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Meteorites can be broken by us, because although meteorites are in itIron elementThe content is very high, but after all, the other components are not all iron, and there are many impurities, so even the category called iron meteorite can be crushed. Meteorites, also known as meteorites, are solid debris that falls to the ground outside of Earth. It originates from an asteroid or comet.
It has a certain impact on the earth's surface and life. Meteorites vary in size from small to large due to friction, pressure, and the chemical action of gases in the atmosphere, which cause them to rise in temperature and emit light, and can be called meteors before they hit the surface. <>
According to statistics, between 3,000 and 20,000 tons of meteorites fall every day and night. Then the number of meteorites that will fall to the earth every year will be hundreds of thousands to millions of tons. At first glance so many meteorites are constantly falling on the mass of the Earth.
It's going to be amazing!
The number of meteorites that fall to the earth every year is huge, but most of them are not too large, some even turn into meteorite dust, and most of them fall into the ocean or inaccessible places. Iron meteorites weigh much more than stony meteorites because they are very dense and fly through the atmosphere at high speeds.
It is difficult to oxidize and fragment. Space objects and the earth's crust are made up of rocks, which are also composed of minerals with complex compositions, which in turn are made up of a variety of chemical elements.
The content of these elements in the celestial body and the earth's crust varies greatly, among which the iron content ranks first, and the crustal composition data shows that the content of iron in the composition of the earth's crustal material accounts for the fourth place, second only to silicon and aluminum. But many people don't understandHardness actually has little to do with toughness, soIt's not uncommon for real meteorites to be struck with a hammer, as long as the hammer is hard enough and the person is hard enough
The most expensive species of meteorite internationally is the Moon.
and Martian meteorites, desert meteorites will be a little cheaper because of the higher degree of weathering. At present, among all kinds of meteorites in China, the value of the meteorite called black treasure green is much higher than that of the lunar and Martian meteorites, after all, human beings cannot judge their **, and it is very likely to be from the universe 15 billion light years away**.
period of planets, which is of great help in the study of cosmic boundaries and formation.
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Meteorites can be broken by us, the hardness of meteorites is relatively high, but the brittleness of meteorites is relatively strong, so we can break meteorites by knocking meteorites hard.
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Meteorites mainly contain five minerals, olivine, feldspar, pyroxene, nickel veinite, and ferrite. Among them, nickel and ferrite are the iconic substances that distinguish the earth's ores. Stones are fragile, which is normal.
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What meteorites to look at. Stone meteorites can definitely be broken. Iron meteorites are more difficult. But as long as the strength is enough, it should be possible.
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Meteorites can be broken by us. But it needs to be done with a huge lethality like an atomic bomb or a hydrogen bomb**.
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No. Because the material contained in meteorites is so hard that it falls from the sky intact, let alone a human being can break it.
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Meteorites basically have relatively high hardness, strength and tenacity. It is more difficult to break it than a regular stone. If a meteorite, it won't; The central channel, walking the meridians, does not have a stable band, and is of little value for personal collections.
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A stone that can withstand high temperatures is a true meteorite. For example, using a gas welding torch to bake can be done without cracking or collapsing. Who dares to try it with their own stones.
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Where can meteorites be examined, and how much does it cost?
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Many stony meteorites on Earth are completely intact, so why didn't they shatter when they collided with Earth?
Meteorite, also known as a meteorite, is a solid debris that falls on the road surface outside the Earth. It is a planet or meteorite, which is harmful to the surface of the earth and microorganisms. Before it hits the ground, it is called a meteor.
Meteorites range in size from small to large. Before entering the Earth's atmosphere, it was called a meteoroid, because of the chemical effect of friction, pressure and the gases in the air, which caused its temperature to rise and shine, thus producing meteors, including fireballs, also known as shooting stars or meteors.
In the case of a meteorite falling, the rapid ultra-high pressure should fall quickly in front of the earth, and the high temperature may cause heat to cause the gas to cause anti-support phenomenon, which will also reduce the impact force of the landing, just like the basic principle of the wishing lamp, the key is to make the meteorite fall to the ground without collision and collapse and fall to the ground The landform is very critical, one is the desert, mud, lakes, and deep seas can make the meteorite fall softly, with the transformation of the geological environment and the destruction of the earth's environment, the soft fall is slow and the ground is exposed. There is also a climate and operating temperature at the time of the fall, which will not cause the meteorite itself to produce a second or third time in mid-air**, which can also improve the detail of the meteorite.
The meteorite falls in the whole process of falling, nothing will happen, the landing type is broken due to collision, just like you drop the bowl to the ground will crack, just because the large meteorite falls faster rate, the impact is large, it looks like **. It is necessary to understand that ** and rupture (cracking) are two completely different concepts, ** is the rapid expansion of the chemical changes caused by the chemical changes of the chemical substances inside the object; Cracking, on the other hand, is a condition in which the in-situ stress of the object changes due to the force on the object, resulting in disintegration.
During the whole process of the meteorite's demise, until it hit the ground, the inside of the meteorite was full of space temperatures of more than minus 200 degrees, and only the surface was warmed and melted by gas friction (cooled into a molten crust). Meteorites are generally difficult to smash, because of the large density, such a brown carbonless meteorite, which only hurts a little surface when it falls out quickly, and is a fixed meteorite, indicating that the epidermis is only deposited at the end of the edge after melting at high temperature to produce a bead-shaped diagram, and it is difficult to remove it in close combination with geochemical substances, not to mention that it is the only one, and it is reluctant to smash it.
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Meteorites, of course, will be crushed. Because meteorites are just ordinary stones, although they are stones from outer space, they are no different from ordinary stones, and the quality is the same as ordinary stones.
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It should be able to be broken, because meteorites are also stones, but they are relatively hard. In addition, in the process of falling, it also received a lot of impact.
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It should be possible. Because its hardness is not particularly high, and there are many types, the material is also different.
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Sometimes it can be picked, because sometimes it has been taught high-temperature grinding, and it also produces a lot of high-pressure conditions, and there is also a lot of heat, so it can definitely be broken.
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Meteorites cannot be broken because the inside of the meteorite is solid, and its material is also very hard, harder than diamond.
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It can be broken because meteorites not only contain iron, but also other impurities, so they can be crushed.
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The use of missiles to crush large pieces of broken rock that is about to hit the Earth is a method that has yet to be proven. But in the case of a broken rock that is too massive, such as an asteroid, the purpose is not to break it, but to change the orbit of the broken rock. If it breaks, the debris may still make its way to the Earth, which could also be a huge disaster.
Meteorites are generally difficult to break because brown non-magnetic meteorites such as high-density images only hurt a little surface when falling at high speed, which is a directional meteorite. In the picture, it is a figure that comes together to form a bead-like pattern after melting at high temperatures, and only the vertex solidified body is piled up at the edge, which is difficult to remove when combined with the earth's material, not to mention the only one that is unwilling to break.
Meteorites hit the surface of the Earth's atmosphere from outer space at an average speed of more than 20 kilometers per second. When they hit the surface of the atmosphere at high speed, they produce shock waves, which belong to high altitude; As a result of the debris produced, small meteors, when they enter the Earth's atmosphere, burn up due to high temperatures and high-velocity friction burns, burning up and completely evaporating before reaching the Earth's surface. The high-altitude meteorite did not burn out and fell to the ground with a smooth surface.
For example, when a large meteorite passes through the earth's atmosphere, due to high-speed friction and combustion, the internal matrix is unbalanced, and some meteorites will reappear, that is, it belongs to low altitude. Low-altitude meteorites have acute angles on the surface. If the meteorite falls to the ground without burning, it will hit the ground directly, creating a crater.
The size of the crater is related to the size and angle at which the meteorite enters the Earth. Meteorites hit rocks at high speed, and the impact phenomenon is caused by shock waves. Sharp edges can create traces of high-temperature burning on the surface of the rock.
Many meteorite events have been recorded on the earth, and different meteorite impacts have brought different forces to the earth, and you can appreciate the characteristics of meteorites in a small **. Meteorites are so dense that they cannot be drilled out with an electric drill, and their material is formed by the high-speed friction between the dust running in the universe, various stones, and iron mixtures. It is very difficult to break because it is melted by the heat generated at high speed.
A meteorite refers to a meteor outside the planet itself, which is not burned up in the process of falling and finally reaches the surface of the planet, so it is also called a meteorite. The planet that receives the meteorite can be Earth, the Moon, Mercury, or other planets. The meteorites that fall to the Earth's surface range from a few grams to 60 tons.
Because the combustion process of meteorites is related to many factors such as the density, shape, angle and speed of the meteorite itself when it enters the earth's atmosphere, there should be no accurate answer to how large a meteorite can land. For example, a meteorite with a high density and smooth shape enters the atmosphere from the polar regions of the earth with a relatively slow initial velocity almost perpendicular to the ground, and only needs a small mass to land; However, meteorites with small density, irregular shape, and large surface area can easily burn out during the fall process if they enter the atmosphere at a critical velocity in the tangential direction of tens of thousands of kilometers above the ground, and even if the mass is very large, it cannot reach the ground.
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Meteorites are very difficult to break, because the density of meteorites is too large, so if you want to break meteorites, you need a very large force, and such power is generally not available.
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Yes, because things that are denser are made up of molecules, they can definitely be broken.
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Meteorites can be broken because meteorites are not that hard and can still be easily broken.
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Although meteorites are much more special than ordinary rocks on the earth, this special is only reflected in their scientific value, not their hardness, otherwise, how do scientists measure the content of various components of meteorites?
Meteorites, also known as "meteorites", are unburned stony, iron, or a mixture of rock-iron materials that are scattered on the surface of the Earth or other planets by cosmic meteors or dust fragments that have left their original orbits outside the Earth. In the final analysis, meteorites are also objects composed of various substances, and they are not seamless, and it seems impossible to start, so when facing meteorites, people can find various openings and let them break apart. Meteorites come from space, and when breaking the earth's atmosphere, they rub against the atmosphere at high speed, and can heat up at high temperatures, extinguish and dissolve, so meteorites are obviously not out of the scope of the existing science and technology.
The vast majority of meteorites found so far are meteorites. Iron is a very special element in this universe. The elements that precede iron in the periodic table react with fusion, releasing energy.
The fission reaction of the elements arranged after the iron element in the periodic table releases energy. So iron is a very special element in the universe. As for the above reasons, the abundance of iron in the universe is still very high.
Most of the meteorites we can see are also meteorites. Whether iron-rich meteorites can be broken is a simple question, whether it is metallic iron or iron-rich alloys and ferric iron or ferric compounds, it is easy to crush them under the wrist of modern technology.
Common meteorites include stony meteorites, stony iron meteorites, etc. No matter what kind of meteorite it is, it has experienced high temperatures and friction in the process of falling into the atmosphere at high speed and falling into the air. What is easy to break and shatter has long been synthesized, and what can be obtained in the air is all synthesized and eroded.
It's relatively not easy to break.
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The stone meteorite alone has the feeling of being roasted, it is very brittle, it is easy to crack, it is lobed, it is explosive, I don't see the powder of the stone, I don't know if it is such a feeling. Meteorites are denser than ordinary stones and are not easy to break, but they can also be broken. This kind of black treasure green meteorite with high copper and iron content is not easy to break.
No one has ever done it successfully.
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Theoretically, the rough stone can be broken, but no one has done such experiments so far.
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Summary. Dear, meteorites are very difficult to break.
Meteorites are the most abundant stones in space, so can meteorites be broken?
Dear, meteorites are very difficult to break.
What if not pure meteorites.
It's just that it's hard to be crushed, because although the composition of the meteorite potato and the stone is a little bit late, there are more iron-containing and fewer impurities, but as long as you knock it, you can still break it.
Because in outer space, the high-speed movement makes its miscellaneous hail mess be consumed, so it is born with a relatively dense skin, and it is difficult to be broken only when the sail stall is said. And there is a glass meteorite, which makes the same glass as ours, which can be easily shattered.
Pity, chanting, today, let, rabbit, evening, exam, **, power, houma, monkey, waiting, cupping, quilt.
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