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Question: Which molecule has a trigonal planar geometry? A. \(I{F_3}\) B. \(PC{l_3}\) C. \(N{H_3}\) D...

Which molecule has a trigonal planar geometry?
A. IF3I{F_3}
B. PCl3PC{l_3}
C. NH3N{H_3}
D. BF3B{F_3}

Explanation

Solution

The molecular geometry of a molecule gives the general shape, bend angles, Torsional angles, bond lengths etc. the Propertius like polarity, reactivity, Colour, state of matter etc. can be determined by knouting the molecular geometry of the molecule.

Complete step by step answer: The molecular geometry is determined with the help of some special techniques named as spectroscopic and diffraction methods, example: XRay,X - Ray, NMR,  1RNMR,\;1R, Raman spectroscopy etc.
The geometry of individual molecules is discussed below:-
- IF3I{F_3}

According to VSEPR{\text{VSEPR}}, Theory, geometry of IF3I{F_3}is trigonal bi pyramidal.
-PCl3PC{l_3}

According to VSEPRVSEPRTheory geometry of PCl3PC{l_3} is trigonal pyramidal.
-NH3N{H_3}

According to VSEPRVSEPRTheory geometry of NH3N{H_3} is trigonal pyramidal.
- BF3B{F_3}

According to VSEPRVSEPRTheory geometry of BF3B{F_3} is trigonal planar.
BF3B{F_3} or Boron trifluoride is an organic compound with a pungent smell, it is a colorless, poisonous gas.
BF3B{F_3} does not have any lone pair, the three FFatoms are arranged around central Boron at a bond angle of 120o{120^{o} }and bond length of 130o{130^{o} }.
Many other molecules such as formaldehyde (CH2O),\left( {C{H_2}O} \right),sulfur trioxide (SO3)\left( {S{O_3}} \right), phosgene (COCl2),\left( {COC{l_2}} \right),ozone (O3)\left( {{O_3}} \right)etc. have similar trigonal planar geometry.
Hence, the correct option is (D)BF3.\left( D \right)B{F_{3.}}

Note: VSEPRVSEPR is a short form of the valence shell electron pair repulsion theory. This theory. Can predict the geometry of many molecules, especially those belonging to the p – block, in VSEPRVSEPR theory, the geometry of a molecule atom. The geometry of a molecule depends upon the number of valence shell electrons around the central atom.
The pairs of electrons try to occupy minimum repulsion and maximal distance orientation in space.