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What is the molecular structure of the stable form of $\mathrm{FNO}_{2} ?(\mathrm{N} \text { is the central atom.) }$
00:39
Aadit S.
Chemistry 101
Chapter 7
Chemical Bonding and Molecular Geometry
Chemical Bonding
Molecular Geometry
University of Maryland - University College
Brown University
University of Toronto
Lectures
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In chemistry, a chemical b…
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In chemistry, a molecular …
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What is the hybridization …
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01:44
Dinitrogen difluoride, $\m…
04:34
Sketch the resonance struc…
04:03
Draw two resonance structu…
03:10
01:27
Write the Lewis structure …
01:19
Determine the electron and…
01:37
What is the molecular stru…
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02:18
Nitrogen is the central at…
01:30
Determine the molecular ge…
01:41
01:15
What is the electron-pair …
01:14
What is the geometry aroun…
01:48
In $\mathrm{N}_{2} \mathrm…
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Draw the Lewis structure f…
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Complete the Lewis structu…
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Predict the electron pair …
question 110 simply asks you to determine the molecular structure for the stable form of F N 02 where nitrogen is the central atom well. First, draw the Louis structure. Flooring has seven valence electrons nitrogen, five oxygen six and there, two of them for a total of 24 valence electrons. If we bond the two oxygen's and the one flooring to nitrogen that six valence electrons used, we have 18 left. 18 would satisfy the octet six on each of the peripheral atoms, but we wouldn't have an octet on nitrogen. So one of these oxygen's needs thio habits. Lone pair become a bonding pair. We could then have to resident structures another one where the double bond is found. Between this oxygen and nitrogen, we see that we have three electron groups surrounding nitrogen. Two of them are single bonds. One is a double bond. We counted double bond or a triple. Bonds still has one group, so we have an electron group geometry. That's tribunal plainer because there are no a lone pairs on nitrogen than the molecular structure is also tribunal planner
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