2 (a) Which of these is the equation for work done?
A work done = force ÷ distance moved in direction of force
B work done = force × distance moved in direction of force
C work done = force × distance moved at right angles to direction of force
D work done = force × distance moved at right angles to direction of force
(b) A ball has a mass of 0.046 kg - Edexcel - GCSE Physics - Question 2 - 2019 - Paper 1
Question 2
2 (a) Which of these is the equation for work done?
A work done = force ÷ distance moved in direction of force
B work done = force × distance moved in direction ... show full transcript
Worked Solution & Example Answer:2 (a) Which of these is the equation for work done?
A work done = force ÷ distance moved in direction of force
B work done = force × distance moved in direction of force
C work done = force × distance moved at right angles to direction of force
D work done = force × distance moved at right angles to direction of force
(b) A ball has a mass of 0.046 kg - Edexcel - GCSE Physics - Question 2 - 2019 - Paper 1
Step 1
Which of these is the equation for work done?
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Answer
The correct formula for work done is: B) work done = force × distance moved in direction of force.
Step 2
Calculate the change in gravitational potential energy when the ball is lifted through a vertical height of 2.05 m.
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Answer
To calculate the change in gravitational potential energy (ΔGPE), we use the formula: ΔGPE=m×g×Δh
Where:
m = mass of the ball = 0.046 kg
g = acceleration due to gravity ≈ 9.81 m/s²
Δh = height = 2.05 m
Now substituting the values into the equation: ΔGPE=0.046×9.81×2.05
Calculating this gives: ΔGPE≈0.93extJ
Step 3
Calculate the kinetic energy of the ball when the speed of the ball is 3.5 m/s.
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Answer
The formula to calculate kinetic energy (KE) is given by: KE=21mv2
Where:
m = mass of the ball = 0.046 kg
v = speed of the ball = 3.5 m/s
Substituting the values into the equation, we have: KE=21×0.046×(3.5)2
Calculating this yields: KE≈0.27extJ