Establish the physical model (equation) which links the length of the string, the frequency, the suspended mass, the mode number and the linear density of the string. Choose which variable, among the length of the string and the frequency, will be the independent variable. The goal of the experiment is to determine the linear mass of the rope by performing a linear regression on our data. Choose the x- and y-axis on your graph based on the equation you obtained, so that the graph is linear. Indicate what the slope and intercept of this graph represent.
Establish the physical model (equation) which links the length of the string, the frequency, the suspended mass, the mode number and the linear density of the string. Choose which variable, among the length of the string and the frequency, will be the independent variable. The goal of the experiment is to determine the linear mass of the rope by performing a linear regression on our data. Choose the x- and y-axis on your graph based on the equation you obtained, so that the graph is linear. Indicate what the slope and intercept of this graph represent.
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Establish the physical model (equation) which links the length of the string, the frequency, the suspended mass, the mode number and the linear density of the string. Choose which variable, among the length of the string and the frequency, will be the independent variable.
The goal of the experiment is to determine the linear mass of the rope by performing a linear regression on our data. Choose the x- and y-axis on your graph based on the equation you obtained, so that the graph is linear. Indicate what the slope and intercept of this graph represent.
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