Oxford AQA International A-level · Chemistry (9620)

3.1.8 熱力學 (僅A2):練習題

5 條多項選擇題即時批改,另有 3 條文字題附完整解題步驟,全部圍繞「3.1.8 熱力學 (僅A2)」。

8 條題目21 免費,無需登記
第 1 題
1

For a chemical reaction to be feasible (spontaneous) at all temperatures, what must be the signs of the enthalpy change (\( \Delta H \)) and the entropy change (\( \Delta S \))?

第 2 題
1

Calculate the enthalpy of solution for sodium chloride given the following data:
Lattice enthalpy of formation for \( \text{NaCl(s)} = -787 \text{ kJ mol}^{-1} \)
Enthalpy of hydration for \( \text{Na}^+(g) = -406 \text{ kJ mol}^{-1} \)
Enthalpy of hydration for \( \text{Cl}^-(g) = -364 \text{ kJ mol}^{-1} \)

第 3 題
1

Calculate the lattice enthalpy of formation for magnesium oxide (\( \text{MgO} \)) using the following Born-Haber cycle data (all in \( \text{kJ mol}^{-1} \)):
Enthalpy of formation of \( \text{MgO(s)} = -602 \)
Enthalpy of atomisation of \( \text{Mg(s)} = +148 \)
First ionisation energy of \( \text{Mg(g)} = +738 \)
Second ionisation energy of \( \text{Mg(g)} = +1451 \)
Enthalpy of atomisation of \( \text{O}_2(g) = +249 \)
First electron affinity of \( \text{O(g)} = -141 \)
Second electron affinity of \( \text{O(g)} = +798 \)

第 4 題
1

A reaction has an enthalpy change (\( \Delta H \)) of \( +45 \text{ kJ mol}^{-1} \) and an entropy change (\( \Delta S \)) of \( +120 \text{ J K}^{-1} \text{ mol}^{-1} \). What is the minimum temperature required for this reaction to become feasible?

第 5 題
1

The experimental lattice enthalpy of silver iodide (\( \text{AgI} \)) is found to be significantly more exothermic than the value calculated using the perfect ionic model. Which statement best explains this observation?

第 6 題
4

Calculate the standard entropy change (\(\Delta S^\theta\)) for a reaction that becomes feasible at temperatures above \(500\) K, given \(\Delta H^\theta = +60\) kJ mol\(^{-1}\).

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第 7 題
5

Explain why the lattice formation enthalpy of magnesium oxide (\(MgO\)) is significantly more exothermic than that of sodium chloride (\(NaCl\)).

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第 8 題
7

Calculate the minimum temperature at which the decomposition of magnesium carbonate becomes feasible.
\(\text{MgCO}_3(s) \rightarrow \text{MgO}(s) + \text{CO}_2(g)\)
Use the following standard thermodynamic data:
\(\Delta H_f^\circ\): \(\text{MgCO}_3(s) = -1096 \text{ kJ mol}^{-1}\); \(\text{MgO}(s) = -602 \text{ kJ mol}^{-1}\); \(\text{CO}_2(g) = -394 \text{ kJ mol}^{-1}\).
\(S^\circ\): \(\text{MgCO}_3(s) = 65.9 \text{ J K}^{-1} \text{ mol}^{-1}\); \(\text{MgO}(s) = 26.9 \text{ J K}^{-1} \text{ mol}^{-1}\); \(\text{CO}_2(g) = 213.6 \text{ J K}^{-1} \text{ mol}^{-1}\).

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