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Simulating Electronic Absorption Spectra of Atmospherically Relevant Molecules: A Systematic Assignment for Enhancing Undergraduate STEM Education

Title: Simulating Electronic Absorption Spectra of Atmospherically Relevant Molecules: A Systematic Assignment for Enhancing Undergraduate STEM Education
Authors: Stelz-Sullivan, Eleanor J.; Marchetti, Barbara; Karsili, Tolga
Source: Education Sciences. 2022 12.
Availability: MDPI AG. Klybeckstrasse 64, 4057 Basel, Switzerland. e-mail: education@mdpi.com; e-mail: indexing@mdpi.com; Web site: https://www.mdpi.com/journal/education
Peer Reviewed: Y
Page Count: 12
Publication Date: 2022
Sponsoring Agency: National Science Foundation (NSF)
Contract Number: 2003422
Document Type: Journal Articles; Reports - Descriptive
Education Level: Higher Education; Postsecondary Education
Descriptors: Computation; Chemistry; Science Education; Simulation; Undergraduate Students; College Science; Science Curriculum; Scientific Concepts; Computer Simulation; Computer Assisted Instruction; Science Laboratories; Hands on Science; Spectroscopy; Curriculum Development
ISSN: 2227-7102
Abstract: Computational and atmospheric chemistry are two important branches of contemporary chemistry. With the present topical nature of climate change and global warming, it is more crucial than ever that students are aware of and exposed to atmospheric chemistry, with an emphasis on how modeling may aid in understanding how atmospherically relevant chemical compounds interact with incoming solar radiation. Nonetheless, computational and atmospheric chemistry are under-represented in most undergraduate chemistry curricula. In this manuscript, we describe a simple and efficient method for simulating the electronic absorption spectral profiles of atmospherically relevant molecules that may be utilized in an undergraduate computer laboratory. The laboratory results give students hands-on experience in computational and atmospheric chemistry, as well as electronic absorption spectroscopy.
Abstractor: As Provided
Entry Date: 2022
Accession Number: EJ1353924
Database: ERIC