Lesson 2.3.2
2.3.2 Weight, gravitational field strength and terminal velocity Quiz: Pearson Edexcel Physics, Unit 2
20 questions
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Lesson 2.3.2, Weight, gravitational field strength and terminal velocity: 20 multiple choice questions for the Pearson Edexcel Physics (9PH0), Unit 2: Mechanics, written with Revision Ninja.
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The 20 questions
-
Gravitational field strength g is defined as:
- The energy per unit mass.
- The mass per unit volume.
- The gravitational force per unit mass.
- The acceleration per unit time.
-
The value of g near the surface of the Earth is approximately:
- 98 N kg^-1
- 0.98 N kg^-1
- 980 N kg^-1
- 9.8 N kg^-1
-
The weight of a body is defined as:
- The force needed to keep the body at constant velocity on a surface.
- The gravitational force acting on the body, given by W = mg.
- The mass of the body measured in kilograms.
- The resultant force on the body when it is moving.
-
A body reaches terminal velocity when:
- The drag force is zero.
- The drag force balances the weight, so the resultant force is zero.
- The acceleration is at its maximum value.
- The weight is zero.
-
A falling object has reached terminal velocity. Which statement about its acceleration is correct?
- The acceleration is increasing.
- The acceleration is equal to g.
- The acceleration is zero.
- The acceleration is negative.
-
On the Moon, g is about 1.6 N kg^-1. What is the weight of a 70 kg person?
- 686 N
- 11 N
- 112 N
- 44 N
-
What is the weight of a 0.5 kg object on Earth, taking g = 9.8 N kg^-1?
- 0.05 N
- 49 N
- 4.9 N
- 0.51 N
-
A 80 kg skydiver is falling at terminal velocity. What is the magnitude of the drag force on the skydiver, taking g = 9.8 N kg^-1?
- 784 N
- 8.0 N
- 80 N
- 392 N
-
Which pair of quantities has the same units?
- Weight and mass
- Weight and gravitational field strength
- Mass and gravitational field strength
- Gravitational field strength and acceleration
-
A 1.0 kg object has a weight of 8.2 N in a gravitational field. What is the gravitational field strength at that point?
- 82 N kg^-1
- 8.2 N kg^-1
- 9.8 N kg^-1
- 0.82 N kg^-1
-
Which statement about mass and weight is correct?
- Mass is a scalar measured in kilograms and weight is a force measured in newtons.
- Mass is a force measured in newtons and weight is a scalar measured in kilograms.
- Weight is measured in kilograms and mass in newtons.
- Mass and weight are both forces measured in newtons.
-
A falling object starts from rest. Which description of its acceleration is correct as it approaches terminal velocity?
- The acceleration decreases from g towards zero.
- The acceleration increases towards g.
- The acceleration becomes negative.
- The acceleration stays at g throughout.
-
Air drag on a falling object increases as its speed increases. Why does this lead to terminal velocity?
- Drag falls as speed increases, so the object slows down.
- The object's mass decreases until it stops.
- Weight increases with speed, which cancels drag.
- The resultant force falls as drag grows, until drag equals weight and the resultant is zero.
-
A ball of mass 0.30 kg falls through air. Which change would increase its terminal velocity?
- Falling through a denser fluid
- Increasing its cross-sectional area
- Increasing its mass without changing its size or shape
- Making its surface rougher
-
At terminal velocity, the drag force on a falling object acts:
- Upwards, in the direction of motion
- Zero, because the speed is constant
- Downwards, in the direction of motion
- Upwards, opposite to the motion
-
A 1.0 kg object falls and has a weight of 9.8 N. What is the gravitational field strength at its position?
- 98 N kg^-1
- 9.8 kg N^-1
- 9.8 N kg^-1
- 0.98 N kg^-1
-
A raindrop falls at a steady speed of 6 m s^-1. Which force statement is correct?
- The drag force is greater than the weight.
- The weight is zero.
- The drag force on the raindrop equals its weight.
- The drag force is zero.
-
A 0.20 kg ball falls with a steady velocity. What is the drag force on it, taking g = 9.8 N kg^-1?
- 1.96 N
- 0.20 N
- 9.8 N
- 0.02 N
-
Two objects of the same shape fall through air. Object A has twice the mass of object B. Which is true about their terminal velocities?
- A has the greater terminal velocity.
- B has the greater terminal velocity.
- Neither object reaches a terminal velocity.
- They have equal terminal velocities.
-
A projectile falls at terminal velocity in water rather than air. Why is its terminal velocity lower in water?
- Water has a lower density, so the weight is larger.
- Water is more viscous, so the drag at a given speed is larger.
- Water removes the weight of the object.
- Water causes the object's mass to increase.
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