A copper block is removed from 345°C oven and immediately dropped into 3.75 L of water at 20°C.in an insulated cup. The water quickly reaches 25.35°C and then remains at that temperature. Calculate the following: ((a*1)+(b*1.5)+(c*2.5)= a) Mass of water in grams b) The heat energy supplied to water by the copper block in joules . (Sp.Heat of water = 4186 J/kg°C) %3D c) The mass of copper block in grams (Sp.Heat of copper is 385 J/Kg°C)
A copper block is removed from 345°C oven and immediately dropped into 3.75 L of water at 20°C.in an insulated cup. The water quickly reaches 25.35°C and then remains at that temperature. Calculate the following: ((a*1)+(b*1.5)+(c*2.5)= a) Mass of water in grams b) The heat energy supplied to water by the copper block in joules . (Sp.Heat of water = 4186 J/kg°C) %3D c) The mass of copper block in grams (Sp.Heat of copper is 385 J/Kg°C)
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A copper block is removed from 345°C oven and immediately dropped into 3.75 L of water at 20°C.in an insulated cup. The water quickly reaches 25.35°C and then remains at that temperature. Calculate the following: ((a*1)+(b*1.5)+(c*2.5)=
a) Mass of water in grams
b) The heat energy supplied to water by the copper block in joules . (Sp.Heat of water = 4186 J/kg°C) %3D
c) The mass of copper block in grams (Sp.Heat of copper is 385 J/Kg°C)
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