Problem #1 the horizontal surface of a cliff with an initial horizontal velocity of magnitude vi = 40.0 m/s and into the ocean waters, as shown in the picture below. The edge of the cliff rises to a height H= 60.0 m above the water. Your job is to determine whether she will have enough time to leave the vehicle during flight, and whether she will be close enough to the base of the cliff to be rescued if something goes wrong. Working for the latest Hollywood production, a brave stuntwoman in her car rides off %3D Vi nd Ax a) What is v, the (horizontal) x-component of the initial velocity vector v? b) What is vy, the (vertical) y-component of the initial velocity vector vi? c) Find the time t that the car is in the air. Neglect air resistance for this and all the questions below.
Problem #1 the horizontal surface of a cliff with an initial horizontal velocity of magnitude vi = 40.0 m/s and into the ocean waters, as shown in the picture below. The edge of the cliff rises to a height H= 60.0 m above the water. Your job is to determine whether she will have enough time to leave the vehicle during flight, and whether she will be close enough to the base of the cliff to be rescued if something goes wrong. Working for the latest Hollywood production, a brave stuntwoman in her car rides off %3D Vi nd Ax a) What is v, the (horizontal) x-component of the initial velocity vector v? b) What is vy, the (vertical) y-component of the initial velocity vector vi? c) Find the time t that the car is in the air. Neglect air resistance for this and all the questions below.
Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter3: Motion In Two Dimensions
Section: Chapter Questions
Problem 19P: A student stands at the edge of a cliff and throws a stone horizontally over the edge with a speed...
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Please answer parts A,B and C. Show all work and circle your answers! Thank you in advanced!
![Problem #1
the horizontal surface of a cliff with an initial horizontal velocity of magnitude v = 40.0 m/s and into the ocean
waters, as shown in the picture below. The edge of the cliff rises to a height H = 60.0 m above the water. Your
job is to determine whether she will have enough time to leave the vehicle during flight, and whether she will be
close enough to the base of the cliff to be rescued if something goes wrong.
Working for the latest Hollywood production, a brave stuntwoman in her car rides off
H.
Ax
a) What is vix, the (horizontal) x-component of the initial velocity vector v?
b) What is vy, the (vertical) y-component of the initial velocity vector vi?
c) Find the time t that the car is in the air. Neglect air resistance for this and all the questions below.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fca2f9b55-192d-4d11-af1a-09dd4cdb3489%2F8c61d1bd-bef8-4219-bfec-be6fe0d25d5a%2Fo7euaoa_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Problem #1
the horizontal surface of a cliff with an initial horizontal velocity of magnitude v = 40.0 m/s and into the ocean
waters, as shown in the picture below. The edge of the cliff rises to a height H = 60.0 m above the water. Your
job is to determine whether she will have enough time to leave the vehicle during flight, and whether she will be
close enough to the base of the cliff to be rescued if something goes wrong.
Working for the latest Hollywood production, a brave stuntwoman in her car rides off
H.
Ax
a) What is vix, the (horizontal) x-component of the initial velocity vector v?
b) What is vy, the (vertical) y-component of the initial velocity vector vi?
c) Find the time t that the car is in the air. Neglect air resistance for this and all the questions below.
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