1) Resolve each weight vector to the horizontal and vertical component to the inclined surface and find the magnitude. Teacher : Mr. Kang 40 N 50 N 60 J40° Q2) A car weighing 1500N rest on a 30 degree hill. find the component of the weight vector a. At the right angle with the hill b. Parallel to the hill 30 c. If the car's brakes were released, which component is responsible for the car's downward motion? Q3) The diagram below shows a 50 N weight box held at rest on a frictionless 30 degree inclined surface by force F. What is the magnitude óf the force F? 5ON 30°

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
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Chapter4: The Laws Of Motion
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please help with these questions
Q1) Resolve each weight vector to the horizontal and vertical component to the inclined surface and find
the magnitude.
Teacher : Mr. Kang
40 N
50 N
360°
40°
Q2) A car weighing 1500N rest on a 30 degree hill. find the component of the weight vector
a. At the right angle with the hill
b. Parallel to the hill
30°
c. If the car's brakes were released, which component is responsible for the car's downward motion?
Q3) The diagram below shows a 50 N weight box held at rest on a frictionless 30 degree inclined
surface by force F. What is the magnitude óf the force F?
5ON
230°
Transcribed Image Text:Q1) Resolve each weight vector to the horizontal and vertical component to the inclined surface and find the magnitude. Teacher : Mr. Kang 40 N 50 N 360° 40° Q2) A car weighing 1500N rest on a 30 degree hill. find the component of the weight vector a. At the right angle with the hill b. Parallel to the hill 30° c. If the car's brakes were released, which component is responsible for the car's downward motion? Q3) The diagram below shows a 50 N weight box held at rest on a frictionless 30 degree inclined surface by force F. What is the magnitude óf the force F? 5ON 230°
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