the euge witI spe Vo ground at the bottom of the cliff, as shown in the figure. Note the coordinate system in the figure, where the origin is at the bottom of the cliff, directly below where the rock leaves the hand. (a) What are the coordinates of the initial position of the rock? (Enter your answers in m.) Yo = (b) What are the components of the initial velocity? (Enter your answers in m/s.) Vox = m/s Voy m/s
the euge witI spe Vo ground at the bottom of the cliff, as shown in the figure. Note the coordinate system in the figure, where the origin is at the bottom of the cliff, directly below where the rock leaves the hand. (a) What are the coordinates of the initial position of the rock? (Enter your answers in m.) Yo = (b) What are the components of the initial velocity? (Enter your answers in m/s.) Vox = m/s Voy m/s
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
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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Question

Transcribed Image Text:A woman stands at the edge of a cliff and throws a rock horizontally over the edge with a speed of v, = 19.5 m/s. The rock leaves her hand at a height of h = 49.0 m above level ground
at the bottom of the cliff, as shown in the figure. Note the coordinate system in the figure, where the origin is at the bottom of the cliff, directly below where the rock leaves the hand.
(a) What are the coordinates of the initial position of the rock? (Enter your answers in m.)
m
Yo =
(b) What are the components of the initial velocity? (Enter your answers in m/s.)
Vox =
m/s
Voy
m/s

Transcribed Image Text:(c) Write the equations for the x- and y-components of the velocity of the rock with time. (Use the following as necessary: t. Assume that v, and v, are in m/s and t is in seconds. Do
not include units in your answers.)
V. =
m/s
Vy
m/s
(d) Write the equations for the position of the rock with time, using the coordinates in the figure. (Use the following as necessary: t. Assume that x and y are in meters and t is in
seconds. Do not include units in your answers.)
X =
y =
(e) How long (in s) after being released does the rock strike the ground below the cliff?
(f) With what speed (in m/s) and angle of impact (in degrees clockwise from the +x-axis) does the rock land?
V =
m/s
o clockwise from the +x-axis
Expert Solution

Step 1
The ratio of distance to time taken to travel a distance is used to calculate speed. Speed is classified as a scalar quantity since it has only direction and no magnitude.
As per the Bartleby policy we are answering first four parts of the question for rest kindly re post.
Step by step
Solved in 2 steps with 1 images
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