4. As show in the figure, a 3-kg block is released from the top of the slope and hits a spring. Both the slope and the ground are frictionless. The spring constant k is 400 N/m. (a) Find the maximum distance Ar that the spring was compressed. (b) The block was stuck with the spring after it hit the spring, and oscillated back and forth. Find the period and frequency of the oscillation. T 2.0 m 30° www.

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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4. As show in the figure, a 3-kg block is released from the top of the slope and hits a spring. Both the slope
and the ground are frictionless. The spring constant k is 400 N/m.
30°/
(a) Find the maximum distance Ar that the spring was compressed.
(b) The block was stuck with the spring after it hit the spring, and oscillated back and forth. Find the
period and frequency of the oscillation.
804
Seahorse literature
OOK
WWW
Microsoft Office H...
MacBook Air
W Honors Program...
WW
Q? @
QS!
WP N
☆
Transcribed Image Text:History Bookmarks Profiles Tab Cr Physics Bb X Harper Sign in Bb M Bb M Window Help Marine Ecology 4 / 5 LTO st-1-prod-fleet01-xythos.content.blackboardcdn.com/blackboard.learn.xythos.prod/5970c46bc1741/119348787X-Blackboard- o Mail - Quinn D. Do... Calendar | Univers... MarEco Project PRATA 2.0 m akty Bb Welcome, Quinn -... 100% Fasick Research + 4. As show in the figure, a 3-kg block is released from the top of the slope and hits a spring. Both the slope and the ground are frictionless. The spring constant k is 400 N/m. 30°/ (a) Find the maximum distance Ar that the spring was compressed. (b) The block was stuck with the spring after it hit the spring, and oscillated back and forth. Find the period and frequency of the oscillation. 804 Seahorse literature OOK WWW Microsoft Office H... MacBook Air W Honors Program... WW Q? @ QS! WP N ☆
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