A block of mass m 3kg is attached to a light spring with a spring constant k and moves in simple harmonic motion on a fiictionless horizontal surface. Initially the spring is compressed to x, 01 m fron its equilibriim position and is given an mitial velosity vo in the negative x-direction, as shown in the figure below. The maximum speed reached by the block is V2 m s, The bloek s period of oscil- lation is 7 0.889s 1) The spring constaut kis: a. 149.9 m N b. 2.35 Nm c. 0.06 m/ N d. 149.9 N m wwww.M b. C. Od. O O O O

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Chapter1: Units, Trigonometry. And Vectors
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A block of mass m - 3kg is attāched to a light spring with a spring constant k and
moves in simple harmonic motion on a frictionless horizontal surface. Initially the
spring is compressed to x. 01 m from its equilibriuin position and is given an
mitial velosty vo in the negative x-direction as shown in the figure below. The
maximum speed reached bv the block is V2 m s, The bloek s period of oscil-
lation is T 0,889s
1) The spring constant k is:
a. 149.9 m.N
b. 2.35 Nm
c. 0.06 /N
d. 149.9 N m
wwww.M
b.
C.
Od.
O O O O
Transcribed Image Text:A block of mass m - 3kg is attāched to a light spring with a spring constant k and moves in simple harmonic motion on a frictionless horizontal surface. Initially the spring is compressed to x. 01 m from its equilibriuin position and is given an mitial velosty vo in the negative x-direction as shown in the figure below. The maximum speed reached bv the block is V2 m s, The bloek s period of oscil- lation is T 0,889s 1) The spring constant k is: a. 149.9 m.N b. 2.35 Nm c. 0.06 /N d. 149.9 N m wwww.M b. C. Od. O O O O
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