COLLEGE PHYSICS-TEXT (NASTA EDITION)
COLLEGE PHYSICS-TEXT (NASTA EDITION)
2nd Edition
ISBN: 9780134683300
Author: ETKINA
Publisher: PEARSON
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Chapter 4, Problem 1RQ

Review Question 4.1 When does a vector have a positive scalar component? When does a vector have a negative scalar component?

Expert Solution & Answer
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To determine

The condition under which a vector has a positive scalar component and a negative scalar component.

Answer to Problem 1RQ

Solution:

When the vector component is in the positive direction of the axis, the scalar component is positive.

When the vector component is in the negative direction of the axis, the scalar component is negative.

Explanation of Solution

Introduction:

The scalar component of vector is determined by the x-axis and the y-axis, which are perpendicular to each other. There is no need to use the vector component of F. It can be replaced with perpendicular forces Fx and Fy.

Explanation:

Consider the first case, when a vector is in the positive x-direction,

The following steps are used to draw the diagram,

(1) Draw an arrow that represents the vector F.

(2) Now, draw the x-axis and the y-axis, which are perpendicular to each other.

(3) Resolve the vector into components.

COLLEGE PHYSICS-TEXT (NASTA EDITION), Chapter 4, Problem 1RQ , additional homework tip  1

Here, F is the magnitude of the force vector, θ is the angle with respect to the positive x-axis, Fx is the force component in the positive x-direction, and Fy is the force component in the positive y-direction.

Resolve the magnitude of force F as,

Fx=Fcosθ

And,

Fy=Fsinθ

Therefore, when the vector component is in the positive direction of the axis, the scalar component is positive.

Consider the second case, when a vector is in the negative x-direction,

COLLEGE PHYSICS-TEXT (NASTA EDITION), Chapter 4, Problem 1RQ , additional homework tip  2

Here, F is the magnitude of the force vector, θ is the angle with respect to the negative x-axis, Fx is the force component in the negative x-direction, and Fy is the force component in the positive y-direction.

Find the values of the scalar component as,

Fx=Fcosθ

And,

Fy=Fsinθ

Suppose Fy is the force component in the negative y-direction, then,

Fy=Fsinθ

Here, the negative sign shows the direction of the vector.

Therefore, when the vector component is in the negative direction of the axis, the scalar component is negative.

Conclusion:

Thus, if the vector component is in the positive direction of the axis, then the scalar component is positive and, if the vector component is in the negative direction of the axis, the scalar component is negative.

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Chapter 4 Solutions

COLLEGE PHYSICS-TEXT (NASTA EDITION)

Ch. 4 - You shoot an arrow with a bow. The following is...Ch. 4 - In what reference frame does a projectile launched...Ch. 4 - In Table 4.6 we found that the two balls touched...Ch. 4 - 8. While running at constant velocity, how should...Ch. 4 - 9. You hold a block on a horizontal, frictionless...Ch. 4 - 10. In the process described in the previous...Ch. 4 - Suppose that two blocks are positioned on an...Ch. 4 - 12. A box containing some stones is resting on a...Ch. 4 - For the following two questions, the answer...Ch. 4 - 14. A block is resting on a rough inclined...Ch. 4 - 15. A box with a heavy television set in it...Ch. 4 - 16. How can an Atwood machine be used to determine...Ch. 4 - 17. Your friend is on Rollerblades holding a...Ch. 4 - Explain why a car starts skidding when a driver...Ch. 4 - 19. Explain why old tires need to be replaced. Ch. 4 - 20. Explain how friction helps you to walk. Ch. 4 - 21. Explain why you might fall forward when you...Ch. 4 - Explain why you might fall backward when you slip.Ch. 4 - Explain why the tires of your car can spin out...Ch. 4 - You throw two identical balls simultaneously at...Ch. 4 - 25. Your friend says that the vertical force...Ch. 4 - Your friend says that a projectile launched at an...Ch. 4 - An object of mass m1 placed on an inclined plane...Ch. 4 - 28 An object of mass m1 placed on an inclined...Ch. 4 - 29. A horse is pulling a sled. If the force...Ch. 4 - 30. If you kick a block so that it starts moving...Ch. 4 - Determine the x- and y-components of each force...Ch. 4 - 2. 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When you actually perform the experiment...Ch. 4 - 69. * You can shoot an arrow straight up so that...Ch. 4 - 70. * Robin Hood wishes to split an arrow already...Ch. 4 - 71. * Three force diagrams for a car on a road are...Ch. 4 - * A minivan of mass 1560 kg starts at rest and...Ch. 4 - 74. * Emily pulls a 5-kg block across a rough...Ch. 4 - 75. * EST You abruptly push a 1.7-kg book along a...Ch. 4 - 76 ** EST In the situation of Problem 4.75,...Ch. 4 - 78. * Two blocks of masses and hang at the ends...Ch. 4 - 79. * A 3.5-kg object placed on an Inclined plane...Ch. 4 - above the horizontal) is connected by a string...Ch. 4 - above the horizontal) is connected by a string...Ch. 4 - 82 ** You are driving at a reasonable constant...Ch. 4 - 84. * In the situation of Problem 2.71 (Chapter 2...Ch. 4 - 87. * Your friend has a pie on the roof of his...Ch. 4 - * A ledge on a building is 20 m above the ground....Ch. 4 - 89. * You are hired to devise a method to...Ch. 4 - The mass of a spacecraft is about 480 kg. An...Ch. 4 - incline When she reaches the level floor at the...Ch. 4 - * Tell all A sled starts at the top of the hill...Ch. 4 - Professor tests airplane takeoff speed D. A....Ch. 4 - Professor tests airplane takeoff speed D A Wardle,...Ch. 4 - Professor tests airplane takeoff speed D A Wardle,...Ch. 4 - Professor tests airplane takeoff speed D. A....Ch. 4 - Choose the best velocity-versus-time graph below...Ch. 4 - Ski jumping in Vancouver The 2010 Olympic ski...Ch. 4 - Ski jumping in Vancouver The 2010 Olympic ski...Ch. 4 - Ski jumping in Vancouver The 2010 Olympic ski...Ch. 4 - Assume that the skier left the ramp moving...Ch. 4 - Ski jumping in Vancouver The 2010 Olympic ski...
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