Data Sheet V Polarity Electrostatic Potential Surface Including Dipole Vector from Spartan (draw using colored pencils or insert screenshots) Species H,0 ΔΕΝ (Ο-Η): water Dipole moment (in D): Polar? NH, ammonia AEN (N-H): Dipole moment (in D): Polar? NF, AEN (N-F): nitrogen trifluoride Dipole moment (in D): Polar? Compare the dipole moments (magnitude and direction relative to lone pairs) of H¿0, NH3 and NF.

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Chapter1: Chemical Foundations
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General Chemistry II, Spring 2021
Data Sheet V
Species
Polarity
Electrostatic Potential Surface Including Dipole Vector from Spartan
(draw using colored pencils or insert screenshots)
H20
ΔΕΝ (Ο-Η):
water
Dipole moment (in D):
Polar?
NH3
ΔΕΝ (N-Η):
ammonia
Dipole moment (in D):
Polar?
NF3
ΔΕΝ (N-F) :
nitrogen
trifluoride
Dipole moment (in D):
Polar?
Compare the dipole moments (magnitude and direction relative to lone pairs) of H;O, NH3 and NF3.
Explain any differences and similarities.
11
Transcribed Image Text:General Chemistry II, Spring 2021 Data Sheet V Species Polarity Electrostatic Potential Surface Including Dipole Vector from Spartan (draw using colored pencils or insert screenshots) H20 ΔΕΝ (Ο-Η): water Dipole moment (in D): Polar? NH3 ΔΕΝ (N-Η): ammonia Dipole moment (in D): Polar? NF3 ΔΕΝ (N-F) : nitrogen trifluoride Dipole moment (in D): Polar? Compare the dipole moments (magnitude and direction relative to lone pairs) of H;O, NH3 and NF3. Explain any differences and similarities. 11
Expert Solution
Step 1 Analysis

Given: Three molecules H2O, NH3 and NF3

To find: To write about polarity, electronegativity, dipole moment and to draw the vectors.

Solution: Electronegativity means the tendency of the more electronegative atom to attract the electrons towards itself. Dipole moment means the separation of the charges, the more electronegative atom will get partially negative charge and the less electronegative atom will get the positive charge. 

If there is difference between the electronegativity of the two atoms then the bond will be polar and the molecule is said to be polar molecule.

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