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Question 2
A cyclist is riding a bicycle at a steady velocity of 12 m/s. The cyclist and bicycle have a total mass of 68 kg. (a) Calculate the kinetic energy of the cyclist a... show full transcript
Step 1
Answer
To calculate the kinetic energy (KE), we can use the formula:
Substituting the values:
The calculation becomes:
First, calculate ((12)^2 = 144):
Then,
Thus, the kinetic energy is approximately 4900 J.
Step 2
Answer
When the cyclist uses the brakes, the kinetic energy of the cyclist and the bicycle is converted into thermal energy due to friction between the brake pads and the wheels. As the brakes are applied, energy is transformed from the kinetic energy (energy of motion) to thermal energy, which causes the brake components to heat up. Therefore, the kinetic energy of the cyclist and bicycle decreases as energy is transferred to the surroundings in the form of heat.
Step 3
Answer
To find the average power output of the athlete during the two training sessions, we can use the formula for power:
Average Power in Session 1:
Average Power in Session 2:
Thus, the displays show that the athlete produced more power in Session 1 compared to Session 2, indicating a higher energy output over the same time period.
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