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A stone was dropped from the top of a tall cliff - Junior Cycle Science - Question (c) - 2009

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Question (c)

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A stone was dropped from the top of a tall cliff. The stones approximate velocity was measured each second as it fell. The data collected during this experiment is g... show full transcript

Worked Solution & Example Answer:A stone was dropped from the top of a tall cliff - Junior Cycle Science - Question (c) - 2009

Step 1

Define velocity.

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Answer

Velocity is defined as the speed of an object in a given direction. It can also be expressed as the distance travelled in a unit time, considering the direction of motion.

Step 2

Use data from the graph to estimate the acceleration of the stone as it fell. Give the units of acceleration with your answer.

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Answer

To estimate the acceleration, we can use the slope of the velocity-time graph. From the graph:

  • At 0 seconds, the velocity is 0 m/s.
  • At 5 seconds, the estimated velocity is 50 m/s.

The change in velocity ( Δv) is 50 m/s - 0 m/s = 50 m/s and the change in time ( Δt) is 5 s - 0 s = 5 s.

Using the formula for acceleration: a=ΔvΔt=50m/s5s=10m/s2a = \frac{\Delta v}{\Delta t} = \frac{50 \, \text{m/s}}{5 \, \text{s}} = 10 \, \text{m/s}^2

Thus, the acceleration of the stone is 10 m/s².

Step 3

Name the force that caused the stone to fall.

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Answer

The force that caused the stone to fall is gravity.

Step 4

What was the weight of the stone on earth? Give the unit.

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Answer

The weight of the stone can be calculated using the formula: Weight=mass×g\text{Weight} = \text{mass} \times g where g9.8m/s2g \approx 9.8 \, \text{m/s}^2. Thus, Weight=2kg×9.8m/s2=19.6N\text{Weight} = 2 \, \text{kg} \times 9.8 \, \text{m/s}^2 = 19.6 \, \text{N}

The unit of weight is Newton (N).

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