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### 2021

Austin Bebee, Christopher J. Stubbs, and Daniel J. Robertson. 2021. “[Large Deflection Model for Multiple, Inline, Interacting Cantilever Beams](/publications/large-deflection-model-multiple-inline-interacting-cantilever-beams)”. Journal of Applied Mechanics, 88, Pp. 041005. doi:10.1115/1.4049072



 

 

Austin Bebee, Christopher J. Stubbs, and Daniel J. Robertson. 2021. “[Large Deflection Model for Multiple, Inline, Interacting Cantilever Beams](/publications/large-deflection-model-multiple-inline-interacting-cantilever-beams)”. Journal of Applied Mechanics, 88, Pp. 041005. doi:10.1115/1.4049072



 

 

 

- [ descriptionPublisher's Version](https://ui.adsabs.harvard.edu/abs/2021JAM....88d1005B)
 
- [ descriptionPublisher's Version](https://ui.adsabs.harvard.edu/abs/2021JAM....88d1005B)
 
 

 



### 2020

Sasha Brownsberger, Nicholas Mondrik, and Christopher W. Stubbs. 2020. “[Initial Assessment of Monocrystalline Silicon Solar Cells As Large-Area Sensors for Precise Flux Calibration](/publications/initial-assessment-monocrystalline-silicon-solar-cells-large-area-sensors-0)”. doi:10.1117/12.2564972



 

 

Sasha Brownsberger, Nicholas Mondrik, and Christopher W. Stubbs. 2020. “[Initial Assessment of Monocrystalline Silicon Solar Cells As Large-Area Sensors for Precise Flux Calibration](/publications/initial-assessment-monocrystalline-silicon-solar-cells-large-area-sensors-0)”. doi:10.1117/12.2564972



 

 

 

- add\_circle do\_not\_disturb\_on Abstract
- [ descriptionPublisher's Version](https://ui.adsabs.harvard.edu/abs/2020SPIE11454E..2CB)
 
 As the precision frontier of large-area survey astrophysics advances towards the one millimagnitude level, flux calibration of astronomical instrumentation remains an ongoing challenge. We describe initial testing of silicon solar cells as large-aperture... 

 

 

- [ descriptionPublisher's Version](https://ui.adsabs.harvard.edu/abs/2020SPIE11454E..2CB)
 
 

Navajit S. Baban, Ajymurat Orozaliev, Christopher J. Stubbs, and Yong Ak Song. 2020. “[Understanding Interfacial Fracture Behavior Between Microinterlocked Soft Layers Using Physics-Based Cohesive Zone Modeling](/publications/understanding-interfacial-fracture-behavior-between-microinterlocked-soft-layers)”. Physical Review E, 102, Pp. 012801. doi:10.1103/PhysRevE.102.012801



 

 

Navajit S. Baban, Ajymurat Orozaliev, Christopher J. Stubbs, and Yong Ak Song. 2020. “[Understanding Interfacial Fracture Behavior Between Microinterlocked Soft Layers Using Physics-Based Cohesive Zone Modeling](/publications/understanding-interfacial-fracture-behavior-between-microinterlocked-soft-layers)”. Physical Review E, 102, Pp. 012801. doi:10.1103/PhysRevE.102.012801



 

 

 

- add\_circle do\_not\_disturb\_on Abstract
- [ descriptionPublisher's Version](https://ui.adsabs.harvard.edu/abs/2020PhRvE.102a2801B)
 
 We examine the underlying fracture mechanics of the human skin dermal-epidermal layer's microinterlocks using a physics-based cohesive zone finite-element model. Using microfabrication techniques, we fabricated highly dense arrays of spherical... 

 

 

- [ descriptionPublisher's Version](https://ui.adsabs.harvard.edu/abs/2020PhRvE.102a2801B)
 
 

Sasha Brownsberger, Nicholas Mondrik, and Christopher W. Stubbs. 2020. “[Initial Assessment of Monocrystalline Silicon Solar Cells As Large-Area Sensors for Precise Flux Calibration](/publications/initial-assessment-monocrystalline-silicon-solar-cells-large-area-sensors-1)”. Journal of Astronomical Telescopes, Instruments, and Systems, 6, Pp. 026001. doi:10.1117/1.JATIS.6.2.026001



 

 

Sasha Brownsberger, Nicholas Mondrik, and Christopher W. Stubbs. 2020. “[Initial Assessment of Monocrystalline Silicon Solar Cells As Large-Area Sensors for Precise Flux Calibration](/publications/initial-assessment-monocrystalline-silicon-solar-cells-large-area-sensors-1)”. Journal of Astronomical Telescopes, Instruments, and Systems, 6, Pp. 026001. doi:10.1117/1.JATIS.6.2.026001



 

 

 

- add\_circle do\_not\_disturb\_on Abstract
- [ descriptionPublisher's Version](https://ui.adsabs.harvard.edu/abs/2020JATIS...6b6001B)
 
 As the precision frontier of large-area survey astrophysics advances toward the one millimagnitude level, flux calibration of astronomical instrumentation remains an ongoing challenge. We describe initial testing of silicon solar cells (SCs) as large... 

 

 

- [ descriptionPublisher's Version](https://ui.adsabs.harvard.edu/abs/2020JATIS...6b6001B)
 
 

 



### 2019

Sasha Brownsberger, Nicholas Mondrik, and Christopher W. Stubbs. 2019. “[Initial Assessment of Monocrystalline Silicon Solar Cells As Large-Area Sensors for Precise Flux Calibration](/publications/initial-assessment-monocrystalline-silicon-solar-cells-large-area-sensors)”. ArXiv E-Prints, Pp. arXiv:1909.13346



 

 

Sasha Brownsberger, Nicholas Mondrik, and Christopher W. Stubbs. 2019. “[Initial Assessment of Monocrystalline Silicon Solar Cells As Large-Area Sensors for Precise Flux Calibration](/publications/initial-assessment-monocrystalline-silicon-solar-cells-large-area-sensors)”. ArXiv E-Prints, Pp. arXiv:1909.13346



 

 

 

 

 



### 2018

A. Klippel, J. Zhao, J. O. Wallgruen, D. Oprean, C. Stubbs, K. L. Jackson, and P. C. La Femina. 2018. “[The Value of Being There: Toward a Science of Immersive Virtual Field Trips](/publications/value-being-there-toward-science-immersive-virtual-field-trips)”. In AGU Fall Meeting Abstracts, 2018:Pp. ED54B-07



 

 

A. Klippel, J. Zhao, J. O. Wallgruen, D. Oprean, C. Stubbs, K. L. Jackson, and P. C. La Femina. 2018. “[The Value of Being There: Toward a Science of Immersive Virtual Field Trips](/publications/value-being-there-toward-science-immersive-virtual-field-trips)”. In AGU Fall Meeting Abstracts, 2018:Pp. ED54B-07



 

 

 

 

A. Klippel, J. Zhao, J. O. Wallgruen, D. Oprean, C. Stubbs, K. L. Jackson, and P. C. La Femina. 2018. “[The Value of Being There: Toward a Science of Immersive Virtual Field Trips](/publications/value-being-there-toward-science-immersive-virtual-field-trips-0)”. In AGU Fall Meeting Abstracts, 2018:Pp. ED54B-07



 

 

A. Klippel, J. Zhao, J. O. Wallgruen, D. Oprean, C. Stubbs, K. L. Jackson, and P. C. La Femina. 2018. “[The Value of Being There: Toward a Science of Immersive Virtual Field Trips](/publications/value-being-there-toward-science-immersive-virtual-field-trips-0)”. In AGU Fall Meeting Abstracts, 2018:Pp. ED54B-07



 

 

 

- add\_circle do\_not\_disturb\_on Abstract
- [ descriptionPublisher's Version](https://ui.adsabs.harvard.edu/abs/2018AGUFMED54B..07K)
 
 The democratization of immersive experiences both from a perspective of creating them and of accessing them requires and allows for thinking about scientific, evidence-based design principles for immersive learning. Immersive learning has the potential to... 

 

 

- [ descriptionPublisher's Version](https://ui.adsabs.harvard.edu/abs/2018AGUFMED54B..07K)
 
 

Michael W. Coughlin, Susana Deustua, Augustin Guyonnet, Nicholas Mondrik, Joseph P. Rice, Christopher W. Stubbs, and John T. Woodward. 2018. “[Testing of the LSST’s Photometric Calibration Strategy at the CTIO 0.9 Meter Telescope](/publications/testing-lssts-photometric-calibration-strategy-ctio-09-meter-telescope-0)”. doi:10.1117/12.2309582



 

 

Michael W. Coughlin, Susana Deustua, Augustin Guyonnet, Nicholas Mondrik, Joseph P. Rice, Christopher W. Stubbs, and John T. Woodward. 2018. “[Testing of the LSST’s Photometric Calibration Strategy at the CTIO 0.9 Meter Telescope](/publications/testing-lssts-photometric-calibration-strategy-ctio-09-meter-telescope-0)”. doi:10.1117/12.2309582



 

 

 

- add\_circle do\_not\_disturb\_on Abstract
- [ descriptionPublisher's Version](https://ui.adsabs.harvard.edu/abs/2018SPIE10704E..20C)
 
 The calibration hardware system of the Large Synoptic Survey Telescope (LSST) is designed to measure two quantities: a telescope's instrumental response function versus wavelength and atmospheric transmission. First of all, a "collimated beam projector,"... 

 

 

- [ descriptionPublisher's Version](https://ui.adsabs.harvard.edu/abs/2018SPIE10704E..20C)
 
 

Lauren E. Hatcher, Jonathan M. Skelton, Mark R. Warren, Clare Stubbs, E. Lora Silva, and Paul R. Raithby. 2018. “[Monitoring Photo-Induced Population Dynamics in Metastable Linkage Isomer Crystals: A Crystallographic Kinetic Study of \[Pd(Bu4dien)NO2\]BPh4](/publications/monitoring-photo-induced-population-dynamics-metastable-linkage-isomer-crystals)”. Physical Chemistry Chemical Physics (Incorporating Faraday Transactions), 20, Pp. 5874. doi:10.1039/C7CP05422J



 

 

Lauren E. Hatcher, Jonathan M. Skelton, Mark R. Warren, Clare Stubbs, E. Lora Silva, and Paul R. Raithby. 2018. “[Monitoring Photo-Induced Population Dynamics in Metastable Linkage Isomer Crystals: A Crystallographic Kinetic Study of \[Pd(Bu4dien)NO2\]BPh4](/publications/monitoring-photo-induced-population-dynamics-metastable-linkage-isomer-crystals)”. Physical Chemistry Chemical Physics (Incorporating Faraday Transactions), 20, Pp. 5874. doi:10.1039/C7CP05422J



 

 

 

- [ descriptionPublisher's Version](https://ui.adsabs.harvard.edu/abs/2018PCCP...20.5874H)
 
- [ descriptionPublisher's Version](https://ui.adsabs.harvard.edu/abs/2018PCCP...20.5874H)
 
 

Michael W. Coughlin, Susana Deustua, Augustin Guyonnet, Nicholas Mondrik, Joseph P. Rice, Christopher W. Stubbs, and John T. Woodward. 2018. “[Testing of the LSST’s Photometric Calibration Strategy at the CTIO 0.9 Meter Telescope](/publications/testing-lssts-photometric-calibration-strategy-ctio-09-meter-telescope)”. In \procspie, 10704:Pp. 1070420. doi:10.1117/12.2309582



 

 

Michael W. Coughlin, Susana Deustua, Augustin Guyonnet, Nicholas Mondrik, Joseph P. Rice, Christopher W. Stubbs, and John T. Woodward. 2018. “[Testing of the LSST’s Photometric Calibration Strategy at the CTIO 0.9 Meter Telescope](/publications/testing-lssts-photometric-calibration-strategy-ctio-09-meter-telescope)”. In \procspie, 10704:Pp. 1070420. doi:10.1117/12.2309582



 

 

 

 

 



### 2017

E. G. Adelberger, J. B. R. Battat, K. J. Birkmeier, N. R. Colmenares, R. Davis, C. D. Hoyle, L. R. Huang, R. J. McMillan, Jr. Murphy T. W., E. Schlerman, C. Skrobol, C. W. Stubbs, and A. Zach. 2017. “[An Absolute Calibration System for Millimeter-Accuracy APOLLO Measurements](/publications/absolute-calibration-system-millimeter-accuracy-apollo-measurements)”. Classical and Quantum Gravity, 34, 24, Pp. 245008. doi:10.1088/1361-6382/aa953b



 

 

E. G. Adelberger, J. B. R. Battat, K. J. Birkmeier, N. R. Colmenares, R. Davis, C. D. Hoyle, L. R. Huang, R. J. McMillan, Jr. Murphy T. W., E. Schlerman, C. Skrobol, C. W. Stubbs, and A. Zach. 2017. “[An Absolute Calibration System for Millimeter-Accuracy APOLLO Measurements](/publications/absolute-calibration-system-millimeter-accuracy-apollo-measurements)”. Classical and Quantum Gravity, 34, 24, Pp. 245008. doi:10.1088/1361-6382/aa953b



 

 

 

 

P. C. La Femina, A. Klippel, J. Zhao, J. O. Walgruen, C. Stubbs, K. L. Jackson, and R. Wetzel. 2017. “[Immersive Virtual Reality Field Trips in the Geosciences: Integrating Geodetic Data in Undergraduate Geoscience Courses](/publications/immersive-virtual-reality-field-trips-geosciences-integrating-geodetic-data)”. In AGU Fall Meeting Abstracts, 2017:Pp. ED11B-0128



 

 

P. C. La Femina, A. Klippel, J. Zhao, J. O. Walgruen, C. Stubbs, K. L. Jackson, and R. Wetzel. 2017. “[Immersive Virtual Reality Field Trips in the Geosciences: Integrating Geodetic Data in Undergraduate Geoscience Courses](/publications/immersive-virtual-reality-field-trips-geosciences-integrating-geodetic-data)”. In AGU Fall Meeting Abstracts, 2017:Pp. ED11B-0128



 

 

 

 

 



 

 

 

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