Question

determine the heat required to be added to change 47 kg of water at 100 degrees...

determine the heat required to be added to change 47 kg of water at 100 degrees Celsius to steam at 100 degrees Celsius.

Homework Answers

Know the answer?
Your Answer:

Post as a guest

Your Name:

What's your source?

Earn Coins

Coins can be redeemed for fabulous gifts.

Not the answer you're looking for?
Ask your own homework help question
Similar Questions
A) How much heat is required to change a 44.4 g ice cube from ice at...
A) How much heat is required to change a 44.4 g ice cube from ice at -13.2 degrees Celsius to water at 80 degrees Celsius? (If necessary, use c of ice= 2090 J/kg degrees Celsius and c of steam= 2010 J/ kg degrees Celsius) B) How much heat is required to change a 44.4 g ice cube from ice at -13.2 degrees Celsius to steam at 117 degrees Celsius?
How much heat is required to change 100 g of ice at –10 degrees C to...
How much heat is required to change 100 g of ice at –10 degrees C to 150 degrees Celsius steam? A. 74.9 kcal B. 54 kcal C. 749 cal D. 594 cal
To change 25 kg of ice -10°C to steam 100°C, how much heat is required? The...
To change 25 kg of ice -10°C to steam 100°C, how much heat is required? The specific heat of water is 4.184 kJ/kg. K. The latent heat of fusion for water at 0°C is approximately 334 kJ/kg (or 80 cal/g), and the latent heat of vaporization at 100°C is about 2,230 kJ/kg (533 cal/g).
0.42 kg of steam at 100°C is added to 2.42 kg of ice at 0°C. Determine...
0.42 kg of steam at 100°C is added to 2.42 kg of ice at 0°C. Determine the temperature of the mixture once thermal equilibrium is reached. latent heat : Steam <> Water 2,260,000
A.) calculate the heat change in kilocalories for condensation of 3.5 kg of steam at 100...
A.) calculate the heat change in kilocalories for condensation of 3.5 kg of steam at 100 Celsius.(Express your answer as a positive value using two significant figures and include the appropriate units) B.) calculate the heat change in kilojoules for condensation of 185 g of steam at 100 Celsius. (Express your answer as a positive value using three significant figures and include the appropriate units)
Exactly 10.8 mL of water at 30.0 degrees C are added to a hot iron skillet....
Exactly 10.8 mL of water at 30.0 degrees C are added to a hot iron skillet. All of the water is converted into steam at 100 degrees C. The mass of the pan is 1.20 kg and the molar heat capacity of iron is 25.19 J/(mol*degrees C). What is the temperature change of the skillet?
Exactly 14.1 mL of water at 31.0 degrees C are added to a hot iron skillet....
Exactly 14.1 mL of water at 31.0 degrees C are added to a hot iron skillet. All of the water is converted into steam at 100 degrees C. The mass of the pan is 1.45 kg and the molar heat capacity of iron os 25.19 J/(mol degrees C). What is the temperature change of the skillet?
In this question, assume that the specific heat of water is 4 ×10^3 J/(kg degrees C)...
In this question, assume that the specific heat of water is 4 ×10^3 J/(kg degrees C) and the latent heat of vaporization pf water is 2X10^6 J/Kg. If we mix 1.0 kg of water at 0 oC with 0.01 kg of steam at 100 oC, when the mixture comes to thermal equilibrium. A: a mixture of steam and water at 100 degrees C B: All water at a temperature greater than 50 degrees C C: All water at a temperature...
Calculate the amount of heat energy required to change 0.173 kg of ice at a temperature...
Calculate the amount of heat energy required to change 0.173 kg of ice at a temperature of -35 �C to steam at a temperature of 160 �C. (specific heat capacities of ice, water and steam are 2090, 4180, 2010 J ⁄ kg ⁄ �C respectively. Latent heat of fusion and vaporization of water are 3.34e5, 2.26e6 J ⁄ kg respectively.)
The latent heat of vaporization (Lv) is similar to the latent heat of fusion (Lf), except...
The latent heat of vaporization (Lv) is similar to the latent heat of fusion (Lf), except that it relates to boiling rather than melting. For water Lv = 2.26 x 10^6 J/kg. .970 kg of steam at 100 degrees celsius (the boiling point of water) is put in contact with a 13.5 kg piece of metal. The initial temperature of metal piece is 70.0 degree celsius. When the piece of metal reaches 100 degrees celsius, .0420 kg of steam has...