The Lewis structure for XeF + needs to be drawn. Concept Introduction : Lewis structure is used to show the arrangement of atoms in the molecule. The lone pair of electrons are represented as dots above the symbol of the atoms of element. The formal charge can be calculated by using the following expression as follows: Formal charge = total valence electrons – electrons in lone pairs – 1 2 ( total electrons present in bonding pairs )
The Lewis structure for XeF + needs to be drawn. Concept Introduction : Lewis structure is used to show the arrangement of atoms in the molecule. The lone pair of electrons are represented as dots above the symbol of the atoms of element. The formal charge can be calculated by using the following expression as follows: Formal charge = total valence electrons – electrons in lone pairs – 1 2 ( total electrons present in bonding pairs )
Solution Summary: The author explains how the Lewis structure for XeF+ needs to be drawn.
Concept Introduction: Lewis structure is used to show the arrangement of atoms in the molecule. The lone pair of electrons are represented as dots above the symbol of the atoms of element.
The formal charge can be calculated by using the following expression as follows:
Formal charge = total valence electrons – electrons in lone pairs – 12(total electrons present in bonding pairs)
(b)
Interpretation Introduction
Interpretation: A Lewis structure for the molecule XeF2needs to be drawn.
Concept Introduction: Lewis structure is used to show the arrangement of atoms in the molecule. The lone pair of electrons are represented as dots above the symbol of the atoms of element.
Lab Data
The distance entered is out of the expected range.
Check your calculations and conversion factors.
Verify your distance. Will the gas cloud be closer to the cotton ball with HCI or NH3?
Did you report your data to the correct number of significant figures?
- X
Experimental Set-up
HCI-NH3
NH3-HCI
Longer Tube
Time elapsed (min)
5 (exact)
5 (exact)
Distance between cotton balls (cm)
24.30
24.40
Distance to cloud (cm)
9.70
14.16
Distance traveled by HCI (cm)
9.70
9.80
Distance traveled by NH3 (cm)
14.60
14.50
Diffusion rate of HCI (cm/hr)
116
118
Diffusion rate of NH3 (cm/hr)
175.2
175.2
How to measure distance and calculate rate
For the titration of a divalent metal ion (M2+) with EDTA, the stoichiometry of the reaction is typically:
1:1 (one mole of EDTA per mole of metal ion)
2:1 (two moles of EDTA per mole of metal ion)
1:2 (one mole of EDTA per two moles of metal ion)
None of the above
Please help me solve this reaction.
Chapter 3 Solutions
Bundle: Principles of Modern Chemistry, Loose-leaf Version, 8th + LMS Integrated for OWLv2 with MindTap Reader, 4 terms (24 months) Printed Access Card
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INTRODUCTION TO MOLECULAR QUANTUM MECHANICS -Valence bond theory - 1; Author: AGK Chemistry;https://www.youtube.com/watch?v=U8kPBPqDIwM;License: Standard YouTube License, CC-BY