device you're talking about. [47:20.300 --> 47:23.820] I'm talking about something that will fit into a van easily. [47:24.900 --> 47:29.740] Um, again, I don't think this is something that homeowner security conceives of. [47:29.740 --> 47:38.820] If you tell any, I was a physics mate, but tell any physics or electrical engineering major that a Faraday shield does not shield your electronics all the time, they would say, this is impossible. [47:39.280 --> 47:39.880] I'm sorry. [47:40.360 --> 47:43.060] But you said that you might have an idea of how to make it quieter earlier. [47:43.360 --> 47:44.600] Yeah, I gotta make it quieter. [47:44.960 --> 47:48.270] Do you, the game plan? [47:48.310 --> 47:55.770] Uh, I'm working on it, but I'm working more on the Tesla coil, because that is more of a big energy device that can do real-time. [47:55.770 --> 48:00.750] I mean, it could do real-time, put out an airport, or JFK airport, or Manhattan. [48:01.030 --> 48:09.430] I mean, really, it's, you know, from what I measured, I said, I, actually, it's more like, aside from the Russians, what I read there, why hasn't anybody else done this? [48:09.510 --> 48:15.390] Why hasn't, hey, there's this, it's sort of like, so like, why hasn't this ever been discovered? [48:15.810 --> 48:16.310] Go ahead. [48:17.790 --> 48:22.070] So, um, earlier, you made mention about, like, taking out a plane and stuff like that. [48:22.230 --> 48:25.470] So, my understanding is that you still have to be physically touching the plane. [48:26.150 --> 48:27.770] Inside the plane, you'd have to be inside the plane. [48:27.910 --> 48:36.630] The planes are well, um, they're well-grounded, well-connected in that, an external pulse is not going to do anything. [48:36.850 --> 48:37.850] They do a lot of tests. [48:38.190 --> 48:40.510] NASA does a lot of, um, spends a lot of money. [48:40.690 --> 48:41.970] They're very bright people. [48:42.590 --> 48:45.110] Um, they're not thinking of this type of a pulse. [48:45.110 --> 48:47.170] This type of, uh, power pulse. [48:47.570 --> 48:50.470] And, again, if you continually do it. [48:50.890 --> 48:53.290] Again, this is the important, continual pulses. [48:53.590 --> 48:55.790] Like you saw on this cable box. [48:56.010 --> 48:57.050] The pulses were continuing. [48:57.470 --> 48:58.250] It was trying to reboot. [48:58.330 --> 48:58.830] It can't reboot. [49:00.530 --> 49:01.450] It's trying to reboot. [49:01.510 --> 49:02.070] It can't reboot. [49:02.410 --> 49:09.090] The only reason why I stopped it is because I'm also sending pulses through the cable, uh, through the cable subscribers themselves. [49:10.190 --> 49:15.770] And, although people have, let me just say, people have had tussle cones that walked over into the electric grid. [49:16.330 --> 49:20.010] And they've always, the utilities always said, well, this is ball lightning, strange lightning. [49:20.370 --> 49:23.530] They've never been, they've never realized that something like this happened. [49:24.050 --> 49:37.950] And naturally, if this happens to you, and this is from private com, private, um, communications that I get from people, you're not going to admit it because, uh, I mean, you're going to have the electric company come after you, or the cable company. [49:38.170 --> 49:38.770] I'm sorry. [49:39.530 --> 49:39.970] Yes. [49:40.350 --> 49:40.790] So... [49:46.260 --> 49:48.520] Basically, you're creating a lot of harmonics. [49:49.620 --> 49:52.320] And I don't have a spectrum analyzer. [49:52.580 --> 49:57.240] Um, although if I did, I'd have to find out a way to use it without burning it out first. [49:57.800 --> 50:00.860] That, that's, that's, that's, that's a big problem that I have. [50:01.180 --> 50:04.000] But you really want something that's very harmonic rich. [50:04.000 --> 50:06.220] You want extremely high rise time. [50:07.200 --> 50:08.200] Fast rise? [50:08.360 --> 50:08.600] Yes. [50:08.860 --> 50:09.160] So, [50:14.100 --> 50:14.720] um... [50:14.720 --> 50:16.140] That, that was a PVC pipe. [50:16.500 --> 50:19.160] And, and the sparks were in the pipe itself. [50:19.500 --> 50:20.800] That was to make it a little quieter. [50:21.680 --> 50:21.880] Could [50:25.480 --> 50:27.440] it be based on your 5x5 timer circuit? [50:27.800 --> 50:30.880] I mean, isn't that the oscillator that's driving your Marx generator? [50:31.460 --> 50:32.560] It, it would be. [50:32.680 --> 50:34.920] It depends upon really how fast I charge it. [50:35.300 --> 50:36.940] How fast I discharge it. [50:37.140 --> 50:38.560] The capacitors that I use. [50:40.980 --> 50:46.000] Um, uh, this, the Marx generator doesn't really scale up well to use it as a weapon. [50:46.180 --> 50:47.220] I mean, a big time weapon. [50:47.380 --> 50:54.600] But the Tesla coil does scale up well to use it as a, a type of device that you could bring down a power grid for a number of weeks or months. [50:54.840 --> 50:55.100] Right. [50:55.500 --> 50:55.760] I'm sorry. [50:55.900 --> 51:04.660] Question I had was, you know, once you get to, like, between 30 and 50 kilovolts, as you said, to the flyback transformer, you may be generating from strolling radiation? [51:04.860 --> 51:05.160] Yeah. [51:05.480 --> 51:05.640] Yes. [51:05.920 --> 51:06.160] Yes. [51:06.160 --> 51:06.380] Yes. [51:06.780 --> 51:07.180] Yes. [51:07.400 --> 51:08.540] Can generate x-rays. [51:08.540 --> 51:09.040] X-rays. [51:09.280 --> 51:09.420] Yes. [51:09.580 --> 51:09.840] Exactly. [51:10.080 --> 51:10.760] You are doing that. [51:12.540 --> 51:25.620] As a matter of fact, I have a detector that I did use in that it was, at first I thought it was the, um, the electronics and the, the, the, the dalsometer that I was being, um, pulsed. [51:25.720 --> 51:29.420] But when I put a lead shield in front of it, I realized it was actually the x-rays. [51:30.680 --> 51:31.660] It was the x-rays. [51:31.840 --> 51:33.260] So you're being exploded to the x-rays. [51:33.680 --> 51:33.740] Yeah. [51:34.920 --> 51:35.080] Yeah. [51:36.320 --> 51:36.580] No. [51:37.120 --> 51:42.540] Um, again, the marks generator does not scale up as well. [51:42.880 --> 51:44.340] One re, I'm sorry, I'll take your question. [51:44.600 --> 51:48.340] One reason is because the air, the, the electric strength of the air will break down. [51:48.340 --> 51:49.820] So you have to really go for a Tesla. [51:50.020 --> 51:58.640] If you want something to do industrial strength, like in the hundreds of billions of dollars worth of damage or trillion dollars, you got to go with a Tesla coil. [51:59.180 --> 51:59.800] I'm sorry. [52:06.720 --> 52:11.140] I don't know because I have my own limited funds and I use my funds for this. [52:11.780 --> 52:15.200] So I haven't really tested all the ramifications of it. [52:15.680 --> 52:25.220] Um, uh, I have always been surprised on the side that this is more destructive than I could have thought. [52:25.780 --> 52:31.680] And again, those Soviet people, the Russians, the, that's extra, that article was from 2005. [52:31.680 --> 52:34.400] So they had the full five years to play with it, a full lab. [52:34.580 --> 52:36.180] So they must have learned a lot of things. [52:36.360 --> 52:40.240] And they probably learned how to basically bring another country's electric grid down. [52:41.480 --> 52:43.500] Let me, a small country's electric grid down. [52:43.720 --> 52:49.660] I don't think they want to release the type of information to everybody because they have their own infrastructure that they have to worry about. [52:50.800 --> 52:55.600] I mean, this is more like if a case of Peru or Argentina wants to bring Brazil down. [52:56.120 --> 52:57.540] This is more of an economic type of... [52:57.540 --> 53:08.460] Again, it's not something that, you know, we have homeland bureaucracy that they would be able to pick up on or understand or even conceive as a device, even though it's extremely asymmetrical. [53:08.540 --> 53:11.560] In other words, you create a lot of damage for very little money. [53:11.960 --> 53:13.160] And you're hard to detect. [53:14.380 --> 53:19.980] If I start injecting pulses into the electrical grid, big time pulses, I'm going to start bringing things down. [53:20.220 --> 53:22.420] And then I can stop and let you bring your grid back up. [53:22.540 --> 53:24.240] But you may not realize what happened to it. [53:24.340 --> 53:25.900] You may think that it was hit by lightning. [53:26.660 --> 53:35.620] This is not a problem that they understood or aware of, or it's almost like a first virus when you see things. [53:36.360 --> 53:48.040] One telltale thing is that if you have a box running Windows, you have a box running Sun, or a box running Linux, and they all go down together, then it's probably AMP pulse. [53:50.540 --> 53:50.900] Yeah? [53:51.540 --> 53:53.700] Would they be able to track the origins of the... [53:53.700 --> 53:54.380] I don't think so. [53:54.520 --> 53:55.320] I thought about it. [53:55.320 --> 53:55.800] I don't think so. [53:55.880 --> 53:56.840] I think it'd be hard to track. [53:57.020 --> 53:58.680] Because you don't have to continue pulsing. [53:58.760 --> 53:59.440] You could just stop. [54:00.220 --> 54:02.620] They would have to find out what's going on initially. [54:02.620 --> 54:19.320] And again, the times when people who have Tesla cars that arced over into either the grid or into the cable system, they figured that it was some type of strange lightning or ball lightning, some strange phenomena, some man-made phenomena. [54:19.640 --> 54:25.460] And as I said, somebody who had that happens, they're not going to say, well, it was, you know, my coil did this. [54:27.140 --> 54:28.640] What do you think about motion 11? [54:31.000 --> 54:33.240] They did that through free space. [54:33.460 --> 54:34.700] So I don't think... [54:34.700 --> 54:35.960] What was it, Ocean Limit? [54:36.020 --> 54:39.280] They said they did an EMP pulse on a... [54:39.280 --> 54:42.040] I can see... [54:46.710 --> 54:49.390] Well, that was so far made for movie, made for TV thing. [54:49.630 --> 54:54.570] You can't really use it and then generate it in free space because it falls off too rapidly. [54:55.190 --> 54:57.190] You have to inject it through a wiring system. [54:57.810 --> 54:58.930] And again, you could use... [54:58.930 --> 55:01.690] You build a Marx generator much more powerful than this one. [55:01.830 --> 55:02.970] Although you are limited... [55:02.970 --> 55:03.770] You have an upper limit. [55:04.930 --> 55:09.510] The thing is that if I say that the pulse, it depends on the number of times you post something. [55:09.510 --> 55:24.430] So if you post something at 500,000 volts, and then it goes right out, and then you post it at 50,000 volts, but you post it for a couple of seconds or minutes, you're going to be more destructive with the 50,000. [55:24.570 --> 55:25.090] The more... [55:25.090 --> 55:27.130] Again, it's the number of pulses. [55:27.410 --> 55:28.350] And that's the important thing. [55:28.410 --> 55:30.470] Not one great big pulse, but it's the number of pulses. [55:42.100 --> 55:42.500] So... [55:42.500 --> 55:49.680] I'm working on that. [55:50.720 --> 55:53.920] No, really, I'm working on a counter means to it. [55:54.040 --> 55:56.340] But as I said, this is not real. [55:56.460 --> 56:00.800] I'm sure the Soviets take this very seriously because they had a lot of time. [56:00.800 --> 56:06.340] They were very nebulous or vague, that disturbances, they didn't say what they did or anything else. [56:07.360 --> 56:07.800] So... [56:07.800 --> 56:11.500] And they must have found a lot of things. [56:11.740 --> 56:13.560] They must have found, hey, my God, this is fantastic. [56:13.900 --> 56:18.560] This is like a new type of attack thing that the United States doesn't know about. [56:19.000 --> 56:22.240] So that's why I really think there's a reference there. [56:22.520 --> 56:27.920] And if you take my cards, again, email me and I'll give you whatever references you need. [56:28.660 --> 56:32.420] And if you want me to come down to your place and do a demo for you guys. [56:33.020 --> 56:33.380] Okay. [56:33.580 --> 56:33.900] Thank you. [56:35.540 --> 56:36.340] Thank you very much. [56:36.520 --> 56:38.820] Thank you. [56:38.820 --> 56:39.120] Thank you. [56:39.120 --> 56:42.220] This is one of the fabrics if you'd like to feel how it feels. [56:45.060 --> 56:46.120] You have a race car? [56:46.120 --> 56:46.500] Thank you.