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CH3F NH3 Boilin Point oc -141.2 -77.7 I. Both molecular compounds are capable of making hydrogen bonds in their liquid states. Il. CH3F has higher molecular mass therefore boils

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Page 1: CH3F NH3 Boilin Point oc -141.2 -77.7 I. Both molecular compounds are capable of making hydrogen bonds in their liquid states. Il. CH3F has higher molecular mass therefore boils
Page 2: CH3F NH3 Boilin Point oc -141.2 -77.7 I. Both molecular compounds are capable of making hydrogen bonds in their liquid states. Il. CH3F has higher molecular mass therefore boils
Page 3: CH3F NH3 Boilin Point oc -141.2 -77.7 I. Both molecular compounds are capable of making hydrogen bonds in their liquid states. Il. CH3F has higher molecular mass therefore boils
Page 4: CH3F NH3 Boilin Point oc -141.2 -77.7 I. Both molecular compounds are capable of making hydrogen bonds in their liquid states. Il. CH3F has higher molecular mass therefore boils
Page 5: CH3F NH3 Boilin Point oc -141.2 -77.7 I. Both molecular compounds are capable of making hydrogen bonds in their liquid states. Il. CH3F has higher molecular mass therefore boils
Page 6: CH3F NH3 Boilin Point oc -141.2 -77.7 I. Both molecular compounds are capable of making hydrogen bonds in their liquid states. Il. CH3F has higher molecular mass therefore boils
Page 7: CH3F NH3 Boilin Point oc -141.2 -77.7 I. Both molecular compounds are capable of making hydrogen bonds in their liquid states. Il. CH3F has higher molecular mass therefore boils
Page 8: CH3F NH3 Boilin Point oc -141.2 -77.7 I. Both molecular compounds are capable of making hydrogen bonds in their liquid states. Il. CH3F has higher molecular mass therefore boils