22. (II) A constant force F = (2.0i + 4.0j) N acts on an object as it moves along a straight-line path. If the object's displace- ment is d = (1.0i + 5.0j) m, calculate the work done by F using these alternate ways of writing the dot product: (a) W = Fd cos 0; (b) W = Fxdx + Fydy. %3D 65. (II) At an accident scene on a level road, investigators measure a car's skid mark to be 98 m long. It was a rainy day and the coefficient of friction was estimated to be 0.38. Use these data to determine the speed of the car when the driver slammed on (and locked) the brakes. (Why does the car's mass not matter?) 5. (II) A 1.60-m tall person lifts a 1.95-kg book off the ground so it is 2.20 m above the ground. What is the potential energy of the book relative to (a) the ground, and (b) the top of the person's head? (c) How is the work done by the person related to the answers in parts (a) and (b)? There is one more question on the next page. /2 v

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solve number 22 with full steps and works 

22. (II) A constant force F = (2.0i + 4.0j) N acts on an object
as it moves along a straight-line path. If the object's displace-
ment is d = (1.0i + 5.0j) m, calculate the work done by
F using these alternate ways of writing the dot product:
(a) W = Fd cos 0; (b) W = Fxdx + Fydy.
%3D
65. (II) At an accident scene on a level road, investigators
measure a car's skid mark to be 98 m long. It was a rainy
day and the coefficient of friction was estimated to be 0.38.
Use these data to determine the speed of the car when the
driver slammed on (and locked) the brakes. (Why does the
car's mass not matter?)
5. (II) A 1.60-m tall person lifts a 1.95-kg book off the ground
so it is 2.20 m above the ground. What is the potential
energy of the book relative to (a) the ground, and (b) the
top of the person's head? (c) How is the work done by the
person related to the answers in parts (a) and (b)?
There is one more question on the next page.
/2 v
Transcribed Image Text:22. (II) A constant force F = (2.0i + 4.0j) N acts on an object as it moves along a straight-line path. If the object's displace- ment is d = (1.0i + 5.0j) m, calculate the work done by F using these alternate ways of writing the dot product: (a) W = Fd cos 0; (b) W = Fxdx + Fydy. %3D 65. (II) At an accident scene on a level road, investigators measure a car's skid mark to be 98 m long. It was a rainy day and the coefficient of friction was estimated to be 0.38. Use these data to determine the speed of the car when the driver slammed on (and locked) the brakes. (Why does the car's mass not matter?) 5. (II) A 1.60-m tall person lifts a 1.95-kg book off the ground so it is 2.20 m above the ground. What is the potential energy of the book relative to (a) the ground, and (b) the top of the person's head? (c) How is the work done by the person related to the answers in parts (a) and (b)? There is one more question on the next page. /2 v
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