The specific heat capacity of aluminum is 0.902 J/g°C. First, convert 3kg to grams (3000g). Then, calculate the change in temperature (23°C - 18°C = 5°C). Finally, use the formula Q = mcΔT to find the energy required: Q = 3000g * 0.902 J/g°C * 5°C.
The specific heat capacity of aluminum is 0.9 J/g°C. To calculate the energy required to raise the temperature of 0.2kg of aluminum by 3 degrees Celsius, you would use the formula: Energy = mass x specific heat capacity x temperature change. Substituting the values into the formula, Energy = 0.2kg x 0.9 J/g°C x 3°C = 0.54 Joules.
The specific heat capacity of aluminum is 900 J/kg°C. The change in temperature is 3°C. Using the formula Q = mcΔT, the energy required would be 0.2 kg * 900 J/kg°C * 3°C = 540 J. So, the energy required to raise the temperature is 540 Joules.
If the temperature decreases by 30 degrees Celsius from 20 degrees Celsius, the new temperature will be -10 degrees Celsius.
The temperature required for nuclear fusion to occur is around 100 million degrees Celsius.
The temperature is 0 degrees Celsius.
Aluminum melts at a temperature of 660.3 degrees Celsius (1220.5 degrees Fahrenheit).
Aluminum melts at approximately 660 degrees Celsius (1220 degrees Fahrenheit).
The specific heat capacity of aluminum is 0.9 J/g°C. To calculate the energy required to raise the temperature of 0.2kg of aluminum by 3 degrees Celsius, you would use the formula: Energy = mass x specific heat capacity x temperature change. Substituting the values into the formula, Energy = 0.2kg x 0.9 J/g°C x 3°C = 0.54 Joules.
Aluminum boils at 4566 degrees Fahrenheit or 2519 degrees Celsius
At 800 degrees Celsius, aluminum is in its molten state, meaning it has melted from its solid form into a liquid. This temperature is above the melting point of aluminum, which is around 660 degrees Celsius.
Liquid aluminum sulfate crystallizes at approximately 86 degrees Celsius.
100 degrees Celsius
Any of the above based on the temperature. Solid at room temperature.
The specific heat capacity of aluminum is 900 J/kg°C. The change in temperature is 3°C. Using the formula Q = mcΔT, the energy required would be 0.2 kg * 900 J/kg°C * 3°C = 540 J. So, the energy required to raise the temperature is 540 Joules.
Approx 4974 Joules.
Aluminum is a solid state of matter at room temperature. It has a melting point of 660.25 degrees Celsius.
344 degrees Celsius = 651.2 degrees Fahrenheit.