Lesson M7.3.1
M7.3.1 Formulae for constant acceleration Quiz: Pearson Edexcel Maths, Unit 17
20 questions
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Lesson M7.3.1, Formulae for constant acceleration: 20 multiple choice questions for the Pearson Edexcel Maths (9MA0), Unit 17: Kinematics, written with Revision Ninja.
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The 20 questions
-
What does the letter u represent in the constant acceleration equations?
- Constant speed
- Final velocity
- Upward force
- Initial velocity
-
What does the letter v stand for in kinematics equations?
- Vertical distance
- Average speed
- Initial velocity
- Final velocity
-
What physical quantity does the letter s represent in standard kinematics?
- Displacement
- Speed
- Surface area
- Scalar distance
-
Which constant acceleration formula connects v, u, a, and t directly?
- s = ut + 0.5at^2
- v^2 = u^2 + 2as
- s = 0.5(u + v)t
- v = u + at
-
Which kinematics formula calculates displacement without involving final velocity v?
- v = u + at
- s = vt - 0.5at^2
- v^2 = u^2 + 2as
- s = ut + 0.5at^2
-
Which SUVAT equation allows you to find final velocity without knowing time t?
- v = s / t
- v^2 = u^2 + 2as
- v = u + at
- s = ut + 0.5at^2
-
Which formula uses average velocity multiplied by time to find displacement?
- s = 0.5(u + v)t
- s = ut + at^2
- s = vt + 0.5as^2
- v = u + at
-
What primary assumption must always hold true to use SUVAT equations?
- Constant acceleration
- Zero acceleration
- Variable force
- Constant speed
-
A particle starts from rest with acceleration 3 ms^-2 for 4 s. Find v.
- 48 ms^-1
- 7 ms^-1
- 12 ms^-1
- 24 ms^-1
-
A stone falls from rest with g = 9.8 ms^-2 for 2 s. Find s.
- 19.6 m
- 4.9 m
- 9.8 m
- 39.2 m
-
A cyclist accelerates at 2 ms^-2 over 9 m from rest. Find v.
- 36 ms^-1
- 6 ms^-1
- 18 ms^-1
- 3 ms^-1
-
An object slows from 10 ms^-1 at -2 ms^-2 until it stops. Find t.
- 10 s
- 2 s
- 20 s
- 5 s
-
A ball is projected upwards at 14 ms^-1 with g = 9.8 ms^-2. Find max height time.
- 0.71 s
- 1.96 s
- 1.43 s
- 2.86 s
-
A particle moves 24 m in 4 s with constant acceleration, starting from rest. Find a.
- 12 ms^-2
- 6 ms^-2
- 3 ms^-2
- 1.5 ms^-2
-
A car travelling at 20 ms^-1 applies brakes giving -4 ms^-2 deceleration to rest. Find s.
- 50 m
- 100 m
- 25 m
- 80 m
-
An athlete accelerates uniformly covering 30 m in 5 s from rest. Find a.
- 1.2 ms^-2
- 6.0 ms^-2
- 12.0 ms^-2
- 2.4 ms^-2
-
A runner accelerates from 2 ms^-1 at 1.5 ms^-2 over a distance of 7 m. Find v.
- 25 ms^-1
- 3.5 ms^-1
- 10 ms^-1
- 5 ms^-1
-
Which constant acceleration formula connects displacement, initial velocity, time, and acceleration?
- v^2 = u^2 + 2as
- s = ut + 0.5at^2
- v = u + at
- s = 0.5(u + v)t
-
Find the final velocity of a particle accelerating from rest at 4 ms^-2 for 3 s.
- 6 ms^-1
- 36 ms^-1
- 18 ms^-1
- 12 ms^-1
-
Find the displacement of an object accelerating from rest at 2 ms^-2 for 5 s.
- 10 m
- 25 m
- 20 m
- 50 m
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