Choose the selection which describes an electron-domain geometry and number of pairs of nonbonding electrons located in the valence shell of the central atom which is consistent with a molecule having the molecular geometry shown in the above figure.

Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Choose the selection which describes an electron-domain geometry and number of pairs of nonbonding electrons located in the valence shell of the central atom which is consistent with a molecule having the molecular geometry shown in the above figure.



a) The electron-domain geometry is tetrahedral. The number of nonbonding pairs is 2.
b) The electron-domain geometry is tetrahedral. The number of nonbonding pairs is 1.
c) The electron-domain geometry is trigonal bipyramidal. The number of nonbonding pairs is 1.
d) The electron-domain geometry is trigonal bipyramidal. The number of nonbonding pairs is 2.
e) The electron-domain geometry is tetrahedral. The number of nonbonding pairs is 4.
Choose the selection which describes an electron-domain geometry and number of pairs of nonbonding electrons located in the valence shell of the central atom which is consistent with a molecule having the
molecular geometry shown in the above figure.
O a) The electron-domain geometry is tetrahedral. The number of nonbonding pairs is 2.
O b) The electron-domain geometry is tetrahedral. The number of nonbonding pairs is 1.
O c) The electron-domain geometry is trigonal bipyramidal. The number of nonbonding pairs is 1.
O d) The electron-domain geometry is trigonal bipyramidal. The number of nonbonding pairs is 2.
O e) The electron-domain geometry is tetrahedral. The number of nonbonding pairs is 4.
Transcribed Image Text:Choose the selection which describes an electron-domain geometry and number of pairs of nonbonding electrons located in the valence shell of the central atom which is consistent with a molecule having the molecular geometry shown in the above figure. O a) The electron-domain geometry is tetrahedral. The number of nonbonding pairs is 2. O b) The electron-domain geometry is tetrahedral. The number of nonbonding pairs is 1. O c) The electron-domain geometry is trigonal bipyramidal. The number of nonbonding pairs is 1. O d) The electron-domain geometry is trigonal bipyramidal. The number of nonbonding pairs is 2. O e) The electron-domain geometry is tetrahedral. The number of nonbonding pairs is 4.
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