Hess's Law is crucial in determining enthalpy changes. What fundamental principle does Hess's Law rely on?
IB Diploma Programme (DP) - SL & HL · Chemistry
反應性1.2—反應中的能量循環:練習題
5 條多項選擇題即時批改,另有 5 條文字題附完整解題步驟,全部圍繞「反應性1.2—反應中的能量循環」。
Given the following data:
\( ΔH_{\text{at}}^\theta [Na(s)] = +107 \text{ kJ mol}^{-1} \)
\( IE_1 [Na(g)] = +496 \text{ kJ mol}^{-1} \)
\( ΔH_{\text{at}}^\theta [\frac{1}{2}Cl_2(g)] = +122 \text{ kJ mol}^{-1} \)
\( EA_1 [Cl(g)] = -349 \text{ kJ mol}^{-1} \)
\( ΔH_f^\theta [NaCl(s)] = -411 \text{ kJ mol}^{-1} \)
What is the lattice enthalpy of formation of NaCl(s) in \( \text{kJ mol}^{-1} \)?
Lithium chloride (\(\text{LiCl}\)) has a more exothermic enthalpy of solution than sodium chloride (\(\text{NaCl}\)). Which statement best explains this observation using an energy cycle?
Which enthalpy change is represented by the equation below?
\( K^+(g) + Cl^-(g) \rightarrow KCl(s) \)
The standard enthalpy changes of combustion for carbon, hydrogen, and ethene are given below:
\( C(s) + O_2(g) \rightarrow CO_2(g) \quad \Delta H_c^\theta = -394 \text{ kJ mol}^{-1} \)
\( H_2(g) + \frac{1}{2}O_2(g) \rightarrow H_2O(l) \quad \Delta H_c^\theta = -286 \text{ kJ mol}^{-1} \)
\( C_2H_4(g) + 3O_2(g) \rightarrow 2CO_2(g) + 2H_2O(l) \quad \Delta H_c^\theta = -1411 \text{ kJ mol}^{-1} \)
What is the standard enthalpy of formation of ethene, \( C_2H_4(g) \), in \( \text{kJ mol}^{-1} \)?
Given that \(A \rightarrow B\) has \(\Delta H_1 = +40\text{ kJ mol}^{-1}\) and \(C \rightarrow B\) has \(\Delta H_2 = +65\text{ kJ mol}^{-1}\), determine the enthalpy change for the reaction \(A \rightarrow C\) using Hess's Law.
先自己寫一次答案,再對照解題步驟。
Using the standard enthalpy of combustion values for \( \text{C}(s) \) (\( -394\text{ kJ mol}^{-1} \)), \( \text{H}_2(g) \) (\( -286\text{ kJ mol}^{-1} \)), and \( \text{C}_2\text{H}_5\text{OH}(l) \) (\( -1367\text{ kJ mol}^{-1} \)), calculate the standard enthalpy of formation for ethanol, \( \text{C}_2\text{H}_5\text{OH}(l) \).
先自己寫一次答案,再對照解題步驟。
State Hess's Law and explain how it allows the determination of enthalpy changes that cannot be measured directly through experimentation.
先自己寫一次答案,再對照解題步驟。
Using Hess's Law and the standard enthalpy of combustion data provided below, calculate the enthalpy change for the conversion of graphite to diamond:
\(C(\text{s, graphite}) \rightarrow C(\text{s, diamond})\)
Data:
1. \(C(\text{s, graphite}) + O_2(g) \rightarrow CO_2(g)\) \(\Delta H_c^{\circ} = -393.5\text{ kJ mol}^{-1}\)
2. \(C(\text{s, diamond}) + O_2(g) \rightarrow CO_2(g)\) \(\Delta H_c^{\circ} = -395.4\text{ kJ mol}^{-1}\)
Construct an energy cycle to show your reasoning and state whether the process is exothermic or endothermic.
先自己寫一次答案,再對照解題步驟。
The enthalpy of solution for calcium chloride can be calculated using hydration and lattice enthalpies. Given:
Lattice enthalpy (\(\Delta H_{lat}^{\ominus}\)) of \(CaCl_2\): \(-2258\text{ kJ mol}^{-1}\)
Hydration enthalpy (\(\Delta H_{hyd}^{\ominus}\)) of \(Ca^{2+}(g)\): \(-1577\text{ kJ mol}^{-1}\)
Hydration enthalpy (\(\Delta H_{hyd}^{\ominus}\)) of \(Cl^{-}(g)\): \(-363\text{ kJ mol}^{-1}\)
(a) State the equation for the lattice enthalpy of \(CaCl_2\) as defined by the IB.
(b) Construct an energy cycle and calculate the enthalpy of solution for \(CaCl_2(s)\).
(c) Suggest why the entropy change of the system is positive when \(CaCl_2\) dissolves in water.
先自己寫一次答案,再對照解題步驟。
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