Exercises 3 In each of the following experiments, the data set (presented by bold letters) obeys a nonlinear relation. Simple Pendulum: T = 21 (L/g)/2 Perfect Gas Law: P = nRT / V Stefan's Law: P = o(T+ + To*) e/m Experiment: e/m = 2V / (B? r2) %3D Standing Waves: n? = (4L?f²u)/ (mg) In the above expressions, all the parameters other than the data may be treated as constants. Suggest how to plot the data, in each of the above experiments, to obtain a straight line graph. In each case, state what the slope of the graph would represent, and also the y-intercept, if any.

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Exercises 3
In each of the following experiments, the data set (presented by bold letters) obeys a
nonlinear relation.
Simple Pendulum: T = 21 (L/g)/2
Perfect Gas Law: P = nRT / V
Stefan's Law: P = o(T+ + To*)
e/m Experiment: e/m = 2V / (B² r²)
Standing Waves: n² = (4L²f²u) / (mg)
In the above expressions, all the parameters other than the data may be treated
as constants.
Suggest how to plot the data, in each of the above experiments, to obtain a
straight line graph. In each case, state what the slope of the graph would
represent, and also the y-intercept, if any.
Transcribed Image Text:Exercises 3 In each of the following experiments, the data set (presented by bold letters) obeys a nonlinear relation. Simple Pendulum: T = 21 (L/g)/2 Perfect Gas Law: P = nRT / V Stefan's Law: P = o(T+ + To*) e/m Experiment: e/m = 2V / (B² r²) Standing Waves: n² = (4L²f²u) / (mg) In the above expressions, all the parameters other than the data may be treated as constants. Suggest how to plot the data, in each of the above experiments, to obtain a straight line graph. In each case, state what the slope of the graph would represent, and also the y-intercept, if any.
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