What name is given to the type of motion which occurs when an object is accelerating and the only force which is acting on it is its weight?Weight-based accelerationFast fallFree fallFalling downwards2An object is released from rest and undergoes free fall. What will its velocity-time graph look like?A curveA horizontal lineA straight line which starts above the origin and which slopes downwards to the rightA straight line which starts from the origin and slopes upwards to the right3A paper ball is released from rest, and goes on to fall through a large vertical distance. As it falls through the air, it is acted upon by two forces – air resistance and its weight. Which of the following correctly describes its motion after it is dropped?It will accelerate at an increasing rate and then reach its terminal velocityIt will accelerate uniformlyIt will accelerate at a decreasing rate and then reach its terminal velocityIt will accelerate uniformly before reaching its terminal velocity4A feather is released from rest. As it falls through the air, it is acted upon by two forces – air resistance and its weight. By the time it has reached its terminal velocity, which of the following mathematical statements correctly describes the magnitudes of these two forces?Weight = air resistanceAir resistance < weightWeight < air resistanceWeight > air resistance5A rubber duck is released from rest near the surface of the Earth. It then goes on to fall through a large vertical distance, and eventually reaches its terminal velocity. What would happen if this same experiment was repeated near the surface of the Moon?It would reach a higher terminal velocity than it did on EarthIt would reach the same terminal velocity that it did on EarthIt would reach a lower terminal velocity than it did on EarthIt would not reach a terminal velocity, but would continue accelerating uniformly until it hit the surface of the Moon
Question
What name is given to the type of motion which occurs when an object is accelerating and the only force which is acting on it is its weight?Weight-based accelerationFast fallFree fallFalling downwards2An object is released from rest and undergoes free fall. What will its velocity-time graph look like?A curveA horizontal lineA straight line which starts above the origin and which slopes downwards to the rightA straight line which starts from the origin and slopes upwards to the right3A paper ball is released from rest, and goes on to fall through a large vertical distance. As it falls through the air, it is acted upon by two forces – air resistance and its weight. Which of the following correctly describes its motion after it is dropped?It will accelerate at an increasing rate and then reach its terminal velocityIt will accelerate uniformlyIt will accelerate at a decreasing rate and then reach its terminal velocityIt will accelerate uniformly before reaching its terminal velocity4A feather is released from rest. As it falls through the air, it is acted upon by two forces – air resistance and its weight. By the time it has reached its terminal velocity, which of the following mathematical statements correctly describes the magnitudes of these two forces?Weight = air resistanceAir resistance < weightWeight < air resistanceWeight > air resistance5A rubber duck is released from rest near the surface of the Earth. It then goes on to fall through a large vertical distance, and eventually reaches its terminal velocity. What would happen if this same experiment was repeated near the surface of the Moon?It would reach a higher terminal velocity than it did on EarthIt would reach the same terminal velocity that it did on EarthIt would reach a lower terminal velocity than it did on EarthIt would not reach a terminal velocity, but would continue accelerating uniformly until it hit the surface of the Moon
Solution
The text you provided seems to be a series of multiple choice questions related to physics, specifically the concept of free fall and terminal velocity. Here are the answers:
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The name given to the type of motion which occurs when an object is accelerating and the only force which is acting on it is its weight is "Free fall".
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The velocity-time graph of an object released from rest and undergoing free fall will be "A straight line which starts from the origin and slopes upwards to the right".
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A paper ball released from rest and falling through a large vertical distance, acted upon by air resistance and its weight, will "accelerate at a decreasing rate and then reach its terminal velocity".
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By the time a feather released from rest has reached its terminal velocity, the mathematical statement that correctly describes the magnitudes of the forces acting on it (air resistance and weight) is "Weight = air resistance".
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If a rubber duck is released from rest near the surface of the Earth, falls through a large vertical distance, and reaches its terminal velocity, and this experiment is repeated near the surface of the Moon, it "would reach a lower terminal velocity than it did on Earth".
Similar Questions
What name is given to the type of motion which occurs when an object is accelerating and the only force which is acting on it is its weight?Fast fallFree fallWeight-based accelerationFalling downwards
An object is released from rest and undergoes free fall. What will its velocity-time graph look like?A horizontal lineA curveA straight line which starts above the origin and which slopes downwards to the rightA straight line which starts from the origin and slopes upwards to the right
A paper ball is released from rest, and goes on to fall through a large vertical distance. As it falls through the air, it is acted upon by two forces – air resistance and its weight. Which of the following correctly describes its motion after it is dropped?It will accelerate at an increasing rate and then reach its terminal velocityIt will accelerate uniformly before reaching its terminal velocityIt will accelerate uniformlyIt will accelerate at a decreasing rate and then reach its terminal velocity
What is a free-falling object?2 marksAn object falling under the influence of gravityAn object falling with an upward forceAn object falling with air resistanceAn object falling with constant velocity
Which graph best represents the relationship between acceleration and time for a freely falling object as theobject falls near the surface of Earth?
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