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 Department: Chemistry
 Resource Type: Presentation
 Collection: UNT Scholarly Works
The correlation-consistent composite approach: Implementation of the resolution-of-the-identity approximation

The correlation-consistent composite approach: Implementation of the resolution-of-the-identity approximation

Date: April 2, 2009
Creator: Lai, Jeremy; Wilson, Angela K. & Prascher, Brian
Description: This presentation discusses research on the correlation-consistent composite approach (ccCA). This research experiment tested RI-ccCA with G2/97 test set, over 100 second-row and third-row molecules, used Molpro, a computational chemistry software package, and the University of North Texas (UNT) Department of Chemistry's CRUNTCh supercomputers.
Contributing Partner: UNT Honors College
The Possible Existence of Molecules BrKrCCKrBr and FKrCCKrCCKrF

The Possible Existence of Molecules BrKrCCKrBr and FKrCCKrCCKrF

Date: April 2, 2009
Creator: Shi, Katheryn; Wilson, Angela K. & Wilson, Brent
Description: This presentation discusses research on the possible existence of molecules BrKrCCKrBr and FKrCCKrCCKrF.
Contributing Partner: UNT Honors College
Quantum Mechanical Prediction of the Existence of Rare Gas-bound Species

Quantum Mechanical Prediction of the Existence of Rare Gas-bound Species

Date: April 15, 2010
Creator: Shi, Katheryn; Wilson, Angela K. & Wilson, Brent
Description: This presentation discusses research on the quantum mechanical prediction of the existence of rare gas-bound species.
Contributing Partner: UNT Honors College
Synthesis and Characterization of Nickel and Nickel Hydroxide Nanopowders

Synthesis and Characterization of Nickel and Nickel Hydroxide Nanopowders

Date: March 30, 2006
Creator: Huang, Catherine & Golden, Teresa
Description: This presentation discusses the synthesis and characterization of nickel and nickel hydroxide nanopowders. Nickel, Ni, and nickel hydroxide, Ni(OH)₂, powders with nanosized particles were synthesized using a chemical method. The polymer Poly(vinyl pyrrolidone) or PVP was added to solutions of Ni for purposes of particle protection. X-Ray analysis revealed the size of Ni(OH)₂ particles to be approximately 19 nanometers in diameter and the sizes of Ni particles to be between 7 and 12 nm.
Contributing Partner: UNT Honors College
Teaching Students Organic Chemistry: QEP III Next Generation Course Redesign™

Teaching Students Organic Chemistry: QEP III Next Generation Course Redesign™

Date: April 15, 2010
Creator: Lavezo, Jonathan L. & Dandekar, Sushama Ashok
Description: This presentation accompanies a paper discussing research on teaching students organic chemistry. During the summer of 2009, Dr. Sushama Dandekar and a group of undergraduate researchers worked to redesign Organic Chemistry I (CHEM 2370). The learning outcomes for the course were reassessed, and then matched to all exam materials. After determining that the student learning outcomes were tested effectively, a proposed analysis of the course was examined. An overview of the redesigned course material and the philosophy of learning used in the redesign are also discussed.
Contributing Partner: UNT Honors College