A jet flying in the air executes a vertical circular loop with a radius of 540 m at a constant speed of 110 m/s. a) Using the figures provided, draw the free body diagrams for a 65.0 kg pilot at the top and the bottom of the loop. b) What is the algebraic expression for the normal force of the seat on the pilot at the top of the loop? Calculate its magnitude. c) What is the algebraic expression for the normal force of the seat on the pilot at the bottom of the loop? Calculate its magnitude.
A jet flying in the air executes a vertical circular loop with a radius of 540 m at a constant speed of 110 m/s. a) Using the figures provided, draw the free body diagrams for a 65.0 kg pilot at the top and the bottom of the loop. b) What is the algebraic expression for the normal force of the seat on the pilot at the top of the loop? Calculate its magnitude. c) What is the algebraic expression for the normal force of the seat on the pilot at the bottom of the loop? Calculate its magnitude.
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Chapter1: Units, Trigonometry. And Vectors
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Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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![2) A jet flying in the air executes a vertical circular loop with a radius of 540 m at a constant speed of
110 m/s.
a) Using the figures provided, draw the free body diagrams for a 65.0 kg pilot at the top and the
bottom of the loop.
b) What is the algebraic expression for the normal force of the seat on the pilot at the top of the loop?
Calculate its magnitude.
c) What is the algebraic expression for the normal force of the seat on the pilot at the bottom of the
loop? Calculate its magnitude.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F08580f35-fcc8-4d14-8a5f-ec9170ee9e11%2F4ce907f8-5dfa-4171-8039-7e580b67ab1a%2Fhsn61h_processed.png&w=3840&q=75)
Transcribed Image Text:2) A jet flying in the air executes a vertical circular loop with a radius of 540 m at a constant speed of
110 m/s.
a) Using the figures provided, draw the free body diagrams for a 65.0 kg pilot at the top and the
bottom of the loop.
b) What is the algebraic expression for the normal force of the seat on the pilot at the top of the loop?
Calculate its magnitude.
c) What is the algebraic expression for the normal force of the seat on the pilot at the bottom of the
loop? Calculate its magnitude.
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