QUESTION 9 A 10-kg block is attached to one end of a horizontal spring on a level, frictionless surface. The other end of the spring is attached to a vertical support. The spring obeys Hooke's law and has a spring constant of k = 160 N/m. A physics student pulls the block outward so that the spring stretches by 40 cm. The student releases the block at time t = 0.00 s. Which of the following equations properly gives the position as a function of time? a. x(t) = (- 1.6 m/s)sin(4.0t) b. x(t) = (- 6.4 m/s2)cos(4.0t) C. x(t) = (10 m)cos(4.0t) d. x(t) = (0.40 m)cos(4.0t) e. x(t) = (4.0 m)cos(0.40t)

Principles of Physics: A Calculus-Based Text
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Chapter12: Oscillatory Motion
Section: Chapter Questions
Problem 14OQ: You attach a block to the bottom end of a spring hanging vertically. You slowly let the block move...
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QUESTION 9
A 10-kg block is attached to one end of a horizontal spring
on a level, frictionless surface. The other end of the spring
is attached to a vertical support. The spring obeys Hooke's
law and has a spring constant of k = 160 N/m. A physics
student pulls the block outward so that the spring stretches
by 40 cm. The student releases the block at time t =
0.00 s.
Which of the following equations properly gives the position
as a function of time?
a. x(t) = (- 1.6 m/s)sin(4.0t)
b.
x(t) = (- 6.4 m/s2)cos(4.0t)
C. x(t) = (10 m)cos(4.0t)
d. x(t) = (0.40 m)cos(4.0t)
e. x(t) = (4.0 m)cos(0.40t)
Transcribed Image Text:QUESTION 9 A 10-kg block is attached to one end of a horizontal spring on a level, frictionless surface. The other end of the spring is attached to a vertical support. The spring obeys Hooke's law and has a spring constant of k = 160 N/m. A physics student pulls the block outward so that the spring stretches by 40 cm. The student releases the block at time t = 0.00 s. Which of the following equations properly gives the position as a function of time? a. x(t) = (- 1.6 m/s)sin(4.0t) b. x(t) = (- 6.4 m/s2)cos(4.0t) C. x(t) = (10 m)cos(4.0t) d. x(t) = (0.40 m)cos(4.0t) e. x(t) = (4.0 m)cos(0.40t)
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