Ask Question
21 July, 20:16

The specific heat of copper is 0.42J/g°C. How much energy is required to heat a 275g sample of copper from 25.2°C to 75.8°C?

+3
Answers (1)
  1. 21 July, 20:51
    0
    Q = 5844.3 j

    Explanation:

    Given dа ta:

    Specific heat of copper = 0.42 j/g.°C

    Mass of sample = 275 g

    Initial temperature = 25.2°C

    Final temperature = 75.8°C

    Energy required = ?

    Solution:

    Formula:

    Q = m. c. ΔT

    Q = amount of heat absorbed or released

    m = mass of given substance

    c = specific heat capacity of substance

    ΔT = change in temperature

    ΔT = 75.8°C - 25.2°C

    ΔT = 50.6°C

    Q = 275 g * 0.42 j/g.°C * 50.6°C

    Q = 5844.3 j
Know the Answer?
Not Sure About the Answer?
Get an answer to your question ✅ “The specific heat of copper is 0.42J/g°C. How much energy is required to heat a 275g sample of copper from 25.2°C to 75.8°C? ...” in 📙 Chemistry if there is no answer or all answers are wrong, use a search bar and try to find the answer among similar questions.
Search for Other Answers