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*[C. T. Kelley](../members/ct_kelley/). Newton's Method in Three Precisions. To appear in *Pacific Journal of Optimization*. (2023) Preprint DOI [10.48550/arXiv.2307.16051](https://doi.org/10.48550/arXiv.2307.16051).
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*[C. J. Palmer](../members/camille_palmer), [J. Northrop](../members/jordan_northrop), [T.S. Palmer](../members/todd_palmer), [A. J. Reynolds](../previous_members/aaron_reynolds). Validation of Time-dependent Shift using the Pulsed Sphere Benchmarks. *Frontiers in Nuclear Engineering, Sec. Fission and Reactor Design.* Vol 2. (2023). DOI: [10.3389/fnuen.2023.1294583](https://doi.org/10.3389/fnuen.2023.1294583).
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*[C. J. Palmer](../members/camille_palmer), [J. Northrop](../members/jordan_northrop), [T.S. Palmer](../members/todd_palmer), [A. J. Reynolds](../previous_members/aaron_reynolds). Validation of Time-dependent Shift using the Pulsed Sphere Benchmarks. *Frontiers in Nuclear Engineering, Sec. Fission and Reactor Design.* Vol 2. (2023). DOI: [10.3389/fnuen.2023.1294583](https://doi.org/10.3389/fnuen.2023.1294583).
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*[B. Whewell](../members/ben_whewell/), [R. G. McClarren](../members/ryan_mcclarren/), C. D. Hauck & M. Shin "Multigroup Neutron Transport Using a Collision-Based Hybrid Method", Nuclear Science and Engineering, 197:7, 1386-1405, (2023) DOI: [10.1080/00295639.2022.2154119](https://doi.org/10.1080/00295639.2022.2154119).
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# Conference Publications
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[D. Y. Anistratov](../members/dmitriy_anistratov) Analysis of Noise Effects in Hybrid Transport Methods Based on Low-Order Moment Equations The 27th International Conference on Transport Theory (ICTT27), Bertinoro, Italy, July 10-16, 2022.
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[V. Novellino](../previous_members/vincent_novellino) and [D. Anistratov](../members/dmitriy_anistratov), Analysis of Hybrid MC/Deterministic Methods for Transport Problems Based on Low-Order Equations Discretized by Finite Volume Scheme. *Transaction of American Nuclear Society*, v. 130, 2024 (Preprint arXiv:2403.05673
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doi.org/10.48550/arXiv.2403.05673)
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*[I. Variansyah](../members/ilham_variansyah/), [J. P. Morgan](../members/joanna_morgan/), [K. E. Niemeyer](../members/kyle_niemeyer/), and [R. G. McClarren](../members/ryan_mcclarren/). “Development of MC/DC: a performant, scalable, and portable Python-based Monte Carlo neutron transport code.” In *International Conference on Mathematics and Computational Methods Applied to Nuclear Science and Engineering*. Niagara Falls, Ontario, Canada (2023). Preprint DOI [10.48550/arXiv.2305.13555](https://doi.org/10.48550/arXiv.2305.13555).
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*[I. Variansyah](../members/ilham_variansyah/) and [R. G. McClarren](../members/ryan_mcclarren/). “High-fidelity treatment for object movement in time-dependent Monte Carlo transport simulations.” In *International Conference on Mathematics and Computational Methods Applied to Nuclear Science and Engineering*. Niagara Falls, Ontario, Canada (2023). Preprint [DOI 10.48550/arXiv.2305.07641](https://doi.org/10.48550/arXiv.2305.07641).
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*[K. B. Clements](../members/kayla_clements/), G. Geraci, and A. J. Olson. “Numerical Investigation on the Performance of a Variance Deconvolution Estimator.” In *American Nuclear Society Annual Meeting*. Anaheim, California, United States (2022).
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*[K. B. Clements](../members/kayla_clements/), G. Geraci, A. J. Olson, and T. Palmer. “Global Sensitivity Analysis in Monte Carlo Radiation Transport.” In *International Conference on Mathematics and Computational Methods Applied to Nuclear Science and Engineering*. Niagara Falls, Ontario, Canada (2023).
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*[K. B. Clements](../members/kayla_clements/), G. Geraci, A. J. Olson, and [T. S. Palmer](../members/todd_palmer/). “Global Sensitivity Analysis in Monte Carlo Radiation Transport.” In *International Conference on Mathematics and Computational Methods Applied to Nuclear Science and Engineering*. Niagara Falls, Ontario, Canada (2023).
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*[S. Pasmann](../members/sam_pasmann/), [I. Variansyah](../members/ilham_variansyah/), [C. T. Kelley](../members/ct_kelley/), and [R. G. McClarren](../members/ryan_mcclarren/). “iQMC: Iterative Quasi-Monte Carlo with Krylov Linear Solvers for k-Eigenvalue Neutron Transport Simulations.” In *International Conference on Mathematics and Computational Methods Applied to Nuclear Science and Engineering*. Niagara Falls, Ontario, Canada (2023).
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*[K. B. Clements](../members/kayla_clements/), G. Geraci, and A. J. Olson. “Numerical Investigation on the Performance of a Variance Deconvolution Estimator.” In In *Transactions of the American Nuclear Society*, volume 126, p. 344-347. Anaheim, California, United States (2022). DOI [10.13182/T126-38365](https://doi.org/10.13182/T126-38365).
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*[A. J. Reynolds](/previous_members/aaron_reynolds), & [T. S. Palmer](../members/todd_palmer/). Verification and Scaling of Time-Dependent Shift Using the AZURV1 Benchmark. In *Transactions of the American Nuclear Society*, volume 126. p. 310-313. Anaheim, California, United States (2020) Preprint DOI [10.5281/zenodo.7222601](https://doi.org/10.5281/zenodo.7222601) DOI [10.13182/T126-38060](https://doi.org/10.13182/T126-38060).
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*[A. J. Reynolds](../previous_members/aaron_reynolds), & [T. S. Palmer](../members/todd_palmer/). Verification and Scaling of Time-Dependent Shift Using the AZURV1 Benchmark. In *Transactions of the American Nuclear Society*, volume 126. p. 310-313. Anaheim, California, United States (2020) Preprint DOI [10.5281/zenodo.7222601](https://doi.org/10.5281/zenodo.7222601) DOI [10.13182/T126-38060](https://doi.org/10.13182/T126-38060).
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*[J. P. Morgan](../members/joanna_morgan/), [T. S. Palmer](../members/todd_palmer/), and [K. E. Niemeyer](../members/kyle_niemeyer/). “Automatic Hardware Code Generation for Neutron Transport Applications.” In Transactions of the American Nuclear Society, volume 126, p. 318–320. American Nuclear Society, Anaheim, CA (2022) Preprint DOI: [10.5281/zenodo.6646813](https://doi.org/10.5281/zenodo.6646813) DOI: [10.13182/T126-38137](https://doi.org/10.13182/T126-38137).
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*[J Northrop](../members/jordan_northrop), [C. Palmer](../members/camille_palmer), and [A. J. Reynolds](/previous_members/aaron_reynolds). “Inter-code Comparison of Time Independent Pulsed Sphere Benchmark Results.” In *Transactions of the American Nuclear Society*, volume 126. p. 334-337 American Nuclear Society, Anaheim, CA (2022). Preprint DOI: [10.5281/zenodo.7250603](https://doi.org/10.5281/zenodo.7250603) DOI (10.13182/T126-38312)[https://doi.org/10.13182/T126-38312].
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*[J Northrop](../members/jordan_northrop), [C. Palmer](../members/camille_palmer), and [A. J. Reynolds](../previous_members/aaron_reynolds). “Inter-code Comparison of Time Independent Pulsed Sphere Benchmark Results.” In *Transactions of the American Nuclear Society*, volume 126. p. 334-337 American Nuclear Society, Anaheim, CA (2022). Preprint DOI: [10.5281/zenodo.7250603](https://doi.org/10.5281/zenodo.7250603) DOI [10.13182/T126-38312](https://doi.org/10.13182/T126-38312).
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* D. Siefman, S. Coleman, [J. Northrop](../members/jordan_northrop), W. Zywiec, J. Holmes, M. Zerkle, D. Heinrichs, and C. Percher. “Pulsed-Neutron Die-Away Experiments for Plastics and Neutron Thermal Scattering Laws.” In *15th International Conference on Nuclear Data for Science and Technology (ND2022)*. Sacramento, CA (2022). Preprint DOI: [10.5281/zenodo.7255291](https://doi.org/10.5281/zenodo.7255291).
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* D. Siefman, S. Coleman, [J. Northrop](../members/jordan_northrop), W. Zywiec, J. Holmes, M. Zerkle, D. Heinrichs, and C. Percher. “Pulsed-Neutron Die-Away Experiments for Plastics and Neutron Thermal Scattering Laws.” In *15th International Conference on Nuclear Data for Science and Technology (ND2022)*. Sacramento, CA (2022). URL https://doi.org/10.5281/ zenodo.7255291.
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*[S. Pasmann](../members/sam_pasmann/), [I. Variansyah](../members/ilham_variansyah/), and [R. G. McClarren](../members/ryan_mcclarren/). “Convergent Transport Source Iteration Calculations with Quasi-Monte Carlo.” In *Transactions of the American Nuclear Society*, volume 124, pp. 192–195. American Nuclear Society (2021).
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# Courses and Teaching Materials
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*[K. E. Niemeyer](../members/kyle_niemeyer/). Software Development for Engineering Research. ME 599. Oregon State University, North Carolina State University, [Course Materials available online](https://github.com/SoftwareDevEngResearch)
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*[K. E. Niemeyer](../members/kyle_niemeyer/). Software Development for Engineering Research. ME 599. Offered concurrently at *Oregon State University*, *University of Notre Dame*, and *North Carolina State University*, Course Materials available online. URL [https://github.com/SoftwareDevEngResearch](https://github.com/SoftwareDevEngResearch)
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# Software, Data, and Collections
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*[R. G. McClarren](../members/ryan_mcclarren/), & [J. P. Morgan](../members/joanna_morgan/) (2023). 2023 Monte Carlo Computational Summit. 2023 Monte Carlo Computational Summit, South Bend, IN, USA. Center for Exascale Monte Carlo Neutron Transport (CEMeNT). DOI [10.5281/zenodo.10207764](https://doi.org/10.5281/zenodo.10207764)
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*[R. G. McClarren](../members/ryan_mcclarren/), & [J. P. Morgan](../members/joanna_morgan/) (2023). "2023 Monte Carlo Computational Summit. 2023 Monte Carlo Computational Summit, South Bend, IN, USA." Center for Exascale Monte Carlo Neutron Transport (CEMeNT). [Presentation Collection]. DOI [10.5281/zenodo.10207764](https://doi.org/10.5281/zenodo.10207764)
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*[I. Variansyah](../members/ilham_variansyah/), & [J. P. Morgan](../members/joanna_morgan/). (2023). Continous Energy Neutron Cross Section Data Library for MCDC (0.0.1) [Data set]. Center for Exascale Monte Carlo Neutron Transport (CEMeNT). DOI [10.5281/zenodo.10426266](https://doi.org/10.5281/zenodo.10426266)
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*[I. Variansyah](../members/ilham_variansyah/), & [J. P. Morgan](../members/joanna_morgan/). (2023). "Continous Energy Neutron Cross Section Data Library for MCDC" (0.0.1) [Data set]. Center for Exascale Monte Carlo Neutron Transport (CEMeNT). DOI [10.5281/zenodo.10426266](https://doi.org/10.5281/zenodo.10426266)
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*[C. T. Kelley](../members/ct_kelley/). “Notebook for Solving Nonlinear Equations with Iterative Methods: Solvers and Examples in Julia.” https://github.com/ctkelley/NotebookSIAMFANL (2022). URL https://github.com/ctkelley/NotebookSIAM FANL. IJulia Notebook
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*[C. T. Kelley](../members/ct_kelley/). (2022). “Notebook for Solving Nonlinear Equations with Iterative Methods: Solvers and Examples in Julia.” [IJulia Notebook]. URL [https://github.com/ctkelley/NotebookSIAMFANL](https://github.com/ctkelley/NotebookSIAMFANL).
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*[C. T. Kelley](../members/ct_kelley/). “SIAMFANLEquations.jl.” https://github.com/ctkelley/SIAMFANLEquations.jl
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(2022). URL https://github.com/ctkelley/SIAMFANLEquations.jl. Julia Package
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*[C. T. Kelley](../members/ct_kelley/). (2022). “SIAMFANLEquations.jl”. [Julia Package]. URL [https://github.com/ctkelley/SIAMFANLEquations.jl](https://github.com/ctkelley/SIAMFANLEquations.jl).
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*[I. Variansyah](../members/ilham_variansyah/), [J. P. Morgan](../members/joanna_morgan/), [C. Goodman](../members/charles_goodman), [S. Pasmann](../members/sam_pasmann/), & [J. Northrop](../members/jordan_northrop). Monte Carlo / Dynamic Code (MC/DC) (0.1.0). 2023. DOI [10.5281/zenodo.7916215](https://doi.org/10.5281/zenodo.7916215)
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*[I. Variansyah](../members/ilham_variansyah/), [J. P. Morgan](../members/joanna_morgan/), & [B. Cuneo](../members/braxton_cuneo/) (2023). MC/DC - Back in Track (0.0.1). DOI [https://doi.org/10.5281/zenodo.7916258](https://doi.org/10.5281/zenodo.7916258)
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*[I. Variansyah](../members/ilham_variansyah/), [J. P. Morgan](../members/joanna_morgan/), & [B. Cuneo](../members/braxton_cuneo/) (2023). "MC/DC - Back in Track". (0.0.1). [Software]. DOI [https://doi.org/10.5281/zenodo.7916258](https://doi.org/10.5281/zenodo.7916258)
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*[J. P. Morgan](../members/joanna_morgan/), & [I. Variansyah](../members/ilham_variansyah/) (2023). Therefore (0.0.1). DOI [10.5281/zenodo.7806833](https://doi.org/10.5281/zenodo.7806833)
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*[J. P. Morgan](../members/joanna_morgan/), & [I. Variansyah](../members/ilham_variansyah/) (2023). "Therefore". (0.0.1). [Software]. DOI [10.5281/zenodo.7806833](https://doi.org/10.5281/zenodo.7806833)
*[Jordan Northrop](../members/jordan_northrop) A Study of Variance Reduction for Time-Dependent Monte Carlo Neutron Transport. Masters of Science Thesis, School of NSE, Oregon State University, Corvallis, OR 2024
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*[Jordan Northrop](../members/jordan_northrop), Inter-code Comparison of Time Independent Pulsed Sphere Benchmark Results, Honors B.S. thesis, School of NSE, Oregon State University, Corvallis, OR 2022, Available: [online](https://www.google.com/url?sa=t&rct=j&q=&esrc=s&source=web&cd=&cad=rja&uact=8&ved=2ahUKEwik4YCs59uDAxWWMDQIHW63A-AQFnoECB0QAQ&url=https%3A%2F%2Fir.library.oregonstate.edu%2Fdownloads%2Fb2774375j&usg=AOvVaw1Tpc2s-6mkZWA2hun1Sm6W&opi=89978449)
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# Presentations
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*[I. Variansyah](../members/ilham_variansyah/) and [B. Cuneo](../members/braxton_cuneo/). "MC/DC+Harmonize: JIT Compilation & Asynchronous GPU scheduling" *The Monte Carlo Computational Summit*. University of Noter Dame South Bend, IN (October 2023) [Available](https://doi.org/10.5281/zenodo.10207764)
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*[I. Variansyah](../members/ilham_variansyah/), [J. P. Morgan](../members/joanna_morgan/), [K. E. Niemeyer](../members/kyle_niemeyer/), and [R. G. McClarren](../members/ryan_mcclarren/). “Development of MC/DC: a performant, scalable, and portable Python-based Monte Carlo neutron transport code.” *International Conference on Mathematics and Computational Methods Applied to Nuclear Science and Engineering*. Niagara Falls, Ontario, Canada (August 2023)
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*[J. P. Morgan](../members/joanna_morgan/), A. Long, K. Long, and [K. E. Niemeyer](../members/kyle_niemeyer/). “Novel MC TRT Method: Vectorizable Variance Reduction for Energy Spectra.” Annual Meeting of the American Nuclear Society, Anaheim, CA (June 2022). DOI [10.2172/1821347](https://doi.org/10.2172/1821347)
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*[A. J. Reynolds](/previous_members/aaron_reynolds) and [T. S. Palmer](../members/todd_palmer/), “Verification and Scaling of Time-Dependent Shift Using the
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*[A. J. Reynolds](../previous_members/aaron_reynolds) and [T. S. Palmer](../members/todd_palmer/), “Verification and Scaling of Time-Dependent Shift Using the
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AZURV1 Benchmark”, American Nuclear Society Annual Meeting, Anaheim, CA, June 2022.
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*[A. J. Reynolds](/previous_members/aaron_reynolds) and [T. S. Palmer](../members/todd_palmer/), “Introduction to an MCGIDI Mini-App and Performance Comparisons with XSBench”, Tech. Rep. LLNL-SR-837024. Lawrence Livermore National Laboratory, 2022.
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*[A. J. Reynolds](../previous_members/aaron_reynolds) and [T. S. Palmer](../members/todd_palmer/), “Introduction to an MCGIDI Mini-App and Performance Comparisons with XSBench”, Tech. Rep. LLNL-SR-837024. Lawrence Livermore National Laboratory, 2022.
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<?xml version="1.0" encoding="utf-8"?><feed xmlns="http://www.w3.org/2005/Atom" ><generator uri="https://jekyllrb.com/" version="4.1.1">Jekyll</generator><link href="https://cement-psaap.github.io/feed.xml" rel="self" type="application/atom+xml" /><link href="https://cement-psaap.github.io/" rel="alternate" type="text/html" /><updated>2024-03-07T12:35:49-08:00</updated><id>https://cement-psaap.github.io/feed.xml</id><title type="html">CEMeNT</title><subtitle>CEMeNT is a PSAAP-III Focused Investigatory Center led by Oregon State University, with partner institutions University of Notre Dame and North Carolina State University.</subtitle><author><name>CEMeNT</name></author><entry><title type="html">CEMeNT Graduate Students Finish Internships at NNSA Trilabs</title><link href="https://cement-psaap.github.io/articles/intern-complete/" rel="alternate" type="text/html" title="CEMeNT Graduate Students Finish Internships at NNSA Trilabs" /><published>2021-09-15T00:00:00-07:00</published><updated>2021-09-15T00:00:00-07:00</updated><id>https://cement-psaap.github.io/articles/intern-complete</id><content type="html" xml:base="https://cement-psaap.github.io/articles/intern-complete/"><![CDATA[<p>All six of our center’s current graduate students completed summer internships within the trilabs, working on cutting edge research to fulfill the mission of the NNSA. Their dispersion around the trilabs demonstrates the tight knit relationship our center is building with them. Please see the list below for areas of research for our successful interns.</p>
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<?xml version="1.0" encoding="utf-8"?><feed xmlns="http://www.w3.org/2005/Atom" ><generator uri="https://jekyllrb.com/" version="4.1.1">Jekyll</generator><link href="https://cement-psaap.github.io/feed.xml" rel="self" type="application/atom+xml" /><link href="https://cement-psaap.github.io/" rel="alternate" type="text/html" /><updated>2024-03-23T09:36:39-07:00</updated><id>https://cement-psaap.github.io/feed.xml</id><title type="html">CEMeNT</title><subtitle>CEMeNT is a PSAAP-III Focused Investigatory Center led by Oregon State University, with partner institutions University of Notre Dame and North Carolina State University.</subtitle><author><name>CEMeNT</name></author><entry><title type="html">CEMeNT Graduate Students Finish Internships at NNSA Trilabs</title><link href="https://cement-psaap.github.io/articles/intern-complete/" rel="alternate" type="text/html" title="CEMeNT Graduate Students Finish Internships at NNSA Trilabs" /><published>2021-09-15T00:00:00-07:00</published><updated>2021-09-15T00:00:00-07:00</updated><id>https://cement-psaap.github.io/articles/intern-complete</id><content type="html" xml:base="https://cement-psaap.github.io/articles/intern-complete/"><![CDATA[<p>All six of our center’s current graduate students completed summer internships within the trilabs, working on cutting edge research to fulfill the mission of the NNSA. Their dispersion around the trilabs demonstrates the tight knit relationship our center is building with them. Please see the list below for areas of research for our successful interns.</p>
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<p>We would like to directly thank all the mentors who helped!</p>
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