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https://texercises.com/exercise/equivalence-of-energy-and-mass/
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The following quantities appear in the problem: Masse \(m\) / Energie \(E\) /
The following formulas must be used to solve the exercise: \(E = mc^2 \quad \)
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Exercise:
How does the mass change in the following situations? abcliste abc An alpinist maO climbs a vertical distance of hO. abc The temperature of the metal frame of the Eiffel tower mbO is increased by dTO. abc The spring of a shock absorber spring constant kO is stretched by dlO. abcliste

Solution:
abcliste abc Delta m fracDelta Ec^ dmaF fracma times ncg times hncc^ resultdmaP- abc Delta m fracDelta Ec^ dmbF fracc times mb times dTncc^ resultdmbP- abc Delta m fracDelta Ec^ dmcF frack times dl^ times ncc^ resultdmcP- abcliste In all cases the mass change is so small that it cannot be measured.
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Exercise:
How does the mass change in the following situations? abcliste abc An alpinist maO climbs a vertical distance of hO. abc The temperature of the metal frame of the Eiffel tower mbO is increased by dTO. abc The spring of a shock absorber spring constant kO is stretched by dlO. abcliste

Solution:
abcliste abc Delta m fracDelta Ec^ dmaF fracma times ncg times hncc^ resultdmaP- abc Delta m fracDelta Ec^ dmbF fracc times mb times dTncc^ resultdmbP- abc Delta m fracDelta Ec^ dmcF frack times dl^ times ncc^ resultdmcP- abcliste In all cases the mass change is so small that it cannot be measured.
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special relativity
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energy mass equivalence
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