In the figure, a block of mass m = 2.70 kg slides from rest a distance d down a frictionless incline at angle =29.0" where it runs into a spring of spring constant 470 N/m. When the block momentarily stops, it has compressed the spring by 21.0 cm. What are (a) distance d and (b) the distance between the point of the first block-spring contact and the point where the block's speed is greatest?
In the figure, a block of mass m = 2.70 kg slides from rest a distance d down a frictionless incline at angle =29.0" where it runs into a spring of spring constant 470 N/m. When the block momentarily stops, it has compressed the spring by 21.0 cm. What are (a) distance d and (b) the distance between the point of the first block-spring contact and the point where the block's speed is greatest?
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![In the figure, a block of mass m = 2.70 kg slides from rest a distance d down a frictionless incline at angle 0 = 29.0° where it runs into a
spring of spring constant 470 N/m. When the block momentarily stops, it has compressed the spring by 21.0 cm. What are (a) distance
d and (b) the distance between the point of the first block-spring contact and the point where the block's speed is greatest?
(a) Number i
(b) Number i
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Transcribed Image Text:In the figure, a block of mass m = 2.70 kg slides from rest a distance d down a frictionless incline at angle 0 = 29.0° where it runs into a
spring of spring constant 470 N/m. When the block momentarily stops, it has compressed the spring by 21.0 cm. What are (a) distance
d and (b) the distance between the point of the first block-spring contact and the point where the block's speed is greatest?
(a) Number i
(b) Number i
CO Tutorial
Units
Units
mmmm
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