using the vsepr model, predict the electron domain geometry and the molecular geometry of each species…

using the vsepr model, predict the electron domain geometry and the molecular geometry of each species (bent, linear, octahedral, seesaw, square planar, square pyramidal, t - shaped, tetrahedral, trigonal bipyramidal, trigonal planar, or trigonal pyramidal).\npart 1 of 4\nso₂\nelectron domain geometry: trigonal planar\nmolecular geometry: bent\npart 2 of 4\nsf₆\nelectron domain geometry: octahedral\nmolecular geometry: octahedral\npart 3 of 4\nclf₃\nelectron domain geometry: select\nmolecular geometry: select

using the vsepr model, predict the electron domain geometry and the molecular geometry of each species (bent, linear, octahedral, seesaw, square planar, square pyramidal, t - shaped, tetrahedral, trigonal bipyramidal, trigonal planar, or trigonal pyramidal).\npart 1 of 4\nso₂\nelectron domain geometry: trigonal planar\nmolecular geometry: bent\npart 2 of 4\nsf₆\nelectron domain geometry: octahedral\nmolecular geometry: octahedral\npart 3 of 4\nclf₃\nelectron domain geometry: select\nmolecular geometry: select

Answer

Explanation:

Step1: Determine central atom

In $ClF_3$, chlorine (Cl) is the central atom.

Step2: Calculate electron - domains

Chlorine has 7 valence electrons. It forms 3 bonds with fluorine atoms and has 2 lone - pairs. The total number of electron domains around Cl is $3 + 2=5$.

Step3: Find electron - domain geometry

With 5 electron domains, the electron - domain geometry is trigonal bipyramidal.

Step4: Determine molecular geometry

The presence of 2 lone - pairs in a trigonal bipyramidal electron - domain geometry gives a T - shaped molecular geometry.

Answer:

Electron Domain Geometry: trigonal bipyramidal Molecular Geometry: T - shaped