Exercise
https://texercises.com/exercise/irdisches-wasser-sonne-und-mond/
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The following quantities appear in the problem: Masse \(m\) / Kraft \(F\) / Radius \(r\) /
The following formulas must be used to solve the exercise: \(F = G \dfrac{m_1m_2}{r^2} \quad \)
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Exercise:
Berechne wie stark a die Sonne und b der Mond an einem Liter Wasser auf der Erde aufgrund der Gravitationskraft glqq ziehengrqq.

Solution:
Anziehung Sonne -mal stärker: F G fracMmr^ .cubicmeterperkilogrampersecondsquared frac.ekg kg.em^ .N Anziehung Mond: F G fracMmr^ .cubicmeterperkilogrampersecondsquared frac.ekg kg.em^ .N
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Exercise:
Berechne wie stark a die Sonne und b der Mond an einem Liter Wasser auf der Erde aufgrund der Gravitationskraft glqq ziehengrqq.

Solution:
Anziehung Sonne -mal stärker: F G fracMmr^ .cubicmeterperkilogrampersecondsquared frac.ekg kg.em^ .N Anziehung Mond: F G fracMmr^ .cubicmeterperkilogrampersecondsquared frac.ekg kg.em^ .N
Linked Clicker question: Sonne, Mond und Wasserflasche

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Attributes & Decorations
Branches
Gravitation
Tags
erde, gravitation, gravitationsgesetz, mechanik, mond, physik, sonne
Content image
Difficulty
(1, default)
Points
2 (default)
Language
GER (Deutsch)
Type
Calculative / Quantity
Creator uz
Decoration
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Link