A spring and block are in the arrangement of the figure below. When the block is pulled out to x = +3.5 cm, we must apply a force of magnitude 370 N to hold it there. We pull the block to x = +13.0 cm and then rel -Block attached to spring x=0 F=0 oooooooo x positive F. negative 0000 mooory 0 (a) 0 (b) 0 (b) x = 6.0 cm to x = -5.0 cm Figure (a): A spring in its relaxed state. The origin of an x axis has been placed at the end of the spring that is attached to a block. Figure (b): The block is displaced by d, and the spring is stretched by a positive amount x. Note the restoring force exerted by the spring. Figure (c): The spring is compressed by a negative amount x. Again, note the restoring force. For each of the following, find how much work the spring does on the block when the block moves from the first point given to the second point given the following. (a) x₁ = 6.0 cm to x = 5.0 cm J (c) x₁ = 6.0 cm to x = -6.0 cm J x negative F positive (d) x = 6.0 cm to x = -13.0 cm x

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Chapter1: Units, Trigonometry. And Vectors
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A spring and block are in the arrangement of the figure below. When the block is pulled out to x = +3.5 cm, we must apply a force of magnitude 370 N to hold it there. We pull the block to x = +13.0 cm and then release it.
-Block
attached
to spring
x=0
F₂=0
0
(a)
x positive
F, negative
oooooouuu
mooory
mm
0
(b)
0
(c)
(b) x = 6.0 cm to x = -5.0 cm
(c) x₁ = 6.0 cm to x = -6.0 cm
J
x negative
F positive
Figure (a): A spring in its relaxed state. The origin of an x axis has been placed at the end of the spring that is attached to a block.
Figure (b): The block is displaced by a, and the spring is stretched by a positive amount x. Note the restoring force exerted by the spring.
Figure (c): The spring is compressed by a negative amount x. Again, note the restoring force.
For each of the following, find how much work the spring does on the block when the block moves from the first point given to the second point given the following.
(a) x₁ = 6.0 cm to x = 5.0 cm
J
(d) x = 6.0 cm to x = -13.0 cm
x
·x
Transcribed Image Text:A spring and block are in the arrangement of the figure below. When the block is pulled out to x = +3.5 cm, we must apply a force of magnitude 370 N to hold it there. We pull the block to x = +13.0 cm and then release it. -Block attached to spring x=0 F₂=0 0 (a) x positive F, negative oooooouuu mooory mm 0 (b) 0 (c) (b) x = 6.0 cm to x = -5.0 cm (c) x₁ = 6.0 cm to x = -6.0 cm J x negative F positive Figure (a): A spring in its relaxed state. The origin of an x axis has been placed at the end of the spring that is attached to a block. Figure (b): The block is displaced by a, and the spring is stretched by a positive amount x. Note the restoring force exerted by the spring. Figure (c): The spring is compressed by a negative amount x. Again, note the restoring force. For each of the following, find how much work the spring does on the block when the block moves from the first point given to the second point given the following. (a) x₁ = 6.0 cm to x = 5.0 cm J (d) x = 6.0 cm to x = -13.0 cm x ·x
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