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2. find the heat energy required to raise an iron bar of mass 2.0 kg fr…

Question

  1. find the heat energy required to raise an iron bar of mass 2.0 kg from 20°c to 120°c.

Explanation:

Step1: Recall the formula for heat energy

The formula for heat energy \( Q \) required to change the temperature of a substance is \( Q = mc\Delta T \), where \( m \) is the mass, \( c \) is the specific heat capacity, and \( \Delta T \) is the change in temperature. For iron, the specific heat capacity \( c = 450 \, \text{J/(kg·°C)} \).

Step2: Calculate the change in temperature

The initial temperature \( T_1 = 20^\circ\text{C} \) and the final temperature \( T_2 = 120^\circ\text{C} \). So, \( \Delta T = T_2 - T_1 = 120 - 20 = 100^\circ\text{C} \).

Step3: Substitute values into the formula

Given \( m = 2.0 \, \text{kg} \), \( c = 450 \, \text{J/(kg·°C)} \), and \( \Delta T = 100^\circ\text{C} \). Substitute these into \( Q = mc\Delta T \):
\( Q = 2.0 \times 450 \times 100 \)
\( Q = 2.0 \times 45000 \)
\( Q = 90000 \, \text{J} \) or \( 9.0 \times 10^4 \, \text{J} \)

Answer:

The heat energy required is \( 90000 \, \text{J} \) (or \( 9.0 \times 10^4 \, \text{J} \)).