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WorksheetsEnthalpy and calorimetry
Total questions: 11
Worksheet time: 5mins
Match the definition below to the correct term.
The enthalpy change that takes place when one mole of a compound is formed from its elements in their standard states under standard conditions.
The enthalpy of neutralisation
The enthalpy of combustion
The enthalpy of formation
The enthalpy of reaction
How do you calculate Enthalpy of a reaction?
ΔH = ΔHproducts - ΔHreactants
ΔT = q / mC
ΔG = ΔH -TΔS
E = mc2
"Heat change when 1 mole of gaseous atom is formed from its element at standard states" is the definition for _______.
standard enthalpy of formation
standard enthalpy ofhydration
electron affinity
standard enthalpy of atomisation
Name the type of enthalpy for the following reaction:
Na+ (g) --> Na+ (aq) ΔH = -364 kJmol-1
Standard enthalpy of neutralisation, ΔHneuto
Standard enthalpy of solution, ΔHsolno
Standard enthalpy of hydration, ΔHhydo
lattice energy, ΔHlatticeo
Define standard enthalpy of combustion.
Heat released when one mole of substance is burnt completely in excess oxygen.
Heat absorbed when one mole of substance is burnt completely in excess oxygen under standard state.
Heat released when one mole of substance is burnt completely in excess oxygen under standard state.
Heat change when one mole of substance is burnt partially in excess oxygen under standard state.
Which of the following has a ΔHfo value of 0?
Br2(g)
N(g)
CO(g)
N2(g)
Which of the equation below refers to the standard enthalpy of formation, ΔHfo?
Na(g) ---> Na+(g) + e- ΔH = -364 kJmol-1
C2H5OH(l) + 3O2(g) ---> 2CO2(g) + 3H2O (l) ΔH = - 1286 kJmol-1
2C(s) + 2H2(g) ---> C2H4 (g) ΔH = - 52.3 kJmol-1
Na+(g) ---> Na+(aq) ΔH = - 364 kJmol-1
Q= m c ∆T
The units for specific heat are:
If the specific heat of water is 4.18 J/g∙°C, how much heat is required to increase the temperature of 1.2 kg of water from 23 °C to 39 °C?
-80 256 J
+80.256 J
+80 256 J
-80.256 J
What does "ΔT" mean?
A change in time
A change in heat
A change in energy
A change in temperature
An iron ball requires 5000 J heat energy to raise its temperature by 100C. Calculate the heat capacity of the iron ball.
5 J0C-1
50 J0C-1
500 J0C-1
5000 J0C-1
