Two liters of orange juice at T1 = 22.5C is placed in a refrigerator. If energy is removed from the orange juice by heat transfer at a constant rate of Q = -0.1 kW, how much time in minutes it will take to cool the orange juice to T2 = 1.1C? The specific heat and density of the orange juice are c = 4 kJ/kg.Kand p = 1025 kg/m3, respectively. O a. 1754.80 O b. 29.25 O c. 23.23 O d. 29246.67 O e. 1394
Two liters of orange juice at T1 = 22.5C is placed in a refrigerator. If energy is removed from the orange juice by heat transfer at a constant rate of Q = -0.1 kW, how much time in minutes it will take to cool the orange juice to T2 = 1.1C? The specific heat and density of the orange juice are c = 4 kJ/kg.Kand p = 1025 kg/m3, respectively. O a. 1754.80 O b. 29.25 O c. 23.23 O d. 29246.67 O e. 1394
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Two liters of orange juice at T1 = 22.5C is placed in a refrigerator.
If energy is removed from the orange juice by heat transfer at a
constant rate of Q = -0.1 kW, how much time in minutes it will
take to cool the orange juice to T2 = 1.1C? The specific heat and
density of the orange juice are c = 4 kJ/kg.Kand p = 1025 kg/m3,
respectively.
O a. 1754.80
O b. 29.25
O c. 23.23
O d. 29246.67
O e. 1394](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F41eb1db9-a8dd-4d54-969c-f93bbca41464%2F7d42c9e1-b065-4430-a5d9-cacc6c2c5755%2Fir7nbw8_processed.jpeg&w=3840&q=75)
Transcribed Image Text:on
Two liters of orange juice at T1 = 22.5C is placed in a refrigerator.
If energy is removed from the orange juice by heat transfer at a
constant rate of Q = -0.1 kW, how much time in minutes it will
take to cool the orange juice to T2 = 1.1C? The specific heat and
density of the orange juice are c = 4 kJ/kg.Kand p = 1025 kg/m3,
respectively.
O a. 1754.80
O b. 29.25
O c. 23.23
O d. 29246.67
O e. 1394
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