In an ionic compound, the size of the ions affects the internuclear distance (the distance between the centers of adjacent ions), which affects lattice energy (a measure of the attractive force holding those ions together). Based on ion sizes, arrange these compounds by their expected lattice energy. Note that many sources define lattice energies as negative values. Please arrange by magnitude and ignore the sign. lattice energy = absolute value of the lattice energy CsF Greatest lattice energy (strongest bonds) Least lattice energy (weakest bonds) CsBr Answer Bank CsCl CsI

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Chapter1: Chemical Foundations
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In an ionic compound, the size of the ions affects the internuclear distance (the distance between the centers of adjacent ions),
which affects lattice energy (a measure of the attractive force holding those ions together).
Based on ion sizes, arrange these compounds by their expected lattice energy.
Note that many sources define lattice energies as negative values. Please arrange by magnitude and ignore the sign.
|lattice energy| = absolute value of the lattice energy
CSF
Greatest lattice energy
(strongest bonds)
Least lattice energy
(weakest bonds)
CsBr
Answer Bank
CsCl
CSI
Transcribed Image Text:In an ionic compound, the size of the ions affects the internuclear distance (the distance between the centers of adjacent ions), which affects lattice energy (a measure of the attractive force holding those ions together). Based on ion sizes, arrange these compounds by their expected lattice energy. Note that many sources define lattice energies as negative values. Please arrange by magnitude and ignore the sign. |lattice energy| = absolute value of the lattice energy CSF Greatest lattice energy (strongest bonds) Least lattice energy (weakest bonds) CsBr Answer Bank CsCl CSI
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