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For the textbook, chapter, and section you specified we found
2 Assessment Questions
4 Molecular Structures
31 Journal Articles
3 Other Resources
Assessment Questions: 2 results
Acids_and_Bases : LewisAcidBaseRxns (19 Variations)
Identify the Lewis Acid and Base in the reaction of Ag+ and NH3 to form Ag(NH3)2+
Acids / Bases |
Reactions |
Aqueous Solution Chemistry |
Lewis Acids / Bases
Acid Base (44 Variations)
A collection of 44 assessment questions about Acid Base
Acids / Bases |
Carboxylic Acids |
Alcohols |
Phenols |
Reactions |
Alkanes / Cycloalkanes |
Aldehydes / Ketones |
Esters |
Alkenes |
Alkynes |
Amines / Ammonium Compounds |
Ethers |
Lewis Acids / Bases |
Amides |
Amino Acids
Molecular Structures: First 3 results
Aluminum Chloride AlCl3

3D Structure

Link to PubChem

VSEPR Theory |
Lewis Acids / Bases

Boron Trichloride BCl3

3D Structure

Link to PubChem

VSEPR Theory |
Gases |
Lewis Acids / Bases

Boron Trifluoride BF3

3D Structure

Link to PubChem

VSEPR Theory |
Gases |
Lewis Acids / Bases

View all 4 results
Journal Articles: First 3 results.
Pedagogies:
The Discovery-Oriented Approach to Organic Chemistry. 7. Rearrangement of trans-Stilbene Oxide with Bismuth Trifluoromethanesulfonate and Other Metal Triflates  James E. Christensen, Matthew G. Huddle, Jamie L. Rogers, Herbie Yung, and Ram S. Mohan
Presents a microscale, green organic chemistry laboratory experiment that illustrates the utility of metal triflates, especially bismuth triflate, as a Lewis acid catalyst. Bismuth compounds are especially attractive for use as catalysts in organic synthesis because of their low toxicity, low cost, and ease of handling.
Christensen, James E.; Huddle, Matthew G.; Rogers, Jamie L.; Yung, Herbie; Mohan, Ram S. J. Chem. Educ. 2008, 85, 1274.
Catalysis |
Epoxides |
Green Chemistry |
Lewis Acids / Bases |
Mechanisms of Reactions |
Microscale Lab |
NMR Spectroscopy
Acylation of Ferrocene: A Greener Approach  Kurt R. Birdwhistell, Andy Nguyen, Eric J. Ramos, and Robert Kobelja
This article describes an acylation of ferrocene that is more eco-friendly than the conventional experiment, which has been modified by replacing mineral acid with a polymeric acid catalyst and using microwave instead of conventional heating.
Birdwhistell, Kurt R.; Nguyen, Andy; Ramos, Eric J.; Kobelja, Robert. J. Chem. Educ. 2008, 85, 261.
Catalysis |
Chromatography |
Green Chemistry |
Organometallics |
Synthesis |
Transition Elements |
Brønsted-Lowry Acids / Bases
Concerning Lewis Acid–Base Theory for Proton Transfer  Lawrence J. Sacks
Counterpoint commentary in response to a suggestion that the Lewis acidbase approach be applied to reactions such as ammoniawater and HClwater.
Sacks, Lawrence J. J. Chem. Educ. 2007, 84, 1415.
Acids / Bases |
Lewis Acids / Bases |
Theoretical Chemistry |
Brønsted-Lowry Acids / Bases
View all 31 articles
Other Resources: 3 results
ChemPaths 104 W Apr 6  John W. Moore
Today in Chem 104: * Lecture: Bronsted Acids and Bases * Reading: Kotz: Ch. 17, Sec. 3-5 Moore: Ch. 16, Sec. 3-5 * Homework #9 due by 11:55 PM F Apr 8 * Quiz in second discussion section this week * Lab this week is #10, Chemical Equilibrium and Thermodynamics
Brønsted-Lowry Acids / Bases
Lewis Acids and Bases  Ed Vitz, John W. Moore
A section of ChemPrime, the Chemical Educations Digital Library's free General Chemistry textbook.
Lewis Acids / Bases
ChemPaths 104 F Apr 15  John W. Moore
Today in Chem 104: * Lecture: Titration; Lewis Acids and Bases * Reading: Kotz: Ch. 18, Sec. 3; Ch. 17, Sec. 9 Moore: Ch. 17, Sec. 2; Ch. 16, Sec. * Homework #10 due by 11:55 PM tonight
Lewis Acids / Bases |
Titration / Volumetric Analysis