1. In the vertical spring experiment, the frequency of an oscillating spring system is given by 1 f : Vk/m 2n Suppose you measure the frequencies for a range of mass values and plot f² versus 1/m as you did in the lab today, with f in units of cycles per second and m in units of kg. The data points lie on a straight line and you find the slope of this line to be equal to 680 kg/s?. What is the spring constant? Include units in your answer.

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Chapter1: Units, Trigonometry. And Vectors
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1. In the vertical spring experiment, the frequency of an oscillating spring system is given by
1
f :
Vk/m
Suppose you measure the frequencies for a range of mass values and plot f versus 1/m as
you did in the lab today, with f in units of cycles per second and m in units of kg. The data
points lie on a straight line and you find the slope of this line to be equal to 680 kg/s². What
is the spring constant? Include units in your answer.
2. In the vertical spring experiment, you zeroed the force sensor when the spring was hanging
by itself at rest. If you hang the weight pan and some weights from the spring and get a
reading of 5.25 N, what experimental quantity can you obtain from this value? Determine
the numerical value of this quantity.
Transcribed Image Text:1. In the vertical spring experiment, the frequency of an oscillating spring system is given by 1 f : Vk/m Suppose you measure the frequencies for a range of mass values and plot f versus 1/m as you did in the lab today, with f in units of cycles per second and m in units of kg. The data points lie on a straight line and you find the slope of this line to be equal to 680 kg/s². What is the spring constant? Include units in your answer. 2. In the vertical spring experiment, you zeroed the force sensor when the spring was hanging by itself at rest. If you hang the weight pan and some weights from the spring and get a reading of 5.25 N, what experimental quantity can you obtain from this value? Determine the numerical value of this quantity.
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