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How do non-bonded electron pairs help determine the shape of molecules? - Answers

Non bonded pairs have a higher force of repulsion than bonded pairs, as the bonded pairs also feel the pull of another positive nucleus. The shape of a molecule is distorted. 2 example - NH3 (one lone pair) & H2O (2 lone pairs). NH3 is trigonal pyramidal while H2O is bent.



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How do non-bonded electron pairs help determine the shape of molecules? - Answers

https://math.answers.com/math-and-arithmetic/How_do_non-bonded_electron_pairs_help_determine_the_shape_of_molecules

Non bonded pairs have a higher force of repulsion than bonded pairs, as the bonded pairs also feel the pull of another positive nucleus. The shape of a molecule is distorted. 2 example - NH3 (one lone pair) & H2O (2 lone pairs). NH3 is trigonal pyramidal while H2O is bent.



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https://math.answers.com/math-and-arithmetic/How_do_non-bonded_electron_pairs_help_determine_the_shape_of_molecules

How do non-bonded electron pairs help determine the shape of molecules? - Answers

Non bonded pairs have a higher force of repulsion than bonded pairs, as the bonded pairs also feel the pull of another positive nucleus. The shape of a molecule is distorted. 2 example - NH3 (one lone pair) & H2O (2 lone pairs). NH3 is trigonal pyramidal while H2O is bent.

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      Non bonded pairs have a higher force of repulsion than bonded pairs, as the bonded pairs also feel the pull of another positive nucleus. The shape of a molecule is distorted. 2 example - NH3 (one lone pair) & H2O (2 lone pairs). NH3 is trigonal pyramidal while H2O is bent.
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