In an engine, a piston oscillates with simple harmonic motion so thát its position varies according to tne expression, X = 3.00 cos ( 5t + where x is in centimeters and t is in seconds. (a) At t = 0, find the position of the piston. What is effect of the phase constant, Tt/7, in the expression for x(t)? cm (b) At t = 0, find velocity of the piston. Enter a number. hd the velocity v(t) of an object if you know the position as a function of time, x(t)? cm/s (c) At t = 0, find acceleration of the piston. cm/s? (d) Find the period and amplitude of the motion. period amnlitude cm

Principles of Physics: A Calculus-Based Text
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Chapter12: Oscillatory Motion
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In an engine, a piston oscillates with simple harmonic motion so that its position varies according to the expression,
TT
X = 3.00 cos ( 5t +
7
where x is in centimeters and t is in seconds.
(a) At t = 0, find the position of the piston.
What is effect of the phase constant, t/7, in the expression for x(t)? cm
(b) At t = 0, find velocity of the piston.
Enter a number. nd the velocity v(t) of an object if you know the position as a function of time, x(t)? cm/s
(c) At t = 0, find acceleration of the piston.
cm/s?
(d) Find the period and amplitude of the motion.
period
amplitude
cm
Transcribed Image Text:In an engine, a piston oscillates with simple harmonic motion so that its position varies according to the expression, TT X = 3.00 cos ( 5t + 7 where x is in centimeters and t is in seconds. (a) At t = 0, find the position of the piston. What is effect of the phase constant, t/7, in the expression for x(t)? cm (b) At t = 0, find velocity of the piston. Enter a number. nd the velocity v(t) of an object if you know the position as a function of time, x(t)? cm/s (c) At t = 0, find acceleration of the piston. cm/s? (d) Find the period and amplitude of the motion. period amplitude cm
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