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10 solutions

Molecular vs Electron Geometry

Q. Determine the electron-group arrangement, molecular shape. and ideal bond angle for the following molecule: PH3 Electron-group arrangement: V-shaped trigonal pyramidal tetrahedral trigonal planar Molecular shape: T shaped bent trigonal pyramidal tetrahedral Ideal bond angle:

Solved • Jul 25, 2019

Molecular vs Electron Geometry

Q. Deter Mine the electron-group arrangement. shape. and ideal bond angle of the lotion mg: NO2- Electron-group arrangement: seesaw trigonal planar trigonal pyramidal bent(V-shaped) Shape: Bent(V-shaped) trigonal planar T-shaped tetrahedral Ideal Bond Angle:

Solved • Jul 25, 2019

Molecular vs Electron Geometry

Q. Determine the electron-group arrangement, shape, and ideal bond angle of the following: SO42 Electron-group arrangement: trigonal pyramidal trigonal planar tetrahedral V shaped shape: trigonal pyramidal bent T-shaped tetrahedral Ideal Bond Angle:

Solved • Jul 25, 2019

Molecular vs Electron Geometry

Q. Use VSEPR theory to predict the molecular geometry of BrF5. a. tetrahedral b. see-saw c. trigonal-bipyramidal d. square-pyramidal e. octahedral

Solved • Jul 8, 2019

Molecular vs Electron Geometry

Q. A molecule with the formula AX3 could have one of several different shapes. Give the shape and the hybridization of the central A atom for the structure below. (In this structure, the central atom, A, is yellow, while its ligands, X, are red. Non-bonding electron domains, if present, are colored white. You may rotate the model by dragging your cursor across the frame.) Shape: linear, trigonal planar, bent, tetrahedral, trigonal pyramidal, trigonal bipyramidal, seesaw, T-shaped, octahedral, square pyramidal, square planar Hybridization: sp, sp2, sp3, sp3d, sp3d2

Solved • Jul 1, 2019

Molecular vs Electron Geometry

Q. draw the structure for the formate ion. determine both the electron geometry and molecular geometry

Solved • May 27, 2019

Molecular vs Electron Geometry

Q. In determining electron geometry, why do we consider only the electron groups on the central atom? In other words, why don’t we consider electron groups on terminal atoms?

Solved • Apr 30, 2019