Question 1 Determine the radius of curvature p at point A. Work in meters. Question 2 Determine the normal force in Newtons that the hill exerts on the toboggan at point A (magnitude). Question 3 Determine their increase in speed at point A. Work in m/s².

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Question 1
Determine the radius of curvature p at point A. Work in meters.
Question 2
Determine the normal force in Newtons that the hill exerts on the toboggan at point A (magnitude).
Question 3
Determine their increase in speed at point A. Work in m/s² .
Transcribed Image Text:Question 1 Determine the radius of curvature p at point A. Work in meters. Question 2 Determine the normal force in Newtons that the hill exerts on the toboggan at point A (magnitude). Question 3 Determine their increase in speed at point A. Work in m/s² .
A child and his toboggan have a combined mass of 90 kg. They slide down the hill which is described
by the equation y = 0.2x² where x and y are in meters. The friction coefficient between the
toboggan and the hill is k = 0.1. When they reach point A, their speed is 4 m/s. Answer the
following questions using the units specified but do not enter units in your answers.
y
v = 4 m/s
A
J
y=0.2x²
7m
·x
Transcribed Image Text:A child and his toboggan have a combined mass of 90 kg. They slide down the hill which is described by the equation y = 0.2x² where x and y are in meters. The friction coefficient between the toboggan and the hill is k = 0.1. When they reach point A, their speed is 4 m/s. Answer the following questions using the units specified but do not enter units in your answers. y v = 4 m/s A J y=0.2x² 7m ·x
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