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The following quantities appear in the problem: Zeit \(t\) / Masse \(m\) / Temperatur \(T\) / Arbeit \(W\) / Energie \(E\) / Leistung \(P\) / Wärme \(Q\) / spezifische latente Wärme \(L\) / Wärmekapazität \(c\) / Leistungszahl \(\epsilon\) /
The following formulas must be used to solve the exercise: \(Q = c \cdot m \cdot \Delta\vartheta \quad \) \(Q = m \cdot L_{\scriptscriptstyle\rm f} \quad \) \(P = \dfrac{E}{t} = \dfrac{W}{t} \quad \) \(\epsilon = \frac{Q_L}{W} \quad \)
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Exercise:
What volume of water at TCelsius can a freezer make o ice cubes in one hour if the coefficient of performance of the cooling unit is . and the power input is . kilowatt?

Solution:
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Exercise:
What volume of water at TCelsius can a freezer make o ice cubes in one hour if the coefficient of performance of the cooling unit is . and the power input is . kilowatt?

Solution:
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Attributes & Decorations
Branches
Temperatur & Heat, Work, Energy, Power
Tags
calorics, engine, freezer, heat, ice, laws, of, physics, power, refridgerator, thermodynamics, time, water
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Difficulty
(3, default)
Points
2 (default)
Language
ENG (English)
Type
Calculative / Quantity
Creator uz
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Link