Lesson 3C.5.2
3C.5.2 Successive oblique impacts Quiz: Pearson Edexcel Further Maths, Unit 29
20 questions
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Lesson 3C.5.2, Successive oblique impacts: 20 multiple choice questions for the Pearson Edexcel Further Maths (9FM0), Unit 29: Oblique impact, written with Revision Ninja.
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The 20 questions
-
In successive oblique impacts of a sphere with a smooth plane, which component of velocity is constant?
- The component parallel to the plane is reduced by e each impact
- The component normal to the plane
- The component parallel to the plane
- The total speed
-
After n successive impacts with a smooth plane, what is the normal component of velocity relative to its initial value?
- e^(1/n) times the initial normal component
- e n times the initial normal component
- e^(2n) times the initial normal component
- e^n times the initial normal component
-
What happens to a sphere after many successive oblique impacts with a smooth plane when 0 <= e < 1?
- The sphere reverses its parallel component
- The sphere comes to rest completely
- The normal component increases with each impact
- The normal component tends to zero, and the sphere slides along the plane with constant parallel speed
-
Which assumption is made for successive oblique impacts with a smooth plane?
- Gravity removes the parallel component during each impact
- No friction or air resistance acts, so the parallel component is unchanged by impact
- Friction reduces the parallel component at each impact
- The surface spins the sphere at each impact
-
What assumption is made about the coefficient of restitution in successive impacts?
- The value of e is negative
- The same e applies at each impact
- Each impact uses e equal to the previous speed
- The value of e doubles at each impact
-
For 0 <= e < 1, does the normal component of velocity tend to zero as the number of impacts becomes large?
- Only if e = 0
- No, it tends to e
- No, since e^n tends to infinity
- Yes, since e^n tends to zero
-
Between successive impacts with a plane under gravity and no air resistance, what path does the sphere follow?
- Simple harmonic motion
- Uniform circular motion
- Projectile motion, with constant horizontal velocity
- Motion with constant acceleration in the horizontal direction
-
A sphere has velocity (6i - 8j) m/s and strikes a smooth horizontal floor with normal along j, with e = 0.5. What is its velocity after impact?
- -6i + 4j m/s
- 6i - 4j m/s
- 6i + 4j m/s
- 3i + 4j m/s
-
A sphere approaches a smooth horizontal floor with vertical speed 8 m/s and e = 0.5. What is its vertical speed after the second impact?
- 0.5 m/s
- 2 m/s
- 4 m/s
- 1 m/s
-
A sphere has horizontal speed 6 m/s and strikes a smooth floor with e = 0.5. What is its horizontal speed after three impacts?
- 3 m/s
- 6 m/s
- 0.75 m/s
- 1.5 m/s
-
A sphere has velocity (6i + 8j) and strikes a smooth horizontal plane with e = 0.5. What is its speed after three impacts, to 2 decimal places?
- 10 m/s
- sqrt(65) m/s
- 6.08 m/s, from sqrt(37)
- 6.00 m/s
-
A sphere has velocity (6i + 8j) and strikes a smooth horizontal plane with normal along j, with e = 0.5. What angle does its velocity make with the plane after the first impact, to 1 decimal place?
- 26.6 degrees
- 33.7 degrees
- 53.1 degrees
- 45.0 degrees
-
A sphere has velocity (6i + 8j) and strikes a smooth horizontal plane with e = 0.5. How many impacts are needed for the normal component to fall below 1% of its initial value?
- 6
- 5
- 10
- 7
-
A sphere has velocity (6i + 8j) and strikes a smooth horizontal plane with e = 0.5. What fraction of its kinetic energy is lost in the first impact?
- 75%
- 52%
- 48%
- 25%
-
A sphere has velocity (3i + 4j) and strikes a smooth horizontal plane with e = 0.8. What is its velocity after impact?
- 3i - 4j
- -3i + 3.2j
- 2.4i - 4j
- 3i - 3.2j
-
A sphere has normal component 10 and parallel component 5 before impact, with e = 0.8. What is its speed after two impacts with a smooth plane, to 2 decimal places?
- 6.40 m/s
- 11.18 m/s
- 8.12 m/s
- 5.00 m/s
-
A ball has horizontal speed 4 m/s and vertical speed 3 m/s downwards at a smooth floor, with e = 0.5 and g = 10 m/s^2. What horizontal distance does it travel between the first and second impacts?
- 2.4 m
- 1.5 m
- 1.2 m
- 0.6 m
-
Which statement about the horizontal component during successive bounces on a smooth floor is correct?
- It increases by a factor of e at each impact
- It is unchanged by every impact, since the floor is smooth
- It halves at each impact
- It is reversed at each impact
-
A sphere approaches a smooth floor at 45 degrees to the floor. For what coefficient e does the rebound make an angle of 30 degrees with the floor?
- 0.866
- 0.5
- 0.707
- 1/sqrt(3), about 0.577
-
Over many oblique impacts with a smooth floor where 0 <= e < 1, which statement is best?
- Both components tend to zero
- The vertical component grows with each impact
- The vertical component tends to zero while the horizontal speed remains constant
- The horizontal component vanishes first
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