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Question 4
4 (a) Two cyclists ride on a hilly road and go through points P, Q, R and S. The diagram in Figure 7 shows how the vertical height of the road changes during the jo... show full transcript
Step 1
Answer
The greatest overall change in gravitational potential energy occurs between points D R and S. This is because the difference in vertical positions between R and S is the largest.
Step 2
Answer
To calculate the work done against gravity, we use the formula:
Given that the cyclist's weight is 700N and the distance from P to Q is 20m:
Thus, the total amount of work done against gravity is 14,000 J.
Step 3
Answer
Using the equation for gravitational potential energy:
we know:\n- (\Delta GPE = 11250 J)\n- (g = 10 N/kg)\nLet's assume (\Delta h) (change in height) from Q to R can be derived if necessary. Reorganizing the formula for mass gives:
Substituting for (m):
With complete data, substitute to find (m).
Step 4
Answer
The total amount of work done by a cyclist includes not only the work done against gravity but also the work needed to overcome other forces such as friction and air resistance. In contrast, the change in gravitational potential energy (GPE) only considers the work done against gravity as the cyclist moves between points Q and R.
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