Pf3i2 is a nonpolar molecule. based on this information, determine the f−p−f bond angle, the i−p−i bond angle, and the f−p−i bond angle

Respuesta :

The nonpolar molecule is with an electrostatic potential that is spherically symmetric if averaged across time, since electrons fluctuate, temporary dipoles exist anywhere at a given instant in a nonpolar molecule.

[tex]\to \bold{F-P-F}[/tex] bond angle is [tex]\bold{120^{\circ}}[/tex]

[tex]\to \bold{Cl-P-Cl}[/tex] bond angle is [tex]\bold{180^{\circ}}[/tex]

[tex]\to \bold{F-P-Cl }[/tex] bond angle is [tex]\bold{90^{\circ}}[/tex]

  • Its combination is made up of a mixture bound together by chemical bonds & arranged in such a way that the arrangement of charge is symmetrical.
  • The Nonpolar substances lack polarity. In a solution, they will not transform into ions.
  • When certain bond angles occur in molecules, its net dipole moment cancels out and the molecule becomes non-polar.

Therefore, the angle is "[tex]\bold{120^{\circ}}[/tex] , [tex]\bold{180^{\circ}}[/tex] , and [tex]\bold{90^{\circ}}[/tex]".

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PF3I2 is a trigonal bipyramidal molecule whose image is shown in the answer below.

The molecule PF3I2 is trigonal bipyramidal. A trigonal pyramidal molecule has two axial bonds and three equatorial bonds. The two iodine atoms are positioned at axial positions while the fluorine atoms are positioned at equatorial positions.

The molecule is nonpolar because the individual dipoles due to fluorine and iodine atoms cancel out. Looking at the structure of the molecule;

  • The F - P - F bond angle is 120°
  • The I - P - I bond angle is 180°
  • The I - P - F bond angle is 90°

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