Assuming the object free-falls, we may use:
x = x0 + v0t + at2/2
x0 = 0 (we determine it)
v0t = 0 (dropped from rest).
a = g = 10 m/s
t2 = 16s2.
x = 10*16 / 2 = 80m.
The velocity of a freely falling object 5 seconds after being dropped is approximately 49 meters per second (m/s) downwards. This is the velocity an object reaches due to the acceleration of gravity (9.8 m/s^2) acting on it.
The speed of the object after falling for 3 seconds in free fall is 29.4 m/s.
The speed of an object in free fall after falling for 2 seconds is approximately 19.6 m/s. This value is obtained by multiplying the acceleration due to gravity (9.8 m/s^2) by the time the object has been falling (2 seconds).
The acceleration of a freely falling object is approximately 9.81 m/s^2, directed downwards towards the center of the Earth. Therefore, the acceleration of the object 2 seconds after being released will still be 9.81 m/s^2, assuming no other forces are acting on it.
No, the magnet will not fall as a freely falling object when dropped toward a conducting ring. The magnet will experience resistance due to electromagnetic induction as it moves towards the conducting ring, which will slow down its descent. This is known as magnetic braking.
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The velocity of a freely falling object 5 seconds after being dropped is approximately 49 meters per second (m/s) downwards. This is the velocity an object reaches due to the acceleration of gravity (9.8 m/s^2) acting on it.
The speed of the object after falling for 3 seconds in free fall is 29.4 m/s.
The speed of an object in free fall after falling for 2 seconds is approximately 19.6 m/s. This value is obtained by multiplying the acceleration due to gravity (9.8 m/s^2) by the time the object has been falling (2 seconds).
The acceleration of a freely falling object is approximately 9.81 m/s^2, directed downwards towards the center of the Earth. Therefore, the acceleration of the object 2 seconds after being released will still be 9.81 m/s^2, assuming no other forces are acting on it.
No, the magnet will not fall as a freely falling object when dropped toward a conducting ring. The magnet will experience resistance due to electromagnetic induction as it moves towards the conducting ring, which will slow down its descent. This is known as magnetic braking.
The speed of a freely falling object 10 seconds after starting from rest is approximately 98 m/s. This is because in free fall, the acceleration due to gravity is approximately 9.8 m/s^2, so after 10 seconds, the object would have reached a speed of 98 m/s.
Yes, an object freely falling still has mass. Mass is a measure of the amount of matter in an object, and it remains constant regardless of the object's motion. The force of gravity acting on the object is what causes it to fall.
The speed of an object in free fall after falling for 2 seconds is approximately 19.6 m/s.
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The acceleration of gravity is 9.8 meters/sec2 .After 6 seconds, the object's speed is (6 x 9.8) = 58.8 meters/sec .It's velocity is 58.8 meters per second downward.