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Русская Кухня: Азбука Домашнего терроризма
Книга домашнего терроризма читать
Pyro-Technologies, подразделение L. D Industries, представляет первую редакцию Настольной Книги Террориста. Industries не несет ответственности за любые злоупотребления содержащейся в данной публикации информации. Данная публикация ставит своей целью показать многие приемы и методы, используемые этими людьми в нашей и других странах для совершения террористических актов. Содержащаяся здесь техническая информация может быть получена в общественных библиотеках и может быть использована террористом с минимальным снаряжением. Это становится ысе более пугающим, так как любой маньяк или уголовник может получить данную информацию и использовать ее. Black Powder 2. Pyrodex 2. Rocket Engine Powder 2. Flash Powder 2. Ammonium Nitrate 2. Techniques for Picking Locks 2. Nitric Acid 2. Sulfuric Acid 2. Ammonium Nitrate 3. Explosive Theory 3. Ammonium Triiodide Crystals 3. Mercury Fulminate 3. Nitroglycerine 3. Picrates 3. Black Powder 3. Nitrocellulose 3. Perchlorates 3. Cyclonite 3. ANFOS 3. Potassium Chlorate 3. Dynamite 3. Nitrostarch Explosives 3. Picric Acid 3. Ammonium Picrate Explosive D 3. Nitrogen Trichlorate 3. Lead Azide 3. Termite 3. Molotov Cocktails 3. Chemical Fire Bottle 3. Bottled Gas Explosives 4. Fuse Ignition 4. Impact Ignition 4. Electrical Ignition 4. Electro — Mechanical Ignition 4. Mercury Switches 4. Tripwire Switches 4. Radio Control Detonators 4. Fuse Delays 4. Timer Delays 4. Chemical Delays 4. Paper Containers 4. Metal Containers 4. Glass Containers 4. Plastic Containers 4. Shaped Charges 4. Tube Explosives 4. Atomized Particle Explosions 4. Lightbulb Bombs 4. Book Bombs 4. Phone Bombs 5. Bow and Crossbow Ammunition 5. Blowgun Ammunition 5. Wrist Rocket and Slingshot Ammunition 5. Handgun Ammunition 5. Shotguns 5. B Gun Ammunition 5. Basic Rocket-Bomb 6. Long Range Rocket-Bomb 6. Multiple Warhead Rocket-Bombs 6. Basic Pipe Cannon 6. Rocket-Firing Cannon 7. Smoke Bombs 7. Colored Flames 7. Tear Gas 7. Fireworks 7. Firecrackers 7. Skyrockets 7. Roman Candles 8. Почти в любом городе есть оружейный магазин и аптека. Это два основных места, посещаемых террористами для приобретения материалов для создания взрывчатки. Все, что требуется, это немного знаний об используемых невзрывчатых материалах. Порох, к примеру, используется в огнестрельном оружии. Он бывает различных 'видов', отличающихся размерами. Вид пороха определяется калибром используемого оружия; высококачественный вид пороха должен сгорать слишком быстро в оружии неподходящего калибра. Основное правило: чем мельче частицы пороха, тем быстрее он сгорает. Порох обычно бывает трех видов. Как говорилось выше, самый мелкий сгорает наиболее быстро. Скорость сгорания крайне важна в бомбах. Так как взрыв происходит за счет быстрого увеличения объема газа в замкнутом пространстве, для осуществления взрыва требуется быстросгорающий порошок. Ниже приведены три основных вида пороха, вместе с калибром оружия, в котором он обычно применяется. Обычно, для наиболее быстрого сгорания, используют FFF. Однако используют и другие виды из приведенного ниже списка:. Вид FFF сгорает наиболее быстро из-за меньшего размера частиц, за счет чего увеличивается площадь поверхности сгорания. Применение крупных видов будет обсуждено позднее. Цена не зависит от вида, так что для экономии времени и работы наиболее часто покупают наиболее высококачественный вид пороха. Распространенный на территории СНГ артиллерийский порох для изготовления бомб не применяется из-за довольно низкой скорости сгорания, даже в измельченном состоянии, так как в него вводят специальные замедлители. Наиболее серьезной проблемой с порохом является его способность к возгоранию от статического электричества и его тенденция к поглощению влаги из воздуха. Для его безопасного измельчения создатель бомбы должен использовать пластиковую ложку и деревянную салатницу. Беря маленькими порциями, он или она должны давить порошок ложкой и измельчать его серией ударов или круговых движений, но не слишком сильными нажатиями. Он готов к использованию, когда превратится в муку. Однако, требуемое качаество сильно зависит от типа создаваемого устройства; очевидно, невозможно измельчить достаточное количество порошка для заполнения трубки радиусом 4 дюйма и длиной 1 фут. Pyrodex is a synthetic powder that is used like black powder. It comes in the same grades, but it is more expensive per pound. However, a one pound container of pyrodex contains more material by volume than a pound of black powder. It is much easier to crush to a very fine powder than black powder, and it is considerably safer and more reliable. This is because it will not be set off by static electricity, as black can be, and it is less inclined to absorb moisture. It can be crushed in the same manner as black powder, or it can be dissolved in boiling water and dried. One of the most exciting hobbies nowadays is model rocketry. Estes is the largest producer of model rocket kits and engines. Rocket engines are composed of a single large grain of propellant. This grain is surrounded by a fairly heavy cardboard tubing. One gets the propellant by slitting the tube lengthwise, and unwrapping it like a paper towel roll. When this is done, the grey fire clay at either end of the propellant grain must be removed. This is usually done gently with a plastic or brass knife. The material is exceptionally hard, and must be crushed to be used. By gripping the grain on the widest setting on a set of pliers, and putting the grain and powder in a plastic bag, the powder will not break apart and shatter all over. This should be done to all the large chunks of powder, and then it should be crushed like black powder. The larger the engine, the more expensive. Rocket engines are perhaps the single most useful item sold in stores to a terrorist, since they can be used as is, or can be cannibalized for their explosive powder. Rifle powder and shotgun powder are really the same from a practicle standpoint. They are both nitrocellulose based propellants. They will be referred to as gunpowder in all future references. Gunpowder is made by the action of concentrated nitric and sulfuric acid upon cotton. This material is then dissolved by solvents and then reformed in the desired grain size. When dealing with gunpowder, the grain size is not nearly as important as that of black powder. Both large and small grained gunpowder burn fairly slowly compared to black powder when unconfined, but when it is confined, gunpowder burns both hotter and with more gaseous expansion, producing more pressure. Therefore, the grinding process that is often necessary for other propellants is not necessary for gunpowder. Any idiot can buy it, since there are no restrictions on rifles or shotguns in the U. Flash powder is a mixture of powdered zirconium metal and various oxidizers. It is extremely sensitive to heat or sparks, and should be treated with more care than black powder, with which it should NEVER be mixed. It is sold in small containers which must be mixed and shaken before use. It is very finely powdered, and is available in three speeds: fast, medium, and slow. The fast flash powder is the best for using in explosives or detonators. It burns very rapidly, regardless of confinement or packing, with a hot white 'flash', hence its name. It is sold in magic shops and theater supply stores. Ammonium nitrate is a high explosive material that is often used as a commercial 'safety explosive' It is very stable, and is difficult to ignite with a match. It will only light if the glowing, red-hot part of a match is touching it. It is also difficult to detonate; the phenomenon of detonation will be explained later it requires a large shockwave to cause it to go high explosive. Commercially, it is sometimes mixed with a small amount of nitroglycerine to increase its sensitivity. Ammonium nitrate is used in the 'Cold-Paks' or 'Instant Cold', available in most drug stores. The 'Cold Paks' consist of a bag of water, surrounded by a second plastic bag containing the ammonium nitrate. To get the ammonium nitrate, simply cut off the top of the outside bag, remove the plastic bag of water, and save the ammonium nitrate in a well sealed, airtight container, since it is rather hydroscopic, i. It is also the main ingredient in many fertilizers. The first section deals with getting chemicals legally. This section deals with 'procuring' them. The best place to steal chemicals is a college. Many state schools have all of their chemicals out on the shelves in the labs, and more in their chemical stockrooms. Evening is the best time to enter lab buildings, as there are the least number of people in the buildings, and most of the labs will still be unlocked. One simply takes a bookbag, wears a dress shirt and jeans, and tries to resemble a college freshman. If anyone asks what such a person is doing, the thief can simply say that he is looking for the polymer chemistry lab, or some other chemistry-related department other than the one they are in. One can usually find out where the various labs and departments in a building are by calling the university. There are, of course other techniques for getting into labs after hours, such as placing a piece of cardboard in the latch of an unused door, such as a back exit. Then, all one needs to do is come back at a later hour. Also, before this is done, terrorists check for security systems. If one just walks into a lab, even if there is someone there, and walks out the back exit, and slip the cardboard in the latch before the door closes, the person in the lab will never know what happened. It is also a good idea to observe the building that one plans to rob at the time that one plans to rob it several days before the actual theft is done. This is advisable since the would-be thief should know when and if the campus security makes patrols through buildings. Of course, if none of these methods are successful, there is always section 2. There are unfortunately, problems with noise and excess structural damage with these methods. The next best thing, however, is a set of army issue lockpicks. These, unfortunately, are difficult to acquire. If the door to a lab is locked, but the deadbolt is not engaged, then there are other possibilities. The rule here is: if one can see the latch, one can open the door. There are several devices which facilitate freeing the latch from its hole in the wall. Dental tools, stiff wire 20 gauge , specially bent aluminum from cans, thin pocket-knives, and credit cards are the tools of the trade. The way that all these tools and devices are uses is similar: pull, push, or otherwise move the latch out of its hole in the wall, and pull the door open. This is done by sliding whatever tool that you are using behind the latch, and pulling the latch out from the wall. To make an aluminum-can lockpick, terrorists can use an aluminum can and carefully cut off the can top and bottom. Then, cut the open-ended cylinder so that it can be flattened out into a single long rectangle. This should then be cut into inch wide strips. This should be folded into an L-shape, a J-shape, or a U-shape. This is done by folding. The pieces would look like this:. Fold along lines to make a single quadruple-thick piece of aluminum. This should then be folded to produce an L,J,or U shaped device that looks like this:. All of these devices should be used to hook the latch of a door and pull the latch out of its hole. The folds in the lockpicks will be between the door and the wall, and so the device will not unfold, if it is made properly. Anyone can get many chemicals from hardware stores, supermarkets, and drug stores to get the materials to make explosives or other dangerous compounds. A would-be terrorist would merely need a station wagon and some money to acquire many of the chemicals named here. Methyl alcohol is very poisonous. Methyl alcohol may prevent mercury fulminate from forming. The pine and cloudy ammonias should not be bought; only the clear ammonia should be used to make ammonium triiodide crystals. Mercury thermometers are becoming a rarity, unfortunately. They may be hard to find in most stores. Mercury is also used in mercury switches, which are available at electronics stores. Mercury is a hazardous substance, and should be kept in the thermometer or mercury switch until used. It gives off mercury vapors which will cause brain damage if inhaled. For this reason, it is a good idea not to spill mercury, and to always use it outdoors. Also, do not get it in an open cut; rubber gloves will help prevent this. It is usually stolen by bomb makers, or made by the process described in a later section. The iodine sold in drug stores is usually not the pure crystaline form that is desired for producing ammonium triiodide crystals. Once again, theft is the means that terrorists result to. There are several ways to make this most essential of all acids for explosives. One method by which it could be made will be presented. If it all does not dissolve, carefully stir the solution with a glass rod until it does. Continue heating until liquid begins to come out of the end of the retort. The liquid that forms is nitric acid. Heat until the precipitate in the bottom of the retort is almost dry, or until no more nitric acid is forming. This can result in the production of highly flammable and toxic gasses that may explode. It is a good idea to set the above apparatus up, and then get away from it. Potassium nitrate could also be obtained from storebought black powder, simply by dissolving black powder in boiling water and filtering out the sulfur and charcoal. To obtain 68 g of potassium nitrate, it would be necessary to dissolve about 90 g of black powder in about one liter of boiling water. Filter the dissolved solution through filter paper in a funnel into a jar until the liquid that pours through is clear. The charcoal and sulfur in black powder are insoluble in water, and so when the solution of water is allowed to evaporate, potassium nitrate will be left in the jar. Sulfuric acid is far too difficult to make outside of a laboratory or industrial plant. However, it is readily available in an uncharged car battery. A person wishing to make sulfuric acid would simply remove the top of a car battery and pour the acid into a glass container. There would probably be pieces of lead from the battery in the acid which would have to be removed, either by boiling or filtration. The concentration of the sulfuric acid can also be increased by boiling it; very pure sulfuric acid pours slightly faster than clean motor oil. Ammonium nitrate is a very powerful but insensitive highorder explosive. It could be made very easily by pouring nitric acid into a large flask in an ice bath. Then, by simply pouring household ammonia into the flask and running away, ammonium nitrate would be formed. After the materials have stopped reacting, one would simply have to leave the solution in a warm place until all of the water and any unneutralized ammonia or acid have evaporated. There would be a fine powder formed, which would be ammonium nitrate. It must be kept in an airtight container, because of its tendency to pick up water from the air. The crystals formed in the above process would have to be heated VERY gently to drive off the remaining water. These recipes are theoretically correct, meaning that an individual could conceivably produce the materials described. The methods here are usually scaled-down industrial procedures. An explosive is any material that, when ignited by heat or shock, undergoes rapid decomposition or oxidation. This process releases energy that is stored in the material in the form of heat and light, or by breaking down into gaseous compounds that occupy a much larger volume that the original piece of material. Because this expansion is very rapid, large volumes of air are displaced by the expanding gasses. This expansion occurs at a speed greater than the speed of sound, and so a sonic boom occurs. This explains the mechanics behind an explosion. Explosives occur in several forms: high-order explosives which detonate, low order explosives, which burn, and primers, which may do both. High order explosives detonate. A detonation occurs only in a high order explosive. Detonations are usually incurred by a shockwave that passes through a block of the high explosive material. The shockwave breaks apart the molecular bonds between the atoms of the substance, at a rate approximately equal to the speed of sound traveling through that material. In a high explosive, the fuel and oxidizer are chemically bonded, and the shockwave breaks apart these bonds, and re-combines the two materials to produce mostly gasses. Low order explosives do not detonate; they burn, or undergo oxidation. Some low order materials burn at about the same speed under pressure as they do in the open, such as blackpowder. Others, such as gunpowder, which is correctly called nitrocellulose, burn much faster and hotter when they are in a confined space, such as the barrel of a firearm; they usually burn much slower than blackpowder when they are ignited in unpressurized conditions. Black powder, nitrocellulose, and flash powder are good examples of low order explosives. Primers are peculiarities to the explosive field. Some of them, such as mercury filminate, will function as a low or high order explosive. They are usually more sensitive to friction, heat, or shock, than the high or low explosives. Most primers perform like a high order explosive, except that they are much more sensitive. Still others merely burn, but when they are confined, they burn at a great rate and with a large expansion of gasses and a shockwave. Primers are usually used in a small amount to initiate, or cause to decompose, a high order explosive, as in an artillery shell. But, they are also frequently used to ignite a low order explosive; the gunpowder in a bullet is ignited by the detonation of its primer. Impact explosives are often used as primers. Of the ones discussed here, only mercury fulminate and nitroglycerine are real explosives; Ammonium triiodide crystals decompose upon impact, but they release little heat and no light. Impact explosives are always treated with the greatest care, and even the stupidest anarchist never stores them near any high or low explosives. Ammonium triiodide crystals are foul-smelling purple colored crystals that decompose under the slightest amount of heat, friction, or shock, if they are made with the purest ammonia ammonium hydroxide and iodine. Such crystals are said to detonate when a fly lands on them, or when an ant walks across them. Household ammonia, however, has enough impurities, such as soaps and abrasive agents, so that the crystals will detonate when thrown,crushed, or heated. Upon detonation, a loud report is heard, and a cloud of purple iodine gas appears about the detonation site. Whatever the unfortunate surface that the crystal was detonated upon will usually be ruined, as some of the iodine in the crystal is thrown about in a solid form, and iodine is corrosive. It leaves nasty, ugly, permanent brownish-purple stains on whatever it contacts. Iodine gas is also bad news, since it can damage lungs, and it settles to the ground and stains things there also. Touching iodine leaves brown stains on the skin that last for about a week, unless they are immediately and vigorously washed off. While such a compound would have little use to a serious terrorist, a vandal could utilize them in damaging property. Or, a terrorist could throw several of them into a crowd as a distraction, an action which would possibly injure a few people, but frighten almost anyone, since a small crystal that not be seen when thrown produces a rather loud explosion. Ammonium triiodide crystals could be produced in the following manner:. The jars must both be throw away because they will never be clean again. The technique for putting filter paper in a funnel is taught in every basic chemistry lab class: fold the circular paper in half, so that a semi-circle is formed. Then, fold it in half again to form a triangle with one curved side. Pull one thickness of paper out to form a cone, and place the cone into the funnel. Make sure that they are not too close to any lights or other sources of heat, as they could well detonate. While they are still wet, divide the wet material into about eight chunks. Лишняя невеста СИ. Драконья фиалка. Маша СИ. Никогда не поздно СИ. Свадебный сезон СИ. Любовник королевы фей СИ. Хочу твою любовь. Бенгальский огонёк СИ. Благородные сердца: Книга один. Обитель одиноких душ. Чёрный-пречёрный замок СИ. Ты у меня одна или Призрачная любовь СИ. Случайный граф. Поцелуй Герыча. Мстительный любовник. Часть 2 ЛП. Обращенная в пепел ЛП. Странные дела, или Детектив по-деревенски. Отвязная история СИ. Откровение по улице Огнева, дом двадцать шесть. Не смей меня отпускать СИ. Школьный плен СИ. Космогид СИ. Поверить в сказку. Профессия за тридевять парсеков. Поговорим о дыхании. Дар, который мы не ценим. Звезда Полынь СИ. При использовании текстов библиотеки ссылка обязательна: itexts. Регистрация Напомнить пароль. Настольная книга террориста. Назад к карточке книги. Назад к карточке книги 'Настольная книга террориста'. Почитать похожее на эту книгу. Настольная книга для мужчин. Автор: Томас Финк. Исповедь провинциального террориста Автор: Борис Кригер. Настольная книга для молодых супругов с полным изложением правил супружеско Автор: авторов Коллектив. Настольная книга логопеда Автор: Мария Поваляева. Настольная книга творческого человека Автор: Княженика Волокитина. Настольная книга творческого человека-3 Автор: Княженика Волокитина. Настольная книга для студентов и влюбленных Автор: Мария Лемнис. Настольная Библия женщины Автор: Карина Рублева. Популярные книги за неделю. Просмотров: Судьба подарила мне вторую молодость в другом мире. Смогу я справиться и стать счастливой или…. Морог только постучался в двери Тэнгурина, но уже успел натворить дел. Братья-драконы, наследники…. У меня было почти все: на горизонте маячил диплом с отличием самой престижной академии, должность,…. Весть о том, что в этом году самый завидный холостяк Ситхейма примет участие в Свадебном сезоне,…. Людям опасно ходить в Картехогский лес. Там обитают эльфы — древний и таинственный народ, который…. Иногда не знаешь, что лучше: увидеть привидение или услышать звонок из прошлого До начала…. В преддверии Нового Года так хочется немного волшебства и чуда. Особенно, когда его совсем не…. Не было абсолютно ничего предосудительного в том, что старая дева, дочь викария Хартли, взялась…. Лизе всего 31 год, но она уже знает, что такое одиночество. Подруги давно замужем, московские клубы…. Часть третья, в жанре готического хоррораДжетта — ловкая воровка, Чиро — изворотливый наемник,…. Он и Она. Они не просто разные, они из разных миров. Алья — молоденькая девушка из погибающего…. Жизнь сложна и переменчива. Кто-то с ней справляется, а кто-то — нет. Захватывающая, реалистичная…. Если быть пленницей означает пережить все произошедшее с нею, то Мия хотела бы быть ею…. Жизнь девятнадцатилетней Эмбер была полна смерти, пока в ней не появился Ашер Морган. А что бы сделала ты, если бы однажды тебе приснился сон, неотличимый от яви? И какую цену придется…. Если муж, работа и финансы поют романсы, самое время отправиться на ПМЖ в деревню. Что я,…. Симпатичная и подающая надежды модель Лида благодаря феям подвид тригурди попадает в другой мир. Мой дед был тем еще хранителем тайн, и я несколько лет строил планы, как попасть в Чернобыльскую…. Выбитые пробки в конторе. Идеальный момент познакомиться с сексуальным оборотнем и…. Он закончил школу много лет назад. Только вместо…. Так уж сложилось, что обычное служебное задание, кажущееся простым, даже рутинным, превратится в…. Мы принимаем судьбы, которые заслуживаем. Но Акос влюблен вопреки судьбе. И должен умереть на…. Бедность, равнодушие матери, предательство мужчины, беременность — жизнь Ксении похожа на ад. Нелегко быть пиратским капитаном, но его заместителем — просто невыносимо! Наемники бунтуют,…. Нуменор: от начала до конца Второй Эпохи, так же именуемой Древнейшей. Откуда пришли Три Рода Эдайн?
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