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solutions. References: Zhu, Chen; Nordstrom, D. Kirk Flying Blind: Geochemical Modeling and Thermodynamic Data Files Groundwater 2022, 60(6), 699-700 10.1111/gwat.13223 Alex De Visscher and Jan Vanderdeelen
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Riboswitch Folding: A High-Pressure Single-Molecule Kinetic Study”, J. Phys. Chem. B, (2022) https://doi-org.colorado.idm.oclc.org/10.1021/acs.jpcb.2c06579. H-L Sung and D. J. Nesbitt, “Synergism in
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, adaptable facility that can be used to test advanced control algorithms, generate data for modeling of equipment, test new ideas for grid responsiveness, etc. References Pertzborn, A.J. (2022) ‘Implementation
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frequency combs generated from a continuous-wave laser." Optics Letters 39(9): 2688-2690. [2] Long, D. A., et al. (2022). "Nanosecond time-resolved dual-comb absorption spectroscopy." arXiv:2212.01407
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For Finding Class Encoding Patterns”, arXiv, Dec. 2022, URL [ 3] Nicholas J. Schaub et al., “Deep learning predicts function of live retinal pigment epithelium from quantitative microscopy,” Journal of Clinical
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, and B. P. Wuetz, Universal control of a six-qubit quantum processor in silicon. Nature609, 919–924 (2022). [2] J. Zwolak and J. Taylor. Colloquium: Advances in automation of quantum dot devices control
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., Moon, KW., Williams, M. et al. Development of a Diffusion Mobility Database for Co-Based Superalloys. J. Phase Equilib. Diffus. 43, 931–952 (2022). https://doi.org/10.1007/s11669-022-01011-1 key words
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.2c02367 (2022) 2. Levin, I., Han, M.G., Playford, H. Y., Krayzman, V., Zhu, Y., Maier R. A., “Nanoscale correlated octahedral rotations in BaZrO3,” Phys. Rev. B., 104 (21), 214109 (2021) 3
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of double dot devices in situ with machine learning. Phys. Rev. Applied 13, 034075 (2020). [3] J. Ziegler et al. Toward Robust Autotuning of Noisy Quantum dot Devices. Phys. Rev. Applied 17, 024069 (2022). [4
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and electronic worlds: the future of nucleic acid nanotechnology, J. M. Majikes, and J. A. Liddle, Nanoscale, 14, 15586 (2022) High-Resolution DNA Binding Kinetics Measurements with Double Gate FD-SOI