Littérature scientifique sur le sujet « DYAMOND »

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Articles de revues sur le sujet "DYAMOND"

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Chang, Hui-Yin, Ching-Tai Chen, Chu-Ling Ko, et al. "iTop-Q: an Intelligent Tool for Top-down Proteomics Quantitation Using DYAMOND Algorithm." Analytical Chemistry 89, no. 24 (2017): 13128–36. http://dx.doi.org/10.1021/acs.analchem.7b02343.

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STEVENS, Bjorn, and Masaki SATOH. "Editorial for the special edition on DYAMOND: The DYnamics of the Atmospheric general circulation Modeled On Non-hydrostatic Domains." Journal of the Meteorological Society of Japan. Ser. II 99, no. 6 (2021): 1393–94. http://dx.doi.org/10.2151/jmsj.2021-d.

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Takasuka, Daisuke, Masaki Satoh, Tomoki Miyakawa, et al. "A protocol and analysis of year‑long simulations of global storm‑resolving models and beyond." Progress in Earth and Planetary Science 11 (December 19, 2024): 66. https://doi.org/10.1186/s40645-024-00668-1.

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Abstract We propose a protocol to evaluate and analyze year-long simulations of global storm-resolving models (GSRMs). The proposed protocol complements an earlier 40-day simulation protocol under the DYAMOND (DYnamics of the Atmospheric general circulation Modeled On Non-hydrostatic Domains) project to allow the analysis of the seasonal cycle and associated climatic relevant phenomena. This intercomparison aims to reveal how GSRMs, which can simulate mesoscale convective systems (MCSs) in the global domain, reproduce atmospheric large-scale structures related to convection beyond month-long s
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Hope Morrison. "Make Way for Dyamonde Daniel (review)." Bulletin of the Center for Children's Books 63, no. 1 (2009): 21–22. http://dx.doi.org/10.1353/bcc.0.1164.

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Zhang, Xunzhong, Travis Roberson, Mike Goatley, Taylor Flanary, and David McCall. "Silicon Enhances Antioxidant Capacity and Photochemical Efficiency in Drought-Stressed Creeping Bentgrass (Agrostis stolonifera L.) Putting Greens." Horticulturae 11, no. 6 (2025): 664. https://doi.org/10.3390/horticulturae11060664.

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Creeping bentgrass (Agrostis stolonifera L.) is an important cool-season turfgrass species that is not well understood. The objective of this study was to determine the effects of the mechanisms underlying silicon (Si) on creeping bentgrass drought tolerance under field conditions from 2022 to 2023. Five treatments, including a control (potassium silicate at 0.95 and 1.90 mL m−2), Dyamin-OSA at 0.64 and 1.28 mL m−2, and Agsil 21 at 0.35 mL m−2, were arranged in a randomized block design with four replications and applied biweekly to creeping bentgrass putting greens during summer months. Defic
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Singer, Julie. "‘De aymant en dyamant’: Lexical transmutations in the works of Philippe de Mézières." postmedieval 11, no. 1 (2020): 102–11. http://dx.doi.org/10.1057/s41280-020-00161-0.

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Ahn, Min-Seop, Paul A. Ullrich, Jiwoo Lee, et al. "Bimodality in simulated precipitation frequency distributions and its relationship with convective parameterizations." npj Climate and Atmospheric Science 7, no. 1 (2024). http://dx.doi.org/10.1038/s41612-024-00685-3.

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AbstractBimodality in precipitation frequency distributions is often evident in atmospheric models, but rarely in observations. This study i) proposes a metric to objectively quantify the bimodality in precipitation distributions, ii) evaluates model simulations contributed to the Coupled Model Intercomparison Project (CMIP) phase 5 (CMIP5), phase 6 (CMIP6), and the DYnamics of the Atmospheric general circulation Modeled On Non-hydrostatic Domains (DYAMOND) project by comparing them to satellite-based and reanalysis precipitation products, and iii) investigates possible origins of bimodal prec
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Turbeville, S. M., T. P. Ackerman, and P. N. Blossey. "Tropical Cirrus in Global‐Storm Resolving Models: 3. Seasonal Changes and TTL Cirrus in the Tropical Western Pacific Using DYAMOND." Earth and Space Science 12, no. 4 (2025). https://doi.org/10.1029/2024ea003884.

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AbstractRecent advances in computer modeling have spurred the production of several global storm‐resolving models (GSRMs), which explicitly represent atmospheric circulations from convective to global scales. As a result, GSRMs simulate the formation and evolution of tropical cirrus clouds more physically than typical global climate models/general circulation models (GCMs) which use parameterizations to represent deep convection. We analyze the output from nine GSRMs from the DYAMOND initiative, focusing on the second phase of DYAMOND that simulated a period in January–February 2020. This pape
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Feng, Zhe, Andreas F. Prein, Julia Kukulies, et al. "Mesoscale Convective Systems Tracking Method Intercomparison (MCSMIP): Application to DYAMOND Global km‐Scale Simulations." Journal of Geophysical Research: Atmospheres 130, no. 8 (2025). https://doi.org/10.1029/2024jd042204.

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AbstractGlobal kilometer‐scale models represent the future of Earth system modeling, enabling explicit simulation of organized convective storms and their associated extreme weather. Here, we comprehensively evaluate tropical mesoscale convective system (MCS) characteristics in the DYAMOND (DYnamics of the atmospheric general circulation modeled on non‐hydrostatic domains) simulations for both summer and winter phases. Using 10 different feature trackers applied to simulations and satellite observations, we assess MCS frequency, precipitation, and other key characteristics. Substantial differe
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Feng, Zhe, L. Ruby Leung, Joseph Hardin, Christopher R. Terai, Fengfei Song, and Peter Caldwell. "Mesoscale Convective Systems in DYAMOND Global Convection‐Permitting Simulations." Geophysical Research Letters 50, no. 4 (2023). http://dx.doi.org/10.1029/2022gl102603.

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Thèses sur le sujet "DYAMOND"

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Holmbäck, Jonatan, and Pontus Asp. "DYAMO Project Report : Report documenting the planning, development and final product of a mobile application developed for the company DYAMO." Thesis, KTH, Skolan för elektroteknik och datavetenskap (EECS), 2021. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-290924.

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DYAMO is a company who strive to empower students to succeed in their studies by setting them up with a mentor that the student can depend on for motivation and help. Furthermore, the students should be able to stay anonymous to the mentors. However, DYAMO does not yet have their own platform to work with. This report will serve as a rundown of how the app, specifically made for DYAMO, was developed. This will later be compared to the initial expectations set out before work on the app started. Finally, there will be some suggestions for what could be further developed in the app for the futur
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Livres sur le sujet "DYAMOND"

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Grimes, Nikki. Dyamonde and Free. G.P. Putnam's Sons, 2009.

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ill, Christie Gregory 1971, ed. Rich: A Dyamonde Daniel Book. G.P. Putnam's Sons, 2009.

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Grimes, Nikki. Almost zero: A Dyamonde Daniel book. G.P. Putnam's Sons, 2010.

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Grimes, Nikki. Halfway to perfect: A Dyamonde Daniel book. G.P. Putnam's Sons, 2012.

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Taylor, Dyme. Dyamond in the Rough. Independently Published, 2019.

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Zoo Adventures with Dyamond and Vesta. TaylorMade Publishing, LLC, 2022.

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Dyamonde Daniels: Loser. Newmark Learning LLC, 2024.

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Dyamonde Daniels: Loser. Newmark Learning LLC, 2024.

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Grimes, Nikki, and The Full Cast Family Nikki Grimes. Make Way for Dyamonde Daniel. Brilliance Audio, 2015.

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Make Way for Dyamonde Daniel. Perfection Learning, 2010.

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Chapitres de livres sur le sujet "DYAMOND"

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Singer, Julie. "‘De aymant en dyamant’: Lexical transmutations in the works of Philippe de Mézières." In Contact Zones. Springer Nature Switzerland, 2022. http://dx.doi.org/10.1007/978-3-031-19852-6_10.

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Actes de conférences sur le sujet "DYAMOND"

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Hong, Seongyon, Wooyoung Jo, Sangjin Kim, Sangyeob Kim, Kyomin Sohn, and Hoi-Jun Yoo. "Dyamond: A 1T1C DRAM In-memory Computing Accelerator with Compact MAC-SIMD and Adaptive Column Addition Dataflow." In 2024 IEEE Symposium on VLSI Technology and Circuits (VLSI Technology and Circuits). IEEE, 2024. http://dx.doi.org/10.1109/vlsitechnologyandcir46783.2024.10631334.

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Kulkarni, Chhaya, Nikki Prive, and Vandana Janeja. "Machine Learning-based Variance Analysis of Brightness Temperature in Simulated Satellite Footprints." In I-GUIDE Forum 2025: Geospatial AI and Innovation for Sustainability Solutions. Purdue University, 2025. https://doi.org/10.5703/1288284317902.

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This study investigates the variance in brightness temperature (BT) within simulated satellite footprints for Observing System Simulation Experiments (OSSE), focusing specifically on Channels 5 and 11 of the Advanced Microwave Sounding Unit (AMSU-A). High-resolution atmospheric simulations from the DYnamics of the Atmospheric general circulation Modeled On Non-hydrostatic Domains (DYAMOND) dataset were utilized to generate brightness temperature data using the Python interface for the Community Radiative Transfer Model (PyCRTM). A computational design map incorporating Random Forest and Associ
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Nelis, Jelle, Tom Verschueren, Dieter Verslype, and Chris Develder. "DYAMAND: DYnamic, Adaptive MAnagement of Networks and Devices." In 2012 IEEE 37th Conference on Local Computer Networks (LCN 2012). IEEE, 2012. http://dx.doi.org/10.1109/lcn.2012.6423604.

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Nelis, Jelle, Heleen Vandaele, Matthias Strobbe, Arnoud Koning, Filip De Turck, and Chris Develder. "Supporting development and management of smart office applications: A DYAMAND case study." In 2015 IFIP/IEEE International Symposium on Integrated Network Management (IM). IEEE, 2015. http://dx.doi.org/10.1109/inm.2015.7140432.

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