How an ant died after falling from the Himalayas

Updated on science 2024-06-10
26 answers
  1. Anonymous users2024-02-11

    those who have no food will starve to death;

    The temperature is low, freezing to death;

    Too high, fall to death;

    The wind was too strong to kill ......

  2. Anonymous users2024-02-10

    Upstairs is right, starvation, because it took a long time to fall from the Himalayas, and they starved to death.

  3. Anonymous users2024-02-09

    starved to death. It's so light, so it takes a long time to float down...

  4. Anonymous users2024-02-08

    Too light. Drift for too long. Those who had nothing to eat starved to death. No partner wants to die. I haven't slept for too long, and I'm tired of it. He was stoned to death by sudden raindrops.

  5. Anonymous users2024-02-07

    starved to death. It's so light, so it takes a long time to float down...

    Haha: It must be this. Ha ha.

  6. Anonymous users2024-02-06

    Those who froze to death, or starved to death, or died of old age.

  7. Anonymous users2024-02-05

    He died of cold, and died of cold before he reached the ground.

  8. Anonymous users2024-02-04

    I guess he died of old age, it had been too long, and by the time he fell to the ground, he was already dead of old age.

  9. Anonymous users2024-02-03

    It's not life as death, a century has passed, and it's still floating there. If nothing else, it's angry

    Either that or just want to die

  10. Anonymous users2024-02-02

    He who dies alone, or dies sadly.

  11. Anonymous users2024-02-01

    Scared to death You can't say it's wrong, right??

  12. Anonymous users2024-01-31

    I think I'm tired, the mountain is so high, when will it come to the end!

  13. Anonymous users2024-01-30

    Fainting? Fall to death?

    Scared? Hang?

  14. Anonymous users2024-01-29

    There are several main reasons why ants will not die if they fall from a height of 3 meters:

    1.Small size:Ants are comparatively smaller in size, so their weight is lighter. Ants receive less impact when they fall as compared to large creatures.

    2.The hail of the shell is searched:The surface of the ant's body is made up of a hard shell that can mitigate the impact to some extent.

    The shell dissipates energy and reduces damage to internal tissues and organs.

    3.Elastic structure:The body structure of ants has a certain elasticity, and when they fall, the body undergoes elastic deformation, which reduces the propagation of impact force and damage to the internal structure.

    4.Landing position:When ants fall in the air, they usually adopt strategies such as side tilting, legs, etc., to reduce the impact and the pressure of unloading the body.

    While these factors play a role in protecting ants from falling from higher heights without dying, it is also important to note that drops from extreme heights may still cause damage or death to ants. In addition, factors such as size, species, etc., may also cause differences in their adaptability to dropping.

  15. Anonymous users2024-01-28

    Because the ant is small in size, the force area is also small, the inertia is small, the downward impulse is small, and its weight is light, so it will not die.

  16. Anonymous users2024-01-27

    Because ABCD+DBCA=BBEC, A+B+C+D=E+B+B

    Because a + b + c + d = e + b + b, then a + b + c + d = 2 * e + b).

    Since the grip is a + b + c + d = 2 * e + b), the pre-nuclear skin a + b + c + d + e + b = 2 * e + b) + e + b

    Because a + b + c + d + e + b = 2 * e + b) + e + b, a + b + c + d + e = 2 * e + b) + e + b - b

    Because a + b + c + d + e = 2 * e + b) +e + b - b, a + b + c + d + e = 2 * e + b) + e

    Because a + b + c + d + e = 2 * e + b) + e, a + b + c + d + e = 2 * e + 2 * b + e

    Because A+B+C+D+E = 2*E+2*B+E, A+B+C+D+E = 3*E+2*B

    Because a + b + c + d + e = 3 * e + 2 * b, it is changed to a + b + c + d + e = 3 * e + 2 * b = 3 * 5 + 2 * 2 = 21

    So a + b + c + d + e = 21.

    Answer: A + B + C + D + E = 21.

  17. Anonymous users2024-01-26

    Why don't ants fall from a high place and die?

    The second year of junior high school (1) Xu Huangyun.

    As we all know, people can be seriously injured if they fall from a building without falling to their deaths, but have you ever noticed why ants fall from a high place unharmed, and pilots can also be unharmed when parachuting, and do you know the mystery?

    The physics of life tells us that all objects will be affected by air resistance when moving in the air, and the size of the resistance has a great relationship with the surface area of the object and the air in contact, the smaller the object, the greater the ratio of its surface area to gravity, that is, the easier it is to balance the resistance with gravity, so that the object does not fall faster and faster, that is, the tiny object can fall at a very slow speed in the air, so the ant will fall slowly when it lands, and will not fall to death. On the contrary, the larger the object, the smaller the ratio of its surface area to gravity, the more difficult it is to balance the drag with gravity, and the faster the object will fall, so people will fall from tall buildings and even fall to their deaths.

    Even so, we can imagine a way to make the ant fall to death if it falls from a height: put the ant in a long glass tube of vacuum, and when the ant falls in this long glass tube of vacuum at a normal speed, because there is no air resistance, it cannot balance with gravity, resulting in a faster and faster descent, and if the vacuum glass tube is long enough, the ant may fall to death. In the same way, when the pilot parachutes, because the open parachute increases the resistance, it balances with the gravity of the pilot, so that the pilot does not land too fast and can reach land safely without falling and injuring.

    Walking into life, observing life, and experiencing life, you will find that life is so interesting and beautiful.

  18. Anonymous users2024-01-25

    The ants that were blown to death were too light to float around, and they couldn't get down, and they crashed into the mountains and died!

    Ants have a fear of heights.

    Either scared to death or fainted.

    Ants suffocate because there is no toilet in the air!

    The ant fell on the boy's head and was pricked to death by the hair.

    Ants are eaten by birds in the air.

    The ant thought that it would die if it fell from above, so it killed itself in the air!

    The little ant body is too light, in the air.

    Floating, floating, drifting, drifting until old age. Old dead.

    Ants are because of a person.

    Falling off the mountain, it is bored, there is no one to accompany it, and after thinking about it, it is depressed and dies.

  19. Anonymous users2024-01-24

    1.He was happy to die, and as soon as he fell down, he found that he was not dead, and he began to cheer, and as a result, he had a heart attack.

    Suddenly, died.

    2.When he fell, he found that he was not dead, and he was very happy, so he told the other ants that they did not believe it, and they asked to see it for themselves, so they jumped down again, but this time they still did not die, and then the ants believed it, and worshiped it as a god, and let him jump once a year, and then he grew old, and in a cliff jump, over.

  20. Anonymous users2024-01-23

    It won't die, and starvation is too exaggerated. Ants starve to death so easily? It is impossible to fall to death.

    The creatures were killed by falling because:

    1. When the part that touches the ground stops, the part in the air is still falling, and the speed of falling S causes extrusion and causes structural damage.

    2. The impact of the ground force makes the part in contact with the ground unbearable and destroyed, i.e., the kinetic energy velocity and mass mv

    To sum up: the 1,2 of the ant has a very small effect on both and therefore does not die.

    1 point of view to analyze the velocity, according to the formula f=(1 2)c sv 2 for the calculation of air resistance, the landing speed of the ant is very small, where: c is the air resistance coefficient; for air density; s Frontal area of the object; v is the relative velocity of the object and the air. From the above equation, it can be seen that under normal circumstances, the magnitude of air resistance is proportional to the air resistance coefficient and the windward area, and is proportional to the square of the velocity.

    Therefore, when the force is balanced in the air, the ant's gravity = fThe area is large in comparison. Therefore, the velocity after equilibrium is small.

    2.The point of view also illustrates that when both mass and speed are small.

    It is assumed that the contact time from landing to stopping is the same as that of a person jumping off a building. According to ft=δmv

    The average impact force is very small.

  21. Anonymous users2024-01-22

    Will an ant die if it jumps from a height of 1000 meters?

  22. Anonymous users2024-01-21

    This is simple, and anyone who has studied physics knows it. The ant itself is lightweight, and when it lands, it will encounter air resistance, and the downward force it exerts is very small when its gravity and air resistance (buoyancy) are added!

    We can also imagine a way to make the ants fall to their deaths if they fall from a height: put the ants in a long glass tube in a vacuum, and when the ants fall in this long glass tube of the vacuum at the usual speed, because there is no air resistance, it cannot balance with gravity, resulting in a faster and faster decline, and if the vacuum glass tube is long enough, the ants may fall to their deaths.

  23. Anonymous users2024-01-20

    Sure, because it starved to death before it fell. Ha ha.

  24. Anonymous users2024-01-19

    It's not high enough, if it's at an altitude of 10,000 meters, then this ant will definitely die! Starved to death.

  25. Anonymous users2024-01-18

    Due to its own special reasons.

  26. Anonymous users2024-01-17

    Because ants can lift more than 300 times their own body weight. In other words, the force on which an ant falls must exceed 300 times its own weight to cause damage.

    Whereas, ants are small in size and light in weight. During the fall, after reaching a relatively small velocity, the air resistance of the ant is consistent with its body weight, and the speed does not increase. Therefore, the speed at which the ants fall is not high, and the impact force after landing is less.

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