Tsar-class hydrogen bomb response evacuation system, temporary evacuation structure, nuclear weapon attack deterrence defense system
The Tsuri Hydrogen Bomb Level Evacuation System and nuclear deterrence defense system address the challenges of surviving and recovering from a Tsarina-class hydrogen bomb by offering temporary shelters and a deterrent, ensuring population safety and economic resilience.
Patent Information
- Application Number
- JP2024081370
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-05-19
- Publication Date
- 2025-12-02
AI Technical Summary
The potential impact of a Tsarina-class hydrogen bomb on Tokyo poses significant challenges in minimizing damage and ensuring the survival and recovery of the population, as well as maintaining economic stability and supporting marginal communities.
The implementation of the Tsuri Hydrogen Bomb Level Evacuation System, which includes preparedness ranking tables and temporary evacuation structures, such as reinforced concrete buildings with lead plate filtered ceilings, stocked with daily necessities, radiation-resistant clothing, and solar or wind power generation equipment, along with a nuclear weapons attack deterrence defense system using drones to scatter spent nuclear fuel.
Enhances the chances of survival and rapid recovery by providing effective temporary shelters and a deterrent against nuclear attacks, ensuring the productive population's safety and enabling the economy to function despite the threat.
Smart Images

Figure 2025175301000001_ABST
Abstract
Description
[Technical Field]
[0001] This invention is about reducing damage in the event of a Tsarina-class hydrogen bomb hitting the 23 wards of Tokyo. [Background technology]
[0002] Nuclear war is inevitable. It's something the other side needs, so there's nothing you can do about it. If you're hit directly, you won't survive. If they were dropped on every prefecture in the Japanese archipelago (every ward in Tokyo) at the same time, we'd all die together. On the other hand, the financial burden on the dropper is also large, so there is no need to consider dropping them all at once. However, there is a possibility that some may accidentally fall. In this case, it is necessary to consider how to survive. If you are in a residential area in an urban area far enough away from the hypocenter, you would not be instantly killed because of radiation and blast shielding. In a valley, the damage would be minimal. Staff from the bipartisan response group overseen by the Chairman of the House of Councillors will be dispatching explainers to each prefecture, city, town, and village. Residents of prefectures, cities, towns, and villages other than Tokyo, Osaka, and Nagoya will be persuaded, accompanied by prefectural, city, town, and village officials, to do nothing and continue living their lives as usual. Hokkaido, Kyushu, Shikoku, and the Sea of Japan coast are particularly at low risk. The Tsarry-class hydrogen bomb is a hydrogen bomb simulating the real Tsarry hydrogen bomb, which the inventor designed based on the world's most powerful real Tsarry hydrogen bomb, manufactured by the Soviet Union. The real Tsarry hydrogen bomb used lead as a tamper. Using depleted or natural uranium would not double the power. Neutrons generated by nuclear fission are reflected within the explosion, so neutrons leak into the outside world and contribute little to the nuclear reaction. Even if all the nuclear weapons in the world were dropped simultaneously, the energy released would be about the same as that of the Tohoku-Fukushima earthquake. There are not enough missiles to transport to Africa, South America, Siberia, Central Asia, and Antarctica. It is unlikely to contribute significantly to global warming compared to the amount of fossil fuels burned on Earth in a year. Grass sprouts appeared at the hypocenter of Hiroshima less than a year later. The Bikini Atoll hydrogen bomb test exposed 1,423 ships, 20,000 people, and most of the fish catch was discarded. Only one death was confirmed within a year. The media and chefs manipulate stories to make them sell. The dinosaurs became extinct due to an asteroid impact, and even though a 300-meter tsunami occurred, underground mammals (the ancestors of humans) survived. There's been too much fuss about nuclear war clocks. The real Tsarina hydrogen bomb was dropped from a Tupolev-95 on a deserted island in the Arctic Ocean. The Tu-95 is a propeller plane comparable to the B-29. Its payload is about the same as the Hiroshima atomic bomb, but the power of modern nuclear weapons is far greater. Thirty-five Tu-160s were built, but few are currently in flight. They have a payload capacity of 40 tons. The An-225 (Antonov-225) is the world's largest jet aircraft, with a payload capacity of 640 tons, and was developed and designed in Ukraine during the Soviet era. During the Russian era, a Ukrainian airline sold its design and manufacturing to China (excluding intellectual property rights). This aircraft, which was operated by a Ukrainian airline, was damaged by a Russian attack during the current Ukrainian conflict. Assistance is being sought for repairs. After sending out Japanese passenger planes to the airfield, the defense force could intercept them and shoot them all down. The MiG escort fighter-bombers were small, even when they were carrying nuclear weapons. From a cost-effectiveness perspective, bombers are the most powerful means of attack. This is why the United States is reluctant to allow Japan to manufacture large passenger aircraft. It is also reluctant to install bomb-carrying equipment on fighter-bombers. Missiles are not as powerful as bombers (they carry many small hydrogen bombs, which are expensive and difficult to maintain if used to target Japan). DISCLOSURE OF THE INVENTION [Problem to be solved by the invention]
[0003] Research into mitigating damage is being conducted. Being scared will only lead to people living passively, stagnating the economy, and failing to support marginal communities. Intentionally dropping a nuclear bomb on a marginal settlement far from a city would be cost-ineffective, so no nuclear bombs would be dropped. On the other hand, if a nuclear bomb were dropped on a city, there would be no one to support the marginal settlement, and it would eventually disappear. If a nuclear weapon were dropped on Tokyo, everything would be evaporated. However, the Yamanote Line and other railway tracks are owned by JR, and prefectural and national roads also have designated owners, so recovery would be quick. Infrastructure such as water, gas, and electricity would also be quickly restored because their installation sites are designated. Since many of the assets are held overseas by companies, reconstruction funds are relatively easy to come by. However, if the Diet does not issue deficit bonds within one month because it does not want to increase the national debt, Japan will become extremely poor and gradually impoverished. The common people will starve to death, and only the government officials will survive. The question is whether an emergency regent / chancellor (like Bismarck or Prince Higashikuni) can be quickly elected. A consensus system will fail. Ultimately, we can manage by reducing the productive population of Tokyo residents from the disaster. Many of the families of people who commute to Tokyo live outside the 23 wards, so they can simply return to their homes. Securing a productive population is relatively easy. Rely on support from regional cities. Allow them to live permanently in the deserted areas. Avoid support from foreigners as much as possible. [Means for solving the problem]
[0004] Method 1 is the Tsuri Hydrogen Bomb Level Evacuation System. The Toury Hydrogen Bomb Level Response Evacuation System consists of a preparedness ranking table and temporary evacuation structures based on the preparedness ranking table. The preparedness ranking table is composed of a rank corresponding to the expected time of the fall of a Tsarist hydrogen bomb, and an expected degree of damage depending on the distance from the hypocenter of a Tsarist hydrogen bomb. Temporary evacuation structures located 100 km or more from the hypothetical hypocenter of a Tsuri H-bomb are reinforced concrete buildings with lead plate (100) filtered ceilings. The temporary evacuation structure was stocked with daily necessities, at least one week's supply of water and food, and radiation-resistant clothing. Living supplies include medicines, bedding, toilets and other waste disposal equipment, and if possible, solar or wind power generation equipment. Limited water is bottled water with few minerals and organic substances like tea, and limited food is food packaged in a material that is less likely to become radioactive, such as a paper carton, rather than in a metal can. If possible, it is best to use water that has had the heavy water removed. This reduces radioactivity. Heavy water can be used for nuclear fusion power generation and hydrogen bombs.
[0005] The intense heat, radiation, and blast are thought to subside in a short time, less than 10 minutes, so if you can hold out for a moment after the explosion, your chances of survival would likely increase. A nuclear power plant burns uranium continuously over the course of a year, but an atomic bomb burns uranium instantly with just one shake. A pulverized coal-fired power plant burns carbon particles over the course of a year, but a gunpowder bomb burns in less than a second (deflagration speed is about 10 km / s). Footage from Hiroshima shows people fleeing in panic and burning buildings, but this was more than an hour after the explosion. People move after two to three days when the heat rays, blast, and radiation have subsided. If you stay underground, you can survive.
[0006] Means 2 is a temporary evacuation structure similar to Means 1. Temporary evacuation structures can be selected from Temporary Evacuation Structure 0, Temporary Evacuation Structure 1, Temporary Evacuation Structure 2, and Underground Temporary Evacuation Structure, depending on the expected time of explosion and financial availability.
[0007] Temporary evacuation structure 0 is a simple temporary evacuation structure that was planned to be erected within one week of a hypothetical bomb-class explosion in an existing house (10), assuming that time and money are tight and it is to be built more than 100 km from the hypothetical hypocenter. A filter tent (20) is set up inside the existing house (10), It contains daily necessities, more than a week's worth of limited water and food, and radiation-resistant clothing. Temporary Evacuation Structure 1 is a temporary evacuation structure with a filter that is planned to be built more than 100 km from the hypothetical hypocenter, within six months of a hypothetical fall of a Tsarist-class hydrogen bomb, as there is a little more time and money available. A lead plate (100) is laid on the ceiling of the structure, It contains daily necessities, more than a week's worth of limited water and food, and radiation-resistant clothing. Temporary evacuation structure 2 is expected to be built more than 100 km from the hypocenter, when there is sufficient time and money. This is a temporary evacuation structure with a filter that is planned to be constructed within one year of the hypothetical fall of a Tsarist hydrogen bomb. A lead plate (100) is laid on the ceiling of the structure, It contains daily necessities, more than a week's worth of limited water and food, and radiation-resistant clothing. A convex blast barrier (400) was laid on the hypothetical hypocenter side. The temporary underground evacuation structure will be constructed more than 55 km from the hypocenter, when there is sufficient time and money. This is a temporary evacuation structure with a filter that is planned to be laid underground within six months of the anticipated fall of a Tsarist hydrogen bomb. Lead plates (100) were laid on the ceiling of the structure. It contains daily necessities, more than a week's worth of limited water and food, and radiation-resistant clothing.
[0008] Measure 3 is a nuclear weapons attack deterrence defense system. a spent nuclear fuel object comprising a cast iron can containing granulated spent nuclear fuel; It was mounted on a drone, placed in the warhead of a shell, or buried underground.
[0009] The containers mentioned above are hidden underground for loading onto or dropping from drones. Simply sending out a message that Japan will retaliate by scattering the accumulated spent nuclear fuel assemblies over the capital or commercial cities from high altitude using hidden drones or balloons would serve as a deterrent against nuclear attacks.
[0010] Method 4 is a verification system for the expected timing of a Tsarina H-bomb. If you quickly link it to your My Number card, all of your savings passbooks will be protected and withdrawals will be possible. The certificate is a Tsarry H-bomb-class system designed for the age, characterized by allowing authentication using facial bones. For example, My Number cards could be used to withdraw up to 100,000 yen. Certificates could be authenticated using facial bones. Financial markets, including stock markets, could be closed for a week to avoid major disruptions. [Effects of the Invention]
[0011] Temporary evacuation structures can also be used in the event of anticipated damage from pandemics, earthquakes, tsunamis, etc. When constructing temporary evacuation structures, exemptions from building coverage ratios allow them to be constructed near existing buildings. This does not seem to be a problem for underground temporary evacuation structures. Even with a Tsarist-class hydrogen bomb, root vegetables grown in fields and ponds more than 100 km from the hypocenter would be edible. Loaches, crayfish, and shellfish from the pond would be edible. After a month or so has passed, food from the mountains and sea will arrive. Seafood in particular is less contaminated with radiation. Japan has a steep slope, so after a year, the level of radioactive contamination on the ground surface will decrease. Surface farming, hydroponics, and coastal agriculture will be possible. For example, if half the population were to die in a nuclear explosion, food surplus would double. When a threat emerges from a land-locked country, the front lines become chaotic, making it difficult to use nuclear weapons. Even if nuclear weapons are used without considering friend or foe, it can provoke civil war in the invading country. In the current Ukrainian conflict, they will likely want to seize as many military factories, military research institutes, engineers, underground resource mines, and grain-producing areas as possible intact. Using military factories and research institutes as defensive positions will help prevent nuclear attacks. The conflict will be prolonged. Nuclear attacks on nuclear power plants are unlikely due to the extensive cleanup. The Belarusian border is also unlikely to see nuclear attacks. If Belarus does indeed have nuclear weapons, special forces could seize them. Ukraine designed and manufactured nuclear weapons and heavy bombers during the Soviet era (a life-or-death situation for Russia if Ukraine joins the EU). From the Ukrainian perspective, Russian soldiers and people in Crimea are hostages. The Black Sea can also be considered a hostage against nuclear contamination (as can the Sea of Japan, the inner Baltic Sea, the Arctic Ocean, and the Caspian Sea). Both sides will likely engage in civil unrest, often in a guerrilla-like manner. Ultimately, they can seek refuge in the Crimean Peninsula. During World War I, the Romanovs withdrew from the front lines. Now the two winners are the US and China, with the conspiracy-loving UK joining the fray. BEST MODE FOR CARRYING OUT THE INVENTION
[0012] This provided a system that would allow a country to recover without being annihilated, even if a powerful nuclear weapon were dropped on its capital. Example 1
[0013] The first embodiment is a Toury Hydrogen Bomb-class evacuation system. Figure 1 is a table of preparedness rankings based on the expected damage caused by a Tsarist hydrogen bomb. The damage would vary depending on where objects are located and where you are (your position from the hypothetical hypocenter) at the moment a Tsar H-bomb explodes. For information on the Tsar H-bomb itself, see Wikipedia and a video (Non-Patent Document 1). Because there are some ambiguities, in this paper we refer to the Tsar H-bomb as a large nuclear weapon. For reference, the Hiroshima atomic bomb is described. (Non-Patent Document 2) was used as a reference. There are few reliable, authentic documents. There are many literary and political documents that appeal to emotions. Although there are reports that nuclear weapons should not exist, that we do not want them to exist, and that the end of the world is near, there are in reality nuclear-weapon states that use them as threats. In this study, the term "Hiroshima atomic bomb-class" is used to refer to small nuclear weapons. Scientific investigations of the site immediately after the explosion were primarily conducted by the U.S. military, and it is doubtful whether the figures are unbiased. There appear to be few consistent figures responsibly published by individuals or groups. Dr. Nishina began his investigation on August 11th at the request of Imperial General Headquarters. On August 10th, the Arakatsu group from Kyoto University, along with the Asada team from Osaka University and the Hiroshima Bunri University group, collected data on residual radiation levels in the air and residual radioactivity in the soil at the request of the Navy. However, it is unclear how accurate the measuring equipment and technology used at the time were. It will be difficult to determine the values when it comes to evaluation and analysis. If you were within 6.6 km of the hypocenter, there was nothing you could do. If an explosion occurred there, you would die instantly. Everything would be vaporized. Even if you were lucky, you would die from severe burns. If you were between 6.6km and 23km from the hypocenter, your chances of survival were 50 / 50. Buildings on the ground were completely destroyed by the shock wave. If you were between 23km and 55km from the hypocenter, even if you survived on the day, you would be seriously injured and unable to move. You would gradually die. Wooden buildings on the ground would be burned or completely destroyed by the heat rays, fire, and blast. If you were within 55-100km of the hypocenter, you could survive for a relatively long time. If you were indoors, your burns would be minor. Buildings would only be half-destroyed. If you are more than 100km from the hypocenter, you can survive for a long time. Buildings are intact. Responses and preparations will differ depending on when it is assumed that a Tsarist hydrogen bomb will explode. Assume the explosion will occur within a week. There will be little time to respond or prepare. Prepare to move more than 100 km from the hypocenter and move there quickly. If an alarm sounds now, run to the nearest underground subway line or take shelter in the basement of a sturdy reinforced concrete building. Always carry radiation-resistant clothing, a smartphone, and limited water. If you are in a group or will be in a group for the next three days, turn off your smartphone to save power. Prepare 0-2 temporary evacuation structures and stay there if you are there. The heat, blast, and radiation from an explosion only last for a moment, so you may be able to survive depending on where you are. An underground temporary evacuation structure is relatively close to ideal. If you are prepared for death on a daily basis, you won't panic. People outside of Tokyo will continue to live their lives as they have, knowing that not even a gunpowder bomb will fall in their area. Nothing is absolute, so if something were to fall, they would simply accept it as a meteorite. If we assume that the explosion will occur within a month, temporary evacuation structures can be constructed more than 100 km from the hypocenter. There is insufficient time for construction. If we assume that the explosion will occur within six months, it will be possible to build a temporary evacuation structure or an underground temporary evacuation structure more than 100 km from the hypocenter. There is sufficient time for construction, but financial preparation is insufficient. If we assume that the explosion will occur within a year, we can build temporary evacuation structures 2 more than 100 km from the hypocenter. This will give us ample time and money to build them. [Non-Patent Document 1] Tour Bomba, 2017, Ginga Shoseki, Yoshio Uchimoto. Reprint edition available at Kinokuniya Shoten. National Diet Library. [Non-patent document 2] Hiroshima City website, Citizens Bureau, International Peace Promotion Department, Peace Promotion Division Example 2
[0014] Figure 2 shows an example of a temporary evacuation structure. If you live or work in Tokyo, the hypothetical ground zero is the National Diet Building. Build a reinforced concrete wall on the National Diet Building side (or on all four sides, if you want to spend more money). If there are high-rise buildings around you, the damage will be mitigated. Since it will only be temporary, a temporary evacuation structure like the one below can be constructed on a site of about 16.2 m2 without spending a lot of money. Keep about a month's supply of medicines and emergency medicines for personal use that will be used continuously (for about a year. There is no point in assuming more than that. If the damage is too severe, be prepared to die) in the temporary evacuation structure. Those requiring care within the 23 wards will be provided with permanent care in regular long-term residential buildings constructed by the wards outside the 23 wards. Relatives will commute to evacuation structures as needed. If an explosion is expected to occur within the next six months, the individuals will be relocated as appropriate with the consent of their relatives. Within 10 minutes of the Pikadon, the power and gas grids of Tokyo (the 23 wards will evaporate, so they will not be affected by the fire, but it would be a shame if the gas leak continued) will be physically cut off at their core. Fires after the disaster must be prevented. Immediately after the Pikadon, high-speed boats will be used to transport all victims willing to travel, indiscriminately, from ports and riverbanks to locations more than 100 km away. The radiation-resistant clothing consists of a radiation-resistant umbrella, a radiation-resistant hat, a radiation-resistant jacket, a radiation-resistant helmet, and a filter mask made of 100% lead sheet metal (wrapped in polyester as appropriate; lead-free versions are made from a composite of tin, antimony, tungsten, and bismuth). Preparing solar and wind power generation equipment within temporary evacuation structures will help ensure long-term survival after an explosion. The temporary evacuation structure consists of a filter tent (20) set up inside an existing house (10) and storing at least one week's worth of limited water, limited food, and radiation-resistant clothing. Since there is little time to spare, this is a simple temporary evacuation structure that is planned to be set up in the house where you normally live. Until the explosion, you will carry radiation-resistant clothing and procure food. After the explosion, you will be able to survive for about a week. After that, you will rely on rescue. The filter will be on the opposite side of the assumed hypocenter.
[0015] This is a temporary evacuation structure with a filter. The ceiling of the structure is lined with lead sheets (100). It contains at least one week's worth of limited water and food. It also contains beds (if the area is near a house where people normally live, a separate waste disposal building and beds are not necessary, but if there is no house, a separate waste disposal building and beds are necessary). If the beds are located under the limited water and food, the damage from radiation can be reduced. If possible, a blast wall (400) should be installed on the hypothetical hypocenter side. A convex wall will deflect the blast. If you prepare radiation-resistant clothing, you will be able to move around after an explosion. If you are within 100 km of the hypothetical hypocenter, even if you survive, you should be prepared to die. There are no houses, but temporary evacuation structure 1 has a week's supply of water, food, and radiation-resistant clothing stored there. You can move around wearing radiation-resistant clothing. After that, you'll have to rely on rescue.
[0016] Temporary evacuation structure 2 is a temporary evacuation structure with a filter that is planned to be constructed near the house where one normally lives or within one year of the expected explosion. If it is near the house where one normally lives, a separate excrement disposal building and bed are not necessary, but if there is no house, a separate excrement disposal building and bed are necessary. Lead sheets (100) are laid on the ceiling of the structure. If the money can be spent, blast walls (400) should be erected on all four sides. Assistance from the Ministry of Self-Defense is necessary. After a year, the radiation levels will have decreased, the rubble will have been removed, and Tokyo will return to its former self. Rebuilding the damaged infrastructure will be easy, as the land has already been secured. It will not be easy to acquire a new location for the loop line outside of Tokyo.
[0017] The underground temporary evacuation structure is a temporary evacuation structure with a filter installed underground. The ceiling of the structure is covered with lead plates (100). If the top does not protrude above ground, it can withstand the blast. Even if the lead evaporates, it will do so after the explosion, so there will be no direct radiation hit. A watertight structure is desirable. The entrance to the basement (302) will be located on the opposite side of the hypothetical hypocenter. It is desirable to lay the waste building (210) on the ground for the sake of comfort. After a week, the radiation level in the outside world will have dropped significantly, and damage will likely be limited beyond 55 km. Example 3
[0018] The third embodiment is a nuclear weapon attack deterrence defense system. Collect the fallout and have it collected or sent to the original owner. The fallout near the hypocenter is likely to contain oxides of highly enriched uranium, which will be collected before they sink into the ground. Sending this message to the world will serve as a deterrent. Example 4
[0019] The fourth embodiment is a verification system for the expected timing of a Tsar hydrogen bomb. The My Number Card contains a lot of personal information. Therefore, some people may be reluctant to let anyone other than the person in question keep it. In an emergency, a copy of the My Number Card can be made in front of the person and an institution card valid only for that institution can be issued. For example, a health insurance card or a hospital medical card can be issued in a hurry. The My Number Card is a certificate equivalent to a driver's license for people who do not drive a car. If obtaining a My Number card were not made compulsory, and a system were put in place where all procedures could be expedited if one had a My Number card, people would naturally obtain one. The My Number card system has a photograph of the individual's face, so even if one does not know the My Number card or My Number, if one provides the individual's address, name, and age, there is little chance of error when matching the face with the individual's face. If the individual wishes to register their fingerprints, facial structure, and handwritten signature, proof of identity can be assured. In the past, there was a custom known as a "face pass." When issuing an agency card, a digital photograph of the individual or a handwritten signature from that time is attached or stored on the card. To make the My Number Card system more advanced than the current one, it would be necessary to use a different system construction company rather than the previous system construction company. This is because later My Number Card system construction companies generally build more rational and simpler systems. The new My Number Card system construction company will be selected through a designated bidding system involving three companies. Original systems generally involve many complex vested interests. They are not designed to be convenient for users. System construction companies tend to build systems that are easy to build and profitable. Even during the recent Fukushima Tohoku earthquake, the world was waiting in anticipation, buying up stocks and then selling them in droves, expecting the value of the yen to fall sharply and stocks to fall sharply. In reality, the expectations of speculators were betrayed. [Industrial Applicability]
[0020] The cost-effectiveness of intentionally dropping an atomic bomb on a marginal village far from a city is poor, so the bomb will not be dropped. However, if an atomic bomb is dropped on a city, there will be no one to support the marginal village, and the marginal village will eventually disappear. [Brief explanation of the drawings]
[0021] [Figure 1] A table of preparedness rankings based on the expected damage caused by a Tsarist hydrogen bomb. [Figure 2] An example of a temporary evacuation structure. [Explanation of symbols]
[0022] 10 is an existing house 11 is the existing waste room 12 is an existing bed 20 is a tent with a filter 100 is lead plate 200 is a building with a filter 201 is a bed 210 is the waste building 302 is the entrance 400 is a blast barrier
Claims
1. The Toury Hydrogen Bomb Level Response Evacuation System consists of a preparedness ranking table and temporary evacuation structures based on the preparedness ranking table. The preparedness ranking table is made up of ranks corresponding to the expected time of fall of a Tsarist hydrogen bomb, and the expected damage level depending on the distance from the hypocenter of a Tsarist hydrogen bomb. Temporary evacuation structures located 100km or more from the hypothetical hypocenter of a Tsuri H-bomb are reinforced concrete buildings with lead plate (100) filtered ceilings. The temporary evacuation structure is a Toury H-bomb-level evacuation system that stores daily necessities, at least one week's worth of limited water and food, and radiation-resistant protective clothing.
2. In the temporary evacuation structure of claim 1, The temporary evacuation structures consist of temporary evacuation structure 0, temporary evacuation structure 1, temporary evacuation structure 2, and an underground temporary evacuation structure. A temporary evacuation structure that can be selected based on the expected time of explosion and financial availability.
3. The means for suppressing a Tsarist hydrogen bomb attack of claim 1, a spent nuclear fuel object comprising a cast iron can containing granulated spent nuclear fuel; A nuclear weapon attack deterrence defense system characterized by being mounted on a drone, a warhead of an artillery shell, or buried underground.
4. If you quickly link it to your My Number card, all of your savings passbooks will be protected and withdrawals will be possible. The certificate is a Tsarry H-bomb-class system designed for the age, characterized by allowing authentication using facial bones.