Q?=?mL
The amount of energy required to change the state of 1 kg of a substance without changing its temperature
This means that the higher the specific latent heat of a substance, the greater the energy needed to change its state
The energy released when 1 kg of liquid freezes to become solid at constant temperature
The energy absorbed when 1 kg of solid melts to become liquid at constant temperature
The energy released when 1 kg of gas condenses to become liquid at constant temperature
The energy absorbed when 1 kg of liquid evaporates to become gas at constant temperature

Determine the energy needed to melt 200 g of ice at 0°C.
Step 1: Determine whether to use latent heat of fusion or vaporisation
Step 2: List the known quantities
Step 3: Write down the equation for the thermal energy?
Q?=?mLf
Step 4: Substitute numbers into the equation?
Q?= 0.2 kg?× (3.3 × 105) J kg–1
Q?= 6.6?× 104?J = 66 kJ
Energy is supplied to a heater at a rate of 2500 W.Determine the time taken to boil 0.50 kg of water at 100°C. Ignore energy losses.
Step 1: Determine whether to use latent heat of fusion or vaporisation
Step 2: Write down the known quantities
Step 3: Recall the equation linking power?P, energy?E?and time?t
E?=?Pt
Step 4: Write down the equation for the thermal energy?E
Q=?mLf
Step 5: Equate the two expressions for energy?
Pt?=?mLf
Step 6: Solve for the time?t
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t?= 460 s
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