If the weight used in the experiment is having an uncertainty of 1.5+ 0.02 N, the initial height is measured, with an uncertainty of 55 + 0.06 cm and the final height with an uncertainty of 23.9 + 0.06 cm. (Potential energies are calculated by the formula weight x height) Calculate, 1) The absolute uncertainty in the calculated value of Initial Potential Energy (in Joules) %3D 2) The absolute uncertainty in the calculated value of Final Potential Energy (in Joules) 3) The absolute uncertainty in the calculated value of Loss of Potential Energies (in Joules)

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If the weight used in the experiment is having an uncertainty of 1.5+ 0.02 N, the initial height is measured, with
an uncertainty of 55 ± 0.06 cm and the final height with an uncertainty of 23.9 ± 0.06 cm. (Potential energies
are calculated by the formula weight x height)
Calculate,
1) The absolute uncertainty in the calculated value of Initial Potential Energy (in Joules) =
2) The absolute uncertainty in the calculated value of Final Potential Energy (in Joules)
3) The absolute uncertainty in the calculated value of Loss of Potential Energies (in Joules)
%D
Transcribed Image Text:If the weight used in the experiment is having an uncertainty of 1.5+ 0.02 N, the initial height is measured, with an uncertainty of 55 ± 0.06 cm and the final height with an uncertainty of 23.9 ± 0.06 cm. (Potential energies are calculated by the formula weight x height) Calculate, 1) The absolute uncertainty in the calculated value of Initial Potential Energy (in Joules) = 2) The absolute uncertainty in the calculated value of Final Potential Energy (in Joules) 3) The absolute uncertainty in the calculated value of Loss of Potential Energies (in Joules) %D
Initial Height H.
Final Height H2
Transcribed Image Text:Initial Height H. Final Height H2
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