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Lattice energy is the energy change when 1mol of an [blank_start]ionic[blank_end] compound is formed from its [blank_start]gaseous[blank_end] ions under [blank_start]standard conditions.[blank_end]
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ionic
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gaseous
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standard conditions
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Values of lattice energy are
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Enthalpy change of atomisation is the enthalpy change when 1mol of gaseous ions is formed from the [blank_start]element[blank_end] in its [blank_start]standard state.[blank_end]
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First electron affinity is the enthalpy change when one [blank_start]e-[blank_end] is added to each [blank_start]gaseous[blank_end] atom in 1 mol to form 1 mol of -1 gaseous [blank_start]ions[blank_end].
Frage 5
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What are the factors that affect lattice enthalpy?
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Charge on the ions
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Amount of ions present
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Temperature
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Radius of the ions
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The [blank_start]higher[blank_end] the charge on the ion the [blank_start]higher[blank_end] the lattice enthalpy.
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higher
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lower
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higher
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lower
Frage 7
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Enthalpy of hydration is the [blank_start]heat[blank_end] change when 1 mol of gaseous ions completely dissolve in [blank_start]water.[blank_end]
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Label the Born Haber Cycle with the process occurring at each stage.
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Lattice Enthalpy
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1st Electron Affinity
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Enthalpy of Atomisation
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1st Ionisation Energy
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2nd Ionisation Energy
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Lattice Enthalpy
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1st Electron Affinity
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Enthalpy of Atomisation
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Enthalpy of Formation
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1st Ionisation Energy
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2nd Ionisation Energy
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Enthalpy of Formation
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Lattice Enthalpy
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1st Electron Affinity
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Enthalpy of Atomisation
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1st Ionisation Energy
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2nd Ionisation Energy
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Enthalpy of Formation
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Lattice Enthalpy
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1st Electron Affinity
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Enthalpy of Atomisation
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1st Ionisation Energy
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2nd Ionisation Energy
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Enthalpy of Formation
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Lattice Enthalpy
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1st Electron Affinity
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Enthalpy of Atomisation
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1st Ionisation Energy
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2nd Ionisation Energy
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Enthalpy of Formation
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Lattice Enthalpy
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1st Electron Affinity
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Enthalpy of Atomisation
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1st Ionisation Energy
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2nd Ionisation Energy
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Enthalpy of Formation
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[blank_start]Enthalpy of Solution[blank_end] is the heat change when 1 mol of an ionic substance dissolves in water
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An ionic lattice dissloves in water because water molecules disrupt the attraction between [blank_start]cations[blank_end] and [blank_start]anions[blank_end] in the lattice. Cations become surrounded by the [blank_start]negative[blank_end] part of the water molecules. Anions become surrounded by the [blank_start]positive[blank_end] part of the water molecules.
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cations
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anions
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negative
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positive
Frage 11
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Enthalpy of Hydration is ...
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Entropy is the measure of the [blank_start]disorder[blank_end] of a [blank_start]system[blank_end].
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A disorder increases entropy...
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decreases
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increases
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can't tell
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is unchanged
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Entropy decreases as the solid becomes more complex.
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Entropy [blank_start]increases[blank_end] from solid to liquid to gas because molecules become [blank_start]more disordered[blank_end].
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increases
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more disordered
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There is only a small jump in entropy from ice to water despite the state change as the [blank_start]hydrogen bonding[blank_end] means water is still relatively [blank_start]ordered[blank_end].
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Which factors cause a change in entropy
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temperature change
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addition of a catalyst
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change in volume
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number of gas molecules
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state change
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concentration change
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If Gibbs Free Energy is 0 this means
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the substance is an element or the reaction is at equilibrium
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the reaction is spontaneous
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work must be supplied from the surroundings for the reaction to occur
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If Gibbs Free Energy is less than 0 this means...
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the substance is an element or the reaction is at equilibrium
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the reaction is spontaneous
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work must be supplied from the surroundings for the reaction to occur
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If Gibbs Free Energy is greater than 0 this means...
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the substance is an element of the reaction is at equilibrium
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the reaction is spontaneous
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work must be supplied from the surrounding for the reaction to occur
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If delta (the little triangle symbol) G is negative delta S must be [blank_start]positive[blank_end] and delta H [blank_start]negative[blank_end]. The reaction will be spontaneous.
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If total entropy is positive the reaction is [blank_start]feasible[blank_end].
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total entropy = entropy of [blank_start]surroundings[blank_end] + entropy of [blank_start]system[blank_end]