3.1 Motion Flashcards

1
Q

Equation for speed

A

Average speed = Distance traveled/ Time taken

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2
Q

Equation for velocity

A

Average velocity = total displacement/ time taken

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3
Q

Equation for acceleration

A

Acceleration = change in velocity/ time taken

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4
Q

What does the gradient on a displacement-time graph equal?

A

The velocity

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5
Q

What does the gradient of a velocity-time graph represent?

A

Equal to the acceleration

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6
Q

What does the area beneath a velocity-time graph represent?

A

Equal to the displacement of the object

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7
Q

What would would happen to a body if a resultant force was acting on it?

A

The body would accelerate or deccelerate

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8
Q

What are the SUVAT equations?

A
v = u + at
s = ut + 1/2at^2
v^2 = u^2 + 2as
s = 1/2(u + v)t
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9
Q

Why do objects of different masses fall at the same rate?

A

This is because acceleration of an object is directly proportional to the force acting on it, but inversely proportional to it’s mass.

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10
Q

What are the two approaches that can be used to measure the acceleration of free fall?

A

. Direct approaches- such as timing a falling ball and working our the acceleration due to gravity using the equations of motion.
. Indirect approaches- such as measuring the time taken for a pendulum to complete a full swing, because the motion of a pendulum is dependent on the value of g.

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11
Q

What makes up stopping distance?

A

Total stopping distance = thinking distance + braking distance

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12
Q

Factors that increase thinking distance

A

.Higher speed
.Tiredness
.Alcohol and drugs
.Distractions
.Age of driver

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13
Q

Factors affecting braking distance

A

.Higher speed
.Poor road conditions (icy or wet)
.Poor condition of brakes
.Poor conditions of tyres
.Mass of car

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14
Q

Equation for thinking distance

A

Thinking distance(m) = reaction time of driver(s) x speed of car(ms-1)

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15
Q

Equation for braking distance

A

1/2mv^2 = Fd

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16
Q

What can be measured in Nm

A
  • Moments
  • Torque of a couple
  • work done (energy)
17
Q

What can you find from the gradient and the area under the graph from a displacement-time graph?

A
  • Gradient- velocity
  • Nothing
18
Q

What can you find from the gradient and the area under the graph on a velocity-time graph?

A
  • Gradient- acceleration
  • Area- displacement
19
Q

How do you work out constant acceleration?

A

SUVAT equations