What is Falling: Definition and 1000 Discussions

In Newtonian physics, free fall is any motion of a body where gravity is the only force acting upon it. In the context of general relativity, where gravitation is reduced to a space-time curvature, a body in free fall has no force acting on it.
An object in the technical sense of the term "free fall" may not necessarily be falling down in the usual sense of the term. An object moving upwards might not normally be considered to be falling, but if it is subject to only the force of gravity, it is said to be in free fall. The Moon is thus in free fall around the Earth, though its orbital speed keeps it in very far orbit from the Earth's surface.
In a roughly uniform gravitational field, in the absence of any other forces, gravitation acts on each part of the body roughly equally. When there is no normal force exerted between a body (e.g. an astronaut in orbit) and its surrounding objects, it will result in the sensation of weightlessness, a condition that also occurs when the gravitational field is weak (such as when far away from any source of gravity).
The term "free fall" is often used more loosely than in the strict sense defined above. Thus, falling through an atmosphere without a deployed parachute, or lifting device, is also often referred to as free fall. The aerodynamic drag forces in such situations prevent them from producing full weightlessness, and thus a skydiver's "free fall" after reaching terminal velocity produces the sensation of the body's weight being supported on a cushion of air.

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  1. W

    Functions to describe object falling in the water

    I'm doing a game where I have to simulate the effect on water when some object falls onto it, like a peeble on a pond. I've been playing around with decaying sinus functions, but I'm running out of time, and I haven't found the set of equations to describe it realistically. Since it's such a...
  2. L

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  3. G

    Question about falling bodies

    What force(s) are at work when a spherical object, rolling down an angled surface, tends to adhere to the surface, if only for a short while? Does such a thing exist or am I playing fast and loose with the laws of nature? Thanks
  4. E

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    Homework Statement I need to know the force of a falling object. m=1.502 kg v=0.528 m/s (this value is way off from the theoretical which is .9598 m/s) Duration of impact = 0.167 s I have all the variable but my problem is this: This falling object compresses a spring which needs a force of 21...
  5. N

    Can a Minister Find Love by Embracing Solo Interests?

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  6. B

    Speed of catching a falling ruler

    Homework Statement Okay, I've been set a piece of coursework to compare the reaction times of catching a ruler, with, or without a certain variable. (I've chosen either eye.) I'm having trouble working out the exact amount of time it takes the person to catch the ruler. (Yeah, I have...
  7. D

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  8. B

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  9. S

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  10. J

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  11. A

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  12. N

    What (physically) to do in a falling elevator?

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  13. H

    What is the Angular Velocity of a Falling Physical Pendulum?

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  14. H

    What is the final angular velocity of a falling physical pendulum?

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  15. D

    Force applied on a falling mass

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  16. M

    Solving the Rope Falling off a Table Problem: A Contradiction?

    I am studying differential equations from this book by Edwards and Penney, and I seem to have stumbled on this rather bizarre contradiction which I can't seem to get myself out of. The problem, which is a variation on the classic rope falling off a table, goes as follows: "Suppose that a...
  17. S

    Angular velocity of a falling rod?

    A uniform rod of mass 0.62 kg is 6 m long. The rod is pivoted about a horizontal, fric- tionless pin at the end of a thin extension (of negligible mass) a distance 6 m from the cen- ter of mass of the rod. Initially the rod makes an angle of 48◦ with the horizontal. The rod is released...
  18. Y

    Falling chain center of mass dynamics

    Not sure if this is in the right subforum but: A chain of uniform mass density, length b, and mass M hangs in a loop from the ceiling (both its ends are adjacent to each other) At time t = 0, one end, end B is released. Find the tension in the chain at point A after end B has fallen a distance...
  19. M

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  20. B

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    I've heard and read many times about Galileo and his standing up in the Leaning Tower of Piza. How he dropped two objects of different mass and proving that the two objects hit the floor at the same time if released at the same time. What I never understood ... was WHY this happened. What...
  21. B

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  22. D

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  23. G

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  24. A

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  25. F

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  26. P

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  27. A

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  28. C

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  29. W

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  30. T

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  31. Z

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  32. G

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  33. T

    Calculating Final Velocity of Free Falling Objects

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  34. FeDeX_LaTeX

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  35. O

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  36. P

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  37. M

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  38. A

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  39. F

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  40. M

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  41. Z

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  42. R

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  43. P

    Falling pole lifting off the ground.

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  44. M

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  45. M

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  46. E

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  47. lisab

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  48. B

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  49. Y

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  50. B

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