Lesson 3.1.8.1
3.1.8.1 Born–Haber cycles Quiz: AQA Chemistry, Unit 1
20 questions
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Lesson 3.1.8.1, Born–Haber cycles: 20 multiple choice questions for the AQA Chemistry (7405), Unit 1: Physical chemistry, written with Revision Ninja.
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The 20 questions
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What is the definition of lattice enthalpy, in the sense of lattice formation?
- The energy change when one mole of gaseous atoms is formed from a solid element
- The energy change when one mole of a solid ionic compound is dissolved in water
- The energy change when one mole of gaseous ions is hydrated by water molecules
- The energy change when one mole of a solid ionic compound is formed from its gaseous ions
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What is the enthalpy of atomisation of an element?
- The energy change when one mole of the element is dissolved in water
- The energy change when one mole of gaseous atoms gains one electron each
- The energy change when one mole of the element is formed from its gaseous ions
- The energy change when one mole of gaseous atoms is formed from the element in its standard state
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What is the first ionisation energy of an element?
- The energy needed to form one mole of gaseous ions from the solid element
- The energy released when one mole of gaseous atoms gains one electron
- The energy needed to remove one electron from each atom in one mole of gaseous atoms
- The energy needed to break one mole of bonds in a diatomic molecule
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What is the first electron affinity of an element?
- The energy change when one mole of solid element is converted to gaseous atoms
- The energy change when one mole of gaseous 1- ions loses one electron each
- The energy change when one mole of gaseous ions is surrounded by water molecules
- The energy change when one mole of gaseous atoms gains one electron each to form 1- ions
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What is the enthalpy of hydration of an ion?
- The energy change when one mole of solid compound dissolves in water to make a saturated solution
- The energy change when one mole of water is formed from hydrogen and oxygen
- The energy change when one mole of gaseous ions is surrounded by water molecules
- The energy change when one mole of gaseous atoms gains one electron each
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For NaCl, delta Hf = -411 kJ/mol, enthalpy of atomisation of Na = +107 kJ/mol, first ionisation energy of Na = +496 kJ/mol, enthalpy of atomisation of 1/2 Cl2 = +122 kJ/mol, and first electron affinity of Cl = -349 kJ/mol. What is the lattice enthalpy of formation of NaCl?
- -787 kJ/mol
- +787 kJ/mol
- -411 kJ/mol
- -376 kJ/mol
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Using the same NaCl data (atomisation of Na +107, ionisation energy +496, atomisation of 1/2 Cl2 +122, electron affinity -349 kJ/mol), what is the sum of these four enthalpy changes?
- +411 kJ/mol
- +787 kJ/mol
- -376 kJ/mol
- +376 kJ/mol
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A Born-Haber cycle for KCl uses delta Hf = -437, atomisation of K = +89, first ionisation energy of K = +419, atomisation of 1/2 Cl2 = +122 and electron affinity of Cl = -349, all in kJ/mol. What is the lattice formation enthalpy?
- +718 kJ/mol
- -718 kJ/mol
- -437 kJ/mol
- -281 kJ/mol
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The bond enthalpy of Cl2 is 242 kJ/mol. In a Born-Haber cycle, what is the enthalpy of atomisation of 1/2 Cl2?
- 61 kJ/mol
- 121 kJ/mol
- 484 kJ/mol
- 242 kJ/mol
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Using a Born-Haber cycle with delta Hf(CaF2) = -1219, atomisation of Ca = +178, IE1 = +590, IE2 = +1145, bond enthalpy of F2 = 158, electron affinity of F = -328 (per F atom), all in kJ/mol, what is the lattice formation enthalpy of CaF2?
- -1415 kJ/mol
- +2634 kJ/mol
- -804 kJ/mol
- -2634 kJ/mol
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A Born-Haber calculation for an ionic compound gives a lattice enthalpy less exothermic than the value from a perfect ionic model. What does this suggest?
- The bonding has some covalent character, so the perfect ionic model overestimates the lattice enthalpy
- The ions are more strongly hydrated than the perfect model predicts, so less energy is released
- The compound is metallic, because metals have lower lattice enthalpies than ionic solids
- The bonding is purely ionic, and the perfect ionic model underestimates the lattice enthalpy
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Which property of ions gives the most exothermic lattice enthalpy of formation?
- Small ionic radius and low charge, which give low charge density
- Large ionic radius and high charge, which give high charge density
- Large ionic radius and low charge, which give low charge density
- Small ionic radius and high charge, which give high charge density
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Which compound has the more exothermic lattice enthalpy of formation, and why?
- NaCl, because Mg2+ has a lower charge than Na+, so its ions are less strongly held together than sodium ions are
- NaCl, because Na+ and Cl- are smaller than Mg2+ and O2-, so their ions are packed more tightly in the lattice
- NaCl, because Na+ has a higher charge than Mg2+, so its ions attract each other more strongly in the lattice
- MgO, because Mg2+ and O2- are more highly charged and smaller than Na+ and Cl-
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Why is the second electron affinity of oxygen endothermic?
- The second electron removes a proton from the oxide ion, which requires energy
- The second electron is added to a neutral atom, which releases energy only if it is filled
- The second electron is added to a negative ion, so it must overcome electrostatic repulsion
- The second electron is shared by two oxygen atoms, which requires energy to break a bond
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Which pair of values shows that LiF has a more exothermic lattice enthalpy than NaF?
- Li+ and Na+ have the same radius, so the lattice enthalpies are equal in size
- Li+ is more highly charged than Na+, which reduces the lattice enthalpy
- Li+ is larger than Na+, so its charge density is lower and the lattice is more strongly held
- Li+ is smaller than Na+, so its charge density is higher and the lattice is more strongly held
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The standard enthalpy of solution of an ionic compound can be found from lattice enthalpy and hydration enthalpies. For NaCl with lattice dissociation enthalpy +787 kJ/mol and hydration enthalpies Na+ = -406 and Cl- = -364 kJ/mol, what is the enthalpy of solution?
- -1153 kJ/mol
- +1153 kJ/mol
- +17 kJ/mol
- -17 kJ/mol
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Which Born-Haber step is an enthalpy of formation for the element and not a lattice term?
- The formation of the element in its standard state from the element, as in delta Hf
- The conversion of gaseous ions into a solid lattice, which releases the energy that the cycle is designed to measure
- The addition of one electron to each gaseous atom to form an anion, which always absorbs energy in every cycle
- The removal of one electron from each gaseous atom to form a cation, which always absorbs energy in every cycle
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Which statement about the first electron affinity of chlorine, -349 kJ/mol, is correct?
- Energy is absorbed when one mole of gaseous chlorine atoms gains one electron each
- Energy is absorbed when one mole of solid chlorine is converted to gaseous atoms
- Energy is released when one mole of chloride ions loses one electron each
- Energy is released when one mole of gaseous chlorine atoms gains one electron each
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For NaCl, the lattice formation enthalpy is -787 kJ/mol. What is the lattice dissociation enthalpy of NaCl?
- -787 kJ/mol
- +411 kJ/mol
- +787 kJ/mol
- +376 kJ/mol
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Why is the second ionisation energy of an element always larger than its first ionisation energy?
- The second electron is removed from a neutral atom, which has more protons than the first
- The second electron is removed from an atom that has gained a proton from the solvent
- The second electron is removed from a positive ion, so it is held more strongly than the first
- The second electron is in a higher energy shell, which is always more easily removed
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