Sketch a diagram showing the magnitudes and directions of the force and displacement vectors.  Find the projection of the force vector onto the displacement vector and illustrate it in your diagram. Find the work done by the force on the object, in joules.

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Chapter2: Vectors
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Suppose a force of 20 newtons is exerted from the left at a downward angle of 15 degrees on an object, pushing it uphill and to the right on an incline of 25 degrees. The object moves 25 meters, then slides back 10 meters.  

  1. Sketch a diagram showing the magnitudes and directions of the force and displacement vectors. 
  2. Find the projection of the force vector onto the displacement vector and illustrate it in your diagram.
  3. Find the work done by the force on the object, in joules. 
2. Suppose a force of 20 newtons is exerted
from the left at a downward angle of 15° on
an object, pushing it uphill and to the right on
an incline of 25°. The object moves 25
meters, then slides back 10 meters.
a. Sketch a diagram showing the
magnitudes and directions of the force
and displacement vectors.
b. Find the projection of the force vector
onto the displacement vector and
illustrate in your diagram.
c. Find the work done by the force on the
object, in joules.
d. Explain how the work and projection are
related.
e. During the process of finding the
projection, you used the dot product,
which can be calculated in two ways.
Whichever you method you used, do it
the other way now and verify that you
get the same dot product.
f. Explain where the cosine angle
difference identity appears in one of the
dot product calculations. How is this
identity related to the geometric
interpretation of the dot product?
Transcribed Image Text:2. Suppose a force of 20 newtons is exerted from the left at a downward angle of 15° on an object, pushing it uphill and to the right on an incline of 25°. The object moves 25 meters, then slides back 10 meters. a. Sketch a diagram showing the magnitudes and directions of the force and displacement vectors. b. Find the projection of the force vector onto the displacement vector and illustrate in your diagram. c. Find the work done by the force on the object, in joules. d. Explain how the work and projection are related. e. During the process of finding the projection, you used the dot product, which can be calculated in two ways. Whichever you method you used, do it the other way now and verify that you get the same dot product. f. Explain where the cosine angle difference identity appears in one of the dot product calculations. How is this identity related to the geometric interpretation of the dot product?
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