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Ammonia, NH_(3) Electronegativities: N __ H __ Difference __ Polar or nonpolar bond? __ Electron dot diagram Structural formula Shape Polar or Nonpolar Molecule?

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Ammonia, NH_(3)
Electronegativities: N __ H __ Difference __ Polar or nonpolar bond? __
Electron dot diagram	Structural formula	Shape	Polar or Nonpolar Molecule?

Ammonia, NH_(3) Electronegativities: N __ H __ Difference __ Polar or nonpolar bond? __ Electron dot diagram Structural formula Shape Polar or Nonpolar Molecule?

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XantheElite · Tutor for 8 years

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1. Nitrogen (N) has an electronegativity of 3.04 whereas Hydrogen (H) has an electronegativity of 2.2; thus the difference is 0.84.<br />2. This makes the bond between Nitrogen and Hydrogen a polar bond.<br />3. The electron dot diagram for ammonia (NH3), would consist of Nitrogen at the center surrounded by 8 electrons (with two pairs of shared electrons producing bonds with Hydrogen atoms).<br />4. The structural formula for NH3 is N-H structure.<br />5. NH3 adopts trigonal pyramidal shape. <br />6. NH3 is also a polar molecule due to the geometric orientation of the polar bonds.

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## Step 1<br />Electronegativity refers to the attraction of atoms towards electrons in a molecule. The higher the number, the greater the pull.<br /><br />## Step 2<br />Nitrogen has an electronegativity value of 3.04 while Hydrogen has an electronegativity value of 2.2. Therefore, the difference in electronegativity between Nitrogen and Hydrogen is 0.84.<br /><br />## Step 3<br />A nonpolar bond typically exists when two atoms that have the same electronegativity, and a strongly actually between atoms with an electronegativity deviation of at least 1.0. With an electronegativity difference of 0.84, though, is still within the scale classified as a polar bond.<br /><br />## Step 4<br />A nonpolar molecule is when the electric charges distribute symmetrically in a spherically shaped molecule. A polar molecule contains polar bonds but does not distribute electrical charges symmetrically, leading to an electric field throughout the molecule.<br /><br />## Step 5<br />Three hydrogen atoms form a covalent bond with one nitrogen to form an ammonia molecule, providing the structural formula NHa. Having, on the one hand, three hydrogen atoms bonding with a nitrogen from a molecular shape predictive of chemistry's "VSEPR" theory accounts for the shape as pyramidal.<br /><br />## Step 6<br />The resulting nitrogen atom, expressed with more electronegativity than hydrogen, pulls the positive hydrogen atoms meaning the entire molecular structure of nitrogen in one direction from that of three hydrogen atoms in agreement. This creates a charged molecule with opposite poles and reveals that– despite having polar bonds – an ammonia molecule is indeed a polar molecule.
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