to 40.°, the box would come to rest at a vertical 92. The box comes to rest at a vertical height of h 93. On the axes below, sketch a line to represent the (point D) when 0 = 30.°. If L0 was increased (point D) when /A = 30.°. If 20 was increased to 40.°, the box would come to rest at a vertical height (1) less than h (2) greater than h (3) equal toh 93. On the axes below, sketch a line to represent the relationship between the kinetic energy of the box and its speed as it travels from point A to point B. A Kinetic energy
to 40.°, the box would come to rest at a vertical 92. The box comes to rest at a vertical height of h 93. On the axes below, sketch a line to represent the (point D) when 0 = 30.°. If L0 was increased (point D) when /A = 30.°. If 20 was increased to 40.°, the box would come to rest at a vertical height (1) less than h (2) greater than h (3) equal toh 93. On the axes below, sketch a line to represent the relationship between the kinetic energy of the box and its speed as it travels from point A to point B. A Kinetic energy
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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please help with questions 92 and 93 based on the information given in the first picture
![A 10.0-kilogram box starts from rest at point A and
is accelerated uniformly to point B in 4.0 seconds
by the application of a constant horizontal force F.
At point B, the speed of the box is 10.0 meters per
second as it begins to move up a plane inclined at
30.° to the horizontal. [Neglect friction.]
0 m/s
10.0 kg
10.0 m/s
0 = 30.°
A
B.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc69cdd85-cca7-4d84-b022-8594381da460%2F79cb2529-8478-4653-8d9a-becf9eaa0121%2Fgqsb68m_processed.jpeg&w=3840&q=75)
Transcribed Image Text:A 10.0-kilogram box starts from rest at point A and
is accelerated uniformly to point B in 4.0 seconds
by the application of a constant horizontal force F.
At point B, the speed of the box is 10.0 meters per
second as it begins to move up a plane inclined at
30.° to the horizontal. [Neglect friction.]
0 m/s
10.0 kg
10.0 m/s
0 = 30.°
A
B.

Transcribed Image Text:92. The box comes to rest at a vertical height of h
(point D) when 0 = 30.°. If 0 was increased
93. On the axes below, sketch a line to represent the
to 40.°, the box would come to rest at a vertical
height
(1) less than h
(2) greater than h
(3) equal to h
93. On the axes below, sketch a line to represent the
relationship between the kinetic energy of the
box and its speed as it travels from point A to
point B.
A
Speed
Kinetic energy
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