Faculty Profile

Gary Glass

Gary Glass

Title
Professor
Department
Physics
College
College of Science

    

Education

PhD, University of Tennessee, 1984.
Major: Physics
Dissertation Title: Electron Capture to the Continuum from Atomic Hydrogen.
MS, University of Louisiana at Lafayette, 1978.
Major: Physics
BS, University of Louisiana at Lafayette, 1976.
Major: Physics

Current Scheduled Teaching*

PHYS 6950.754, Doctoral Dissertation, Spring 2024
PHYS 1420.001, General Physics II, Spring 2024 Syllabus
PHYS 1420.201, General Physics II, Spring 2024 Syllabus
PHYS 1420.204, General Physics II, Spring 2024
PHYS 5930.751, Research Problems in Lieu of Thesis, Spring 2024

* Texas Education Code 51.974 (HB 2504) requires each institution of higher education to make available to the public, a syllabus for undergraduate lecture courses offered for credit by the institution.

Previous Scheduled Teaching*

PHYS 6950.762, Doctoral Dissertation, Fall 2023
PHYS 1410.001, General Physics I, Fall 2023 Syllabus SPOT
PHYS 1410.002, General Physics I, Fall 2023 SPOT
PHYS 1410.201, General Physics I, Fall 2023 SPOT
PHYS 1410.202, General Physics I, Fall 2023 SPOT
PHYS 1410.203, General Physics I, Fall 2023 SPOT
PHYS 5920.751, Research Problems in Lieu of Thesis, Fall 2023
PHYS 6950.700, Doctoral Dissertation, Summer 10W 2023
PHYS 6950.754, Doctoral Dissertation, Spring 2023
PHYS 1420.001, General Physics II, Spring 2023 Syllabus SPOT
PHYS 1420.201, General Physics II, Spring 2023
PHYS 6950.762, Doctoral Dissertation, Fall 2022
PHYS 1410.001, General Physics I, Fall 2022 Syllabus SPOT
PHYS 1410.002, General Physics I, Fall 2022 Syllabus SPOT
PHYS 1410.201, General Physics I, Fall 2022
PHYS 6940.750, Individual Research, Fall 2022
PHYS 6950.762, Doctoral Dissertation, Spring 2022
PHYS 1420.001, General Physics II, Spring 2022 Syllabus SPOT
PHYS 1420.201, General Physics II, Spring 2022
PHYS 6940.762, Individual Research, Spring 2022
PHYS 4955.702, Senior Thesis Capstone, Spring 2022
PHYS 4910.750, Special Problems, Spring 2022
PHYS 6950.762, Doctoral Dissertation, Fall 2021
PHYS 1410.001, General Physics I, Fall 2021 SPOT
PHYS 1410.002, General Physics I, Fall 2021 Syllabus SPOT
PHYS 1410.201, General Physics I, Fall 2021
PHYS 4950.700, Senior Thesis, Fall 2021
PHYS 6950.762, Doctoral Dissertation, Spring 2021
PHYS 1420.002, General Physics II, Spring 2021 Syllabus SPOT
PHYS 1420.202, General Physics II, Spring 2021
PHYS 6940.762, Individual Research, Spring 2021
PHYS 6950.762, Doctoral Dissertation, Fall 2020
PHYS 1410.002, General Physics I, Fall 2020 Syllabus SPOT
PHYS 1410.003, General Physics I, Fall 2020 Syllabus SPOT
PHYS 1410.202, General Physics I, Fall 2020
PHYS 6940.762, Individual Research, Fall 2020
PHYS 6950.762, Doctoral Dissertation, Spring 2020
PHYS 1420.001, General Physics II, Spring 2020 Syllabus
PHYS 1420.201, General Physics II, Spring 2020 Syllabus
PHYS 6940.762, Individual Research, Spring 2020
PHYS 4955.011, Senior Thesis Capstone, Spring 2020
PHYS 6950.762, Doctoral Dissertation, Fall 2019
PHYS 1410.002, General Physics I, Fall 2019 Syllabus SPOT
PHYS 1410.202, General Physics I, Fall 2019
PHYS 6940.762, Individual Research, Fall 2019
PHYS 4950.700, Senior Thesis, Fall 2019
PHYS 6940.001, Individual Research, Spring 8W2 2019
PHYS 6940.762, Individual Research, Spring 2019
PHYS 1710.002, Mechanics, Spring 2019 Syllabus SPOT
PHYS 1710.203, Mechanics, Spring 2019 SPOT
PHYS 1710.204, Mechanics, Spring 2019 SPOT
PHYS 1710.205, Mechanics, Spring 2019 SPOT
PHYS 1710.206, Mechanics, Spring 2019 SPOT
PHYS 1710.208, Mechanics, Spring 2019 SPOT
PHYS 5930.752, Research Problems in Lieu of Thesis, Spring 2019
PHYS 4955.011, Senior Thesis Capstone, Spring 2019
PHYS 1410.002, General Physics I, Fall 2018 Syllabus SPOT
PHYS 1410.202, General Physics I, Fall 2018
PHYS 6940.762, Individual Research, Fall 2018
PHYS 4950.700, Senior Thesis, Fall 2018
PHYS 1410.001, General Physics I, Spring 2018 Syllabus SPOT
PHYS 1410.201, General Physics I, Spring 2018 SPOT
PHYS 6940.762, Individual Research, Spring 2018
PHYS 5910.762, Special Problems, Spring 2018
PHYS 6950.762, Doctoral Dissertation, Fall 2017
PHYS 6940.762, Individual Research, Fall 2017
PHYS 1710.002, Mechanics, Fall 2017 Syllabus SPOT
PHYS 1710.204, Mechanics, Fall 2017 SPOT
PHYS 1710.210, Mechanics, Fall 2017 SPOT
PHYS 1710.211, Mechanics, Fall 2017 SPOT
PHYS 5900.762, Special Problems, Fall 2017
PHYS 6950.762, Doctoral Dissertation, Spring 2017
PHYS 1410.001, General Physics I, Spring 2017 Syllabus SPOT
PHYS 1410.201, General Physics I, Spring 2017 SPOT
PHYS 6940.762, Individual Research, Spring 2017
PHYS 5920.770, Research Problems in Lieu of Thesis, Spring 2017
PHYS 4950.001, Senior Thesis, Spring 2017
PHYS 4955.011, Senior Thesis Capstone, Spring 2017
PHYS 5910.762, Special Problems, Spring 2017
PHYS 6950.762, Doctoral Dissertation, Fall 2016
PHYS 6940.762, Individual Research, Fall 2016
PHYS 1710.001, Mechanics, Fall 2016 Syllabus SPOT
PHYS 1710.204, Mechanics, Fall 2016
PHYS 1710.208, Mechanics, Fall 2016
PHYS 1710.209, Mechanics, Fall 2016
PHYS 5910.762, Special Problems, Fall 2016
PHYS 6950.762, Doctoral Dissertation, Spring 2016
PHYS 1710.001, Mechanics, Spring 2016 Syllabus SPOT
PHYS 1710.201, Mechanics, Spring 2016 SPOT
PHYS 1710.202, Mechanics, Spring 2016 SPOT
PHYS 1710.206, Mechanics, Spring 2016 SPOT
PHYS 5900.762, Special Problems, Spring 2016
PHYS 5910.762, Special Problems, Spring 2016
PHYS 6950.762, Doctoral Dissertation, Fall 2015
PHYS 1710.004, Mechanics, Fall 2015 Syllabus SPOT
PHYS 1710.206, Mechanics, Fall 2015
PHYS 1710.207, Mechanics, Fall 2015
PHYS 1710.214, Mechanics, Fall 2015
PHYS 5900.762, Special Problems, Fall 2015
PHYS 5910.762, Special Problems, Fall 2015
PHYS 1410.001, General Physics I, Spring 2015 Syllabus
PHYS 1410.204, General Physics I, Spring 2015
PHYS 6940.762, Individual Research, Spring 2015
PHYS 5900.762, Special Problems, Spring 2015
PHYS 5910.762, Special Problems, Spring 2015
PHYS 1420.001, General Physics II, Fall 2014 Syllabus
PHYS 1420.201, General Physics II, Fall 2014
PHYS 6940.762, Individual Research, Fall 2014
PHYS 5910.762, Special Problems, Fall 2014
PHYS 2910.762, Special Problems, Summer 10W 2014
PHYS 1410.001, General Physics I, Spring 2014 Syllabus
PHYS 6940.762, Individual Research, Spring 2014
PHYS 5910.762, Special Problems, Spring 2014
PHYS 6910.762, Special Problems, Spring 2014
PHYS 1420.001, General Physics II, Fall 2013 Syllabus
PHYS 1420.201, General Physics II, Fall 2013
PHYS 5910.762, Special Problems, Fall 2013
PHYS 5910.762, Special Problems, Summer 10W 2013
PHYS 1420.004, General Physics II, Spring 2013 Syllabus
PHYS 1420.204, General Physics II, Spring 2013
PHYS 1440.507, General Physics Laboratory II, Spring 2013
PHYS 1440.509, General Physics Laboratory II, Spring 2013
PHYS 1440.510, General Physics Laboratory II, Spring 2013
PHYS 5900.762, Special Problems, Spring 2013
PHYS 5910.762, Special Problems, Spring 2013
PHYS 1420.001, General Physics II, Fall 2012 Syllabus
PHYS 1420.201, General Physics II, Fall 2012
PHYS 5910.762, Special Problems, Fall 2012
PHYS 1410.004, General Physics I, Spring 2012 Syllabus
PHYS 1410.204, General Physics I, Spring 2012
PHYS 1430.501, General Physics Laboratory I, Spring 2012
PHYS 5910.762, Special Problems, Spring 2012
PHYS 2240.501, Laboratory in Wave Motion, Electricity, Magnetism and Optics, Fall 2011

* Texas Education Code 51.974 (HB 2504) requires each institution of higher education to make available to the public, a syllabus for undergraduate lecture courses offered for credit by the institution.

Published Publications

Published Intellectual Contributions

Abstracts and Proceedings
Jones, D. C., Glass, G. A. Modification of Indium Phosphide Substrate into a Room Temperature Soft-Ferromagnetic Material System through Low Energy Nickel Ion Implantation.
Glass, G. A., Byers, T. A., Kaur Saini, D., Bowen, C. T., Rout, B. (2023). Application of Proton Induced X-ray Emission (PIXE) spectroscopy for quantifying biological markers. ASMS 71st Conference, Houston TX(4-8 June 2023), . American Society for Mass Spectrometry.
Kaur Saini, D., Byers, T. A., Nook, C., Sharma, M., Parashar, M., Glass, G. A., Rout, B. Trace-elemental analysis of herbal plant leaves using Particle Induced X-ray Emission.
Glass, G. A. (2019). 2. Simulation of an electrostatic quadrupole quadruplet focusing lens system for MeV multi-ion micro-beam. 1. Proceedings of 25TH INTERNATIONAL CONFERENCE ON THE APPLICATION OF ACCELERATORS IN RESEARCH AND INDUSTRY.
Younger-Mertz, S. B., Manuel, J. E., Reinert, T., Szilasi, S. Z., Hammerstedt, S. W., Glass, G. A. (2015). Ion Beam Analysis of Microcrystalline Quartz Artifacts from the Reed Mound Site, Delaware County, Oklahom. Physics Procedia. 66, 15. Elsevier.
Manuel, J. E., Rout, B., Szilasi, S. Z., Bohara, G., Deaton, J., Luyombya, H., Briski, K. P., Glass, G. A. (2014). Fish gelatin thin film standards for biological application of PIXE. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms. B 332, 4. Elsevier. http://www.elsevier.com/locate/nimb
Book
Glass, G. A. (2005). An Introduction to the Matrix Classical Theory of Field. New Formalism, Equations and Solutions.
Conference Proceeding
Glass, G. A. (2019). 25TH INTERNATIONAL CONFERENCE ON THE APPLICATION OF ACCELERATORS IN RESEARCH AND INDUSTRY. V-2160, . AIP.
Dhoubhadel, M. S., Rout, B., Lakshantha, W. J., Das, S. K., D’Souza, F., Glass, G. A., McDaniel, F. D. (2014). Investigation of structural and optical properties of Ag nanoclusters formed in Si (100) after multiple implantations of low energies Ag ions and post-thermal annealing at a temperature below the Ag-Si eutectic point. AIP Conference Proceedings. 1607(1), 16–23.
Pacheco, J., Ordonez, C., Weathers, D. L., McDaniel, F. D., Doyle, B. L., Glass, G. A., Wang, Y. (2013). Electrostatic storage ring with focusing provided by the space charge of an electron plasma. AIP Conference Proceedings. 1525(1), 88–93.
Deoli, N. T., Kummari, V. C., Pacheco, J. L., Duggan, J. L., Glass, G. A., McDaniel, F. D., Reinert, T., Rout, B., Weathers, D. L., McDaniel, F. D., others, (2013). Investigation of beam transmission in A 9SDH-2 3.0 MV NEC pelletron tandem accelerator. AIP Conference Proceedings. 1525(1), 214–219.
Editorial Material
Del McDaniel, Floyd,, Doyle, B. L., Glass, G. A., Wang, Y. (2015). Editorial to NIM-B. Other. 350, 60-60.
Journal Article
Glass, G. A., Rout, B., Byers, T. A., Manuel, J. E., Ponette-Gonzalez, A. G., Gill, T. E. (2023). Analysis of rain-deposited dust on polysulfone membranes using proton-induced X-ray emission spectroscopy. Microchemical Journal. 192(2023), . Elsevier. http://dx.doi.org/10.1016/j.microc.2023.108928
Glass, G. A., Arya, H., Chirayath, V. A., Jin, M., Weiss, A. H., Chi, Y. (2022). Electrostatic focusing lens system for low MeV-ion microprobe: A simulation and optimization study. Nuclear Instruments and Methods in Physics Research B. 518, 7-14. Elsevier. https://www.sciencedirect.com/journal/nuclear-instruments-and-methods-in-physics-research-section-b-beam-interactions-with-materials-and-atoms
Dasari, S., Sharma, A., Byers, T. A., Glass, G. A., Srivilliputhur, S. G., Rout, B., Banerjee, R. (2021). Proton irradiation induced chemical ordering in an Al0. 3CoFeNi high entropy alloy. Applied Physics Letters. 119(16), 161907. AIP Publishing LLC.
Dasari, S., Sharma, A., Byers, T. A., Glass, G. A., Srivilliputhur, S., Rout, B., Banerjee, R. (2021). Proton irradiation induced chemical ordering in an Al0.3CoFeNi high entropy alloy. Applied Physics Letters. 119, 161907. College Park, MD: American Institute of Physics. https://aip.scitation.org/doi/pdf/10.1063/5.0065875
Young, J. M., Byers, T. A., Lang, E. J., Singh, S., Glass, G. A., Hattar, K., Rout, B. (2021). Synthesis of magnesiowüstite nanocrystallites embedded in an amorphous silicate matrix via low energy multiple ion implantations. Other. 206, 105319. Amsterdam: Elsevier BV. http://dx.doi.org/10.1016/j.pss.2021.105319
Chatterjee, S., Webre, W., Patra, S., Rout, B., Glass, G. A., D'Souza, F., Chatterjee, S. (2020). Achievement of superior efficiency of TiO2 nanorod-nanoparticle composite photoanode in dye sensitized solar cell. Journal of Alloys and Compounds. N/A. 826(154188), 8. Amsteradam: Elsevier.
Glass, G. A., Manuel, J., Byers, T. A., Szolas, S. Z., Phillips, D. Z., Dymnikov, A. D., Reinert, T., Rout, B. (2018). Note: Performance of a Novel Electrostatic Quadrupole Doublet for Nuclear Microprobe Application. Review of Scientific Instruments. 89, 3. American Institute of Physics.
Manuel, J. E., Szilasi, S. Z., Phillips, D., Dymnikov, A. D., Reinert, T., Rout, B., Glass, G. A. (2017). Design and construction of an electrostatic quadrupole doublet lens for nuclear microprobe application. Other. 404, 21-28.
Emblom, W. J., Aithal, M., Jones, R. J., Pesacreta, T. C., Glass, G. A., Islam, M. I., Wagner, S. W. (2015). A microstrain measurement methodology applied to multiscale hydroforming of annealed ASTM 304 stainless steel shee. Academic Athletic Journal. 1-10, 10. Sage.
Emblom, W. J., Jones, R. J., Aithal, M., Ibne Islam, M. S., Glass, G. A., Wagner, S. W. (2014). The development of a microscale strin measurement system applied to sheet bulge hydroforming. Journal of Manufacturing Processes. 16, 8. Elsevier. www.elsevier.com/locate/manpro
Glass, G. A. (2010). Sign-bit Amplitude Recovery in Gaussian Noise.
Glass, G. A. (2009). Direct Etching of SiO2 and Al2O3 by 900 KeV Gold Ions.
Glass, G. A. (2008). Magnetic Quadrupole Doublet Focusing System for High Energy Ions.

Awarded Grants

Contracts, Grants and Sponsored Research

Sponsored Research
Glass, G. A. (Co-Principal), Briski, K. P. (Principal), "Estradiol Regulation of Hypothalamic Astrocyte Glycogen," Sponsored by National Institutes of Health, Federal, $141270 Funded. (June 1, 2016 – Present).
Glass, G. A. (Principal), Rout, B. (Co-Principal), "Development of Microprobe Lens System," Sponsored by National Electrostatic Corporation, Private, $46000 Funded. (December 1, 2018May 31, 2020).
Rout, B. (Principal), Glass, G. A. (Co-Principal), "Three dimensional heterojunction nano- structures for photovoltaic applications," Sponsored by Indo-US Science & Technology Forum, International, $15000 Funded. (December 1, 2017September 30, 2018).
,
Overall
Summative Rating
Challenge and
Engagement Index
Response Rate

out of 5

out of 7
%
of
students responded
  • Overall Summative Rating (median):
    This rating represents the combined responses of students to the four global summative items and is presented to provide an overall index of the class’s quality. Overall summative statements include the following (response options include a Likert scale ranging from 5 = Excellent, 3 = Good, and 1= Very poor):
    • The course as a whole was
    • The course content was
    • The instructor’s contribution to the course was
    • The instructor’s effectiveness in teaching the subject matter was
  • Challenge and Engagement Index:
    This rating combines student responses to several SPOT items relating to how academically challenging students found the course to be and how engaged they were. Challenge and Engagement Index items include the following (response options include a Likert scale ranging from 7 = Much higher, 4 = Average, and 1 = Much lower):
    • Do you expect your grade in this course to be
    • The intellectual challenge presented was
    • The amount of effort you put into this course was
    • The amount of effort to succeed in this course was
    • Your involvement in course (doing assignments, attending classes, etc.) was
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