Constants A jet pilot takes his aircraft in a vertical loop, as shown in the figure(Figure 1). Part A If the jet is moving at a speed of 740 km/h at the lowest point of the loop, determine the minimum radius of the circle so that the centripetal acceleration at the lowest point does not exceed 7.0 g's. Express your answer to two significant figures and include the appropriate units. Figure 1 of 1> Value Units Submit Request Answer Part B Calculate the 75-kg pilot's effective weight (the force with which the seat pushes up on him) at the bottom of the circle, and at the top of the circle (assume the same speed). Express your answers using two significant figures separated by a comma. ? P Pearson Copyright © 2021 Pearson Education Inc. All rights reserved. I Terms of Use | Privacy Policy I Permisstons | Contact Us I PO 12:10

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Chapter1: Units, Trigonometry. And Vectors
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Constants
A jet pilot takes his aircraft in a vertical loop, as shown in
the figure(Figure 1).
Part A
If the jet is moving at a speed of 740 km/h at the lowest point of the loop, determine the minimum
radius of the circle so that the centripetal acceleration at the lowest point does not exceed 7.0 g's.
Express your answer to two significant figures and include the appropriate units.
HA
Figure
1 of 1>
Value
Units
Submit
Request Answer
Part B
Calculate the 75-kg pilot's effective weight (the force with which the seat pushes up on him) at the
bottom of the circle, and at the top of the circle (assume the same speed).
Express your answers using two significant figures separated by a comma.
ΑΣΦ
Pearson
Copyright © 2021 Pearson Education Inc. All rights reserved. I Terms of Use | Privacy Policy I Permisstons | Contact Us |
O O
PA 12:10
acer
Transcribed Image Text:Constants A jet pilot takes his aircraft in a vertical loop, as shown in the figure(Figure 1). Part A If the jet is moving at a speed of 740 km/h at the lowest point of the loop, determine the minimum radius of the circle so that the centripetal acceleration at the lowest point does not exceed 7.0 g's. Express your answer to two significant figures and include the appropriate units. HA Figure 1 of 1> Value Units Submit Request Answer Part B Calculate the 75-kg pilot's effective weight (the force with which the seat pushes up on him) at the bottom of the circle, and at the top of the circle (assume the same speed). Express your answers using two significant figures separated by a comma. ΑΣΦ Pearson Copyright © 2021 Pearson Education Inc. All rights reserved. I Terms of Use | Privacy Policy I Permisstons | Contact Us | O O PA 12:10 acer
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