Academic literature on the topic 'NEMS'

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Journal articles on the topic "NEMS"

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Tsang, Erica, Caroline Speers, and Hagen F. Kennecke. "Treatment and outcomes of neuroendocrine malignancies (NEMs) of the rectum." Journal of Clinical Oncology 32, no. 3_suppl (2014): 594. http://dx.doi.org/10.1200/jco.2014.32.3_suppl.594.

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594 Background: NEMs of the rectum are rare and standard therapy is not well defined. We sought to characterize the clinicopathologic features, locoregional, and systemic management of a series of rectal NEMs and correlated these with outcomes. Methods: Patients referred to the BC Cancer Agency with rectal NEMs between 2005-2011 were included. Well-differentiated tumors with a Ki67 ≤20% and/or mitotic count ≤ 20 per high power field were classified as neuroendocrine tumors (NETs) while poorly differentiated tumors with higher Ki67 and/or mitotic count were classified as neuroendocrine carcinom
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Sharke, Paul. "Hybrid NEMS." Mechanical Engineering 123, no. 02 (2001): 42–45. http://dx.doi.org/10.1115/1.2001-feb-1.

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This article presents research work of various groups that are working on using nanotechnology in medical treatments. The researchers at Cornell University’s nanofabrication lab needed to make the propellers on the chip and harvest them, rather than rinse them off. After trial and error, the Cornell engineers came upon a workable combination of biochemical methods and fabrication. Mounting a 2-micrometer polystyrene sphere to the motor, the Cornell researchers made a mechanical amplifier to evaluate the motion of the FI-ATPase enzyme. The group made a small photosynthetic cell by installing th
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Li, Xiaonan, Jinglei Wang, Shang Li, Zhaorong Liu, Zhiru Zheng та Yanzhuo Zhang. "Development and Evaluation of Multifunctional Poly(Lactic-co-glycolic acid) Nanoparticles Embedded in Carboxymethyl β-Glucan Porous Microcapsules as a Novel Drug Delivery System for Gefitinib". Pharmaceutics 11, № 9 (2019): 469. http://dx.doi.org/10.3390/pharmaceutics11090469.

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In this study, a new kind of folic acid (FA)-conjugated and chitosan (CS)-coated poloxamer 407 (P407)/poly(lactic-co-glycolic acid) (PLGA) nanoparticles (NPs), FCPP NPs, were prepared, and further micro-encapsulated by carboxymethyl β-glucan microcapsules (MCs) to produce a multifunctional system of NPs embedded in MCs (NEMs) for potential lung tumor-targeted delivery of gefitinib. The prepared gefitinib-loaded FCPP (GFB/FCPP) NPs showed a hydrodynamic diameter of 255.4 ± 14.5 nm and existed in an amorphous state. After encapsulation in carboxymethyl β-glucan MCs, the GFB/FCPP-based NEMs (GFB/
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Ge, Yu Ping. "Electro-Magnetic Research of NEMS Beam and Cofferdam Structure with Porous Materials." Advanced Materials Research 403-408 (November 2011): 39–42. http://dx.doi.org/10.4028/www.scientific.net/amr.403-408.39.

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We theoretically analyzed the microwave NEMS (Nano- micro- electronic mechanical systems) porous substrate materials and relevant characteristic to NEMS functions to achieve the balance of high performance and the low-cost. And the introduction of the micro fluidic cofferdam development was given at a Glance. ANSYS software was applied on NEMS beam switch simulation. The comparison result was drawn: the threshold voltage of the NEMS beam switch closure increases with metal Young's modulus of the material increases.
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Velozo, Kelly Dayane Stochero, Pedro Celiny Ramos Garcia, Jefferson Pedro Piva, et al. "Scores TISS-28 versus NEMS to size the nursing team in a pediatric intensive care unit." Einstein (São Paulo) 15, no. 4 (2017): 470–75. http://dx.doi.org/10.1590/s1679-45082017ao4028.

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ABSTRACT Objective: To estimate the workload and size the nursing team using the scales TISS-28 and NEMS in a pediatric intensive care unit. Methods: An observational prospective study with a quantitative approach was conducted at the pediatric intensive care unit of a university hospital from Jan 1st, 2009 to Dec 31st, 2009. All children who remained hospitalized for more than 8 hours were included, with length of stay of 4 hours in case of death. Clinical data were collected and the Paediatric Index of Mortality 2 and the scores TISS-28 and NEMS were determined. The TISS-28 and NEMS were con
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Canabarro, Simone Travi, Kelly Dayane Stochero Velozo, Olga Rosária Eidt, Jefferson Pedro Piva, and Pedro Celiny Ramos Garcia. "Validação Concorrente de Escores de Enfermagem (NEMS e TISS-28) em terapia intensiva pediátrica." Acta Paulista de Enfermagem 26, no. 2 (2013): 123–29. http://dx.doi.org/10.1590/s0103-21002013000200004.

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OBJETIVO: Examinar a validade concorrente do escore Nine Equivalents of Nursing Manpower Use Score (NEMS) em comparação ao Therapeutic Intervention Scoring System-28 (TISS-28) em uma Unidade de Terapia Intensiva Pediátrica (UTIP). MÉTODOS: Estudo de coorte prospectivo observacional, realizado na UTIP de um hospital universitário brasileiro, no período de dois anos, com uma amostra de 816 pacientes. Foram realizadas 7.702 observações de cada um dos escores. RESULTADOS: A média da pontuação máxima do NEMS foi 26,6±9,2 e do TISS-28 21,3±8,2. Em todas as médias, o TISS-28 foi inferior ao NEMS (p&l
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Min, Changgi, and Heejin Kim. "A Practical Framework for Developing Net-Zero Electricity Mix Scenarios: A Case Study of South Korea." Energies 17, no. 4 (2024): 926. http://dx.doi.org/10.3390/en17040926.

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This paper proposes a practical framework for developing a net-zero electricity mix scenario (NEMS), which considers detailed conditions for supply of each energy. NEMS means a path scenario for power generation amount by year of each generation resource required to achieve carbon neutrality in 2050. NEMS framework refers to a methodological framework that contains procedures and requirements to continuously update the NEMS by comprehensively reflecting policy changes. For evaluation of NEMS, indicators such as a system inertia resource ratio (SIRR) and a fuel conversion rate (FCR) are propose
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L, Saipriya, Akepati Deekshitha, Shreya Shreya, Shubhika Verma, Swathi C, and Manjunatha C. "Advances in Graphene Based MEMS and Nems Devices: Materials, Fabrication, and Applications." ECS Transactions 107, no. 1 (2022): 10997–1005. http://dx.doi.org/10.1149/10701.10997ecst.

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Microelectromechanical systems (MEMS) are generally known as miniaturized mechanical and electro-mechanical systems, whereas NEMS stands for nanoelectromechanical systems. Graphene is an atomically thin material that features unique properties, such as high carrier mobility, high mechanical strength, and piezoresistive electromechanical transduction, which makes it an extremely promising material for future MEMS and NEMS devices. Design and fabrication of MEMS/NEMS devices using graphene process includes trench etching, wafer backside etching, graphene transfer, and mass release, which are des
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Baier, Jenny L., Shelly M. Palmer, Donna M. Winham, and Mack C. Shelley. "Development of a Nutrition Environment Assessment Tool for Latino Ethnic Stores." International Journal of Environmental Research and Public Health 19, no. 3 (2022): 1860. http://dx.doi.org/10.3390/ijerph19031860.

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The objectives were to: (1) adapt the Nutrition Environment Measures Survey for Stores (NEMS-S) to better culturally fit small Latino grocery stores (tiendas) in Iowa; (2) assess the newly adapted Latino NEMS-S for inter-rater and test-retest reliability; and (3) compare Latino and original NEMS-S summary scores. This pilot instrument, containing culturally appropriate foods from the original NEMS-S and 2015 US Dietary Guidelines for Americans, underwent two rounds of formative evaluation. The new instrument and scoring protocol were applied to a random sample of 42 of 81 possible tiendas in I
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Jokic, Ivana, Milos Frantlovic, Zoran Djuric, and Miroslav Dukic. "RF MEMS/NEMS resonators for wireless communication systems and adsorption-desorption phase noise." Facta universitatis - series: Electronics and Energetics 28, no. 3 (2015): 345–81. http://dx.doi.org/10.2298/fuee1503345j.

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During the past two decades a considerable effort has been made to develop radio-frequency (RF) resonators which are fabricated using the micro/nanoelectro-mechanical systems (MEMS/NEMS) technologies, in order to replace conventional large off-chip components in wireless transceivers and other high-speed electronic systems. The first part of the paper presents an overview of RF MEMS and NEMS resonators, including those based on two-dimensional crystals (e.g. graphene). The frequency tuning in MEMS/NEMS resonators is then analyzed. Improvements that would be necessary in order for MEMS/NEMS res
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Dissertations / Theses on the topic "NEMS"

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Bell, Dominik. "NEMS based on nanocoil structures /." Zürich : ETH, 2007. http://e-collection.ethbib.ethz.ch/show?type=diss&nr=17114.

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Liu, Dixi. "NEMS by sidewall transfer lithography." Thesis, Imperial College London, 2015. http://hdl.handle.net/10044/1/31868.

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A batch fabrication process for nano-electro-mechanical systems (NEMS) based on sidewall transfer lithography (STL) is developed and demonstrated. The STL is used to form nanoscale flexible silicon suspensions entirely by conventional lithography. A two-step process is designed for single-layer STL to fabricate simple electrothermal actuators, while a three-step process is designed to allow nanoscale features intersecting with each other for more complicated device lay-outs. Fabricated nanoscale features has a minimum in-plane width of approx. 100nm and a high aspect ratio of 50 : 1. Combined
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Sage, Eric. "Nouveau concept de spectrométre de masse à base de réseaux de nanostructures résonantes." Thesis, Grenoble, 2013. http://www.theses.fr/2013GRENY045/document.

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L'enjeu du travail est d'apporter une preuve de concept d'une architecture simplifiée de spectromètre en utilisant comme détecteur un réseau ultra-dense de NEMS associés à des éléments de circuit CMOS afin d'amplifier le signal in situ et de les adresser individuellement. Depuis plusieurs années, l'équipe du professeur Roukes à CALTECH a présenté une démonstration de spectrométrie de masse avec un NEMS. En parallèle, le CEA/LETI-MINATEC a développé une approche de fabrication dite VLSI de NEMS et de simulation électromécanique de ces éléments. Le premier but de la thèse est l'étude des phénomè
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Muñoz, Gamarra Jose Luis. "NEMS/MEMS integration in submicron CMOS Technologies." Doctoral thesis, Universitat Autònoma de Barcelona, 2014. http://hdl.handle.net/10803/285060.

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La reducción de los dispositivos MEMS hasta la nano escala (NEMS) ha permitido el acceso a nuevos dominios de la física y promete revolucionar las aplicaciones de sensado. Sin embargo esta miniaturización ha sido conseguida a costa de procesos de fabicración complicados y no reproducibles. Es por ello que esta tesis trata de obtener dichos dispositivos NEMS a partir de una tecnologia CMOS comercial (ST 65nm). Con este objetivo un estudio en detalle de la tecnología ST 65nm es llevado a cabo para posteriormente definir en ella estructuras NEMS en sus diferentes capas (en polysilicio con un gro
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Ye, Fan. "HIGHLY TUNABLE ATOMICALLY THIN RESONANTNANOELECTROMECHANICAL SYSTEMS (NEMS)." Case Western Reserve University School of Graduate Studies / OhioLINK, 2020. http://rave.ohiolink.edu/etdc/view?acc_num=case1589392684740436.

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Leoncino, Luca. "Optomechanical transduction applied to M/NEMS devices." Thesis, Université Grenoble Alpes (ComUE), 2017. http://www.theses.fr/2017GREAY067/document.

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Au cours de ces dernières années, les progrès technologiques dans le domaine dumicro-usinage sur silicium ont permis le développement de Micro/Nano SystèmesÉlectro Mécaniques (M/NEMS) pour réaliser des capteurs ou des actionneurs.Dans le domaine des NEMS, dont les dimensions sont par définition submicroniques,les propriétés obtenues permettent de viser des applications en analyse biochimiqueou biomédicale. Il a été démontré que ces nano capteurs de masse (ou de force)atteignent des résolutions de l’ordre du zeptogramme (10−21 g) ou du picoNewtonce qui permet d’envisager des diagnostics précoce
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Vashisth, Abhishek. "LOW DEVICE COUNT ULTRA LOW POWER NEMS FPGA." Case Western Reserve University School of Graduate Studies / OhioLINK, 2014. http://rave.ohiolink.edu/etdc/view?acc_num=case1383618426.

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Gourlat, Guillaume. "Conception de circuit intégré pour les applications gravimétriques basées sur l’utilisation de résonateurs mécaniques arrangés en réseau." Thesis, Université Grenoble Alpes (ComUE), 2017. http://www.theses.fr/2017GREAT089/document.

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L’extrême sensibilité des résonateurs mécaniques (NEMS) aux variations physiques à l’échelle atomique a permis le développement d’un nouveau concept de spectrométrie de masse à base de NEMS capable de mesurer la taille d’une particule unique. L’utilisation de large réseau de capteurs doit permettre à terme de palier la faible surface de capture des résonateurs tout en ouvrant de nouvelles perspectives pour les applications qui nécessitent des informa- tions sur la répartions spatiale des particules au sein du faisceau de mesure. Pour réaliser un spectromètre de masse à base de NEMS viable pour
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Stalter, David T. "Digital Logic and Multi-valued Memory Using NEMS Switches." Cleveland, Ohio : Case Western Reserve University, 2010. http://rave.ohiolink.edu/etdc/view?acc_num=case1270237106.

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Thesis (Master of Sciences (Engineering))--Case Western Reserve University, 2010<br>Department of EECS - Computer Engineering Title from PDF (viewed on 2010-05-25) Includes abstract Includes bibliographical references and appendices Available online via the OhioLINK ETD Center
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Mier, Alexandro Castellanos. "Poly(N-Isopropylacrylamide) based BioMEMS/NEMS for cell manipulation." [Tampa, Fla] : University of South Florida, 2006. http://purl.fcla.edu/usf/dc/et/SFE0001814.

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Books on the topic "NEMS"

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Leondes, Cornelius T., ed. MEMS/NEMS. Springer US, 2006. http://dx.doi.org/10.1007/b136111.

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H, Bernstein David, ed. Modeling MEMS and NEMS. Chapman & Hall/CRC, 2003.

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H, Bernstein David, ed. Modeling MEMS and NEMS. Chapman & Hall/CRC, 2003.

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Yang, Zhuoqing, ed. Advanced MEMS/NEMS Fabrication and Sensors. Springer International Publishing, 2022. http://dx.doi.org/10.1007/978-3-030-79749-2.

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Grah, Ka the. Slovenski toponimi v nems kih besedilih. 3rd ed. Filozofska fakulteta Univerze v Ljubljani, Oddelek za germanistiko, 2005.

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(Firm), Knovel, ed. MEMS/NEMS: Handbook techniques and applications. Springer, 2006.

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T, Leondes Cornelius, ed. MEMS/NEMS: Handbook techniques and applications. Springer, 2006.

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Tiwari, Atul, and Baldev Raj, eds. Materials and Failures in MEMS and NEMS. John Wiley & Sons, Inc., 2015. http://dx.doi.org/10.1002/9781119083887.

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Baldev, Raj, and Atul Tiwari. Materials and failures in MEMS and NEMS. John Wiley & Sons, 2015.

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J, Hesketh P., Electrochemical Society Sensor Division, Electrochemical Society. Dielectric Science and Technology Division., Electrochemical Society Electronics Division, Electrochemical Society Meeting, and Sociedad Mexicana de Electroquimica. Congreso, eds. Chemical sensors 7 -and- MEMS/NEMS 7. Electrochemical Society, 2006.

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Book chapters on the topic "NEMS"

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Yoda, Minami, Jean-Luc Garden, Olivier Bourgeois, et al. "NEMS." In Encyclopedia of Nanotechnology. Springer Netherlands, 2012. http://dx.doi.org/10.1007/978-90-481-9751-4_100587.

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Chen, Changyao. "Graphene NEMS." In Encyclopedia of Nanotechnology. Springer Netherlands, 2015. http://dx.doi.org/10.1007/978-94-007-6178-0_100991-1.

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Chen, Changyao. "Graphene NEMS." In Encyclopedia of Nanotechnology. Springer Netherlands, 2016. http://dx.doi.org/10.1007/978-94-017-9780-1_100991.

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Kheyraddini Mousavi, Arash, Zayd Chad Leseman, Manuel L. B. Palacio, et al. "BioMEMS/NEMS." In Encyclopedia of Nanotechnology. Springer Netherlands, 2012. http://dx.doi.org/10.1007/978-90-481-9751-4_100065.

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Lalinský, Tibor, Milan Držík, Jiří Jakovenko, and Miroslav Husák. "GaAs Thermally Based MEMS Devices—Fabrication Techniques, Characterization and Modeling." In MEMS/NEMS. Springer US, 2006. http://dx.doi.org/10.1007/0-387-25786-1_12.

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Richter, Andreas. "Hydrogel-based μTAS." In MEMS/NEMS. Springer US, 2006. http://dx.doi.org/10.1007/0-387-25786-1_14.

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Ergun, A. S., G. G. Yaralioglu, O. Oralkan, and B. T. Khuri-Yakub. "MEMS/NEMS Techniques and Applications." In MEMS/NEMS. Springer US, 2006. http://dx.doi.org/10.1007/0-387-25786-1_16.

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Bae, Byunghoon, Kyihwan Park, and Mark A. Shannon. "MEMS Application of Actuators and Sensors for Glaucoma Treatment." In MEMS/NEMS. Springer US, 2006. http://dx.doi.org/10.1007/0-387-25786-1_35.

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Wang, Max Zenghui. "Carbon Nanotube NEMS." In Encyclopedia of Nanotechnology. Springer Netherlands, 2015. http://dx.doi.org/10.1007/978-94-007-6178-0_100992-1.

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Hutin, Louis, and Tsu-Jae King Liu. "NEMS Switch Technology." In Emerging Nanoelectronic Devices. John Wiley & Sons Ltd, 2014. http://dx.doi.org/10.1002/9781118958254.ch18.

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Conference papers on the topic "NEMS"

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Lehninger, Philipp, Axel Jantsch, Andreas Steininger, Elliott Worsey, Victor Marot, and Dinesh Pamunuwa. "Muller C-Element for NEMS." In 2025 29th IEEE International Symposium on Asynchronous Circuits and Systems (ASYNC). IEEE, 2025. https://doi.org/10.1109/async65240.2025.00016.

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Ollier, E., P. Andreucci, L. Duraffourg, et al. "NEMS based on top-down technologies: from stand-alone NEMS to VLSI NEMS & NEMS-CMOS integration." In 2008 IEEE International Conference on Electron Devices and Solid-State Circuits (EDSSC). IEEE, 2008. http://dx.doi.org/10.1109/edssc.2008.4760714.

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Avrutov, V. V., N. I. Bouraou, S. L. Lakoza, et al. "NEMS Gyroscope." In 2017 International Conference on Engineering, Technology and Innovation (ICE/ITMC). IEEE, 2017. http://dx.doi.org/10.1109/ice.2017.8279912.

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"NEMS 2020 Index." In 2020 IEEE 15th International Conference on Nano/Micro Engineered and Molecular System (NEMS). IEEE, 2020. http://dx.doi.org/10.1109/nems50311.2020.9265558.

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"IEEE-NEMS 2014." In 2013 8th IEEE International Conference on Nano/Micro Engineered and Molecular Systems (NEMS). IEEE, 2013. http://dx.doi.org/10.1109/nems.2013.6559673.

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Huang, M. C. Y., Ye Zhou, and C. J. Chang-Hasnain. "NEMS Tunable VCSEL." In 2006 IEEE 20th International Semiconductor Laser Conference, 2006. Conference Digest. IEEE, 2006. http://dx.doi.org/10.1109/islc.2006.1708111.

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Bharath, Sudharsan, M. Balaji, and G. R. Sai Krishna. "Future of NEMS." In ASME 2008 First International Conference on Micro/Nanoscale Heat Transfer. ASMEDC, 2008. http://dx.doi.org/10.1115/mnht2008-52239.

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Nanorobots are quintessential NEMS (nanoelectromechanical systems) and raise all the important issues that must be addressed in NEMS design: sensing, actuation, control, communications, power, and interfacing across spatial scales and between the organic/inorganic and biotic/abiotic realms. Nanorobots are expected to have evolutionary applications in such areas as environmental monitoring and health care. This paper begins by discussing nanorobot construction, which is still at an embryonic stage. The emphasis is on nanomachines, an area which has seen a spate of rapid progress over the last f
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"[NEMS 2019 Top Menu]." In 2019 IEEE 14th International Conference on Nano/Micro Engineered and Molecular Systems (NEMS). IEEE, 2019. http://dx.doi.org/10.1109/nems.2019.8915584.

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"NEMS 2019 Welcome Message." In 2019 IEEE 14th International Conference on Nano/Micro Engineered and Molecular Systems (NEMS). IEEE, 2019. http://dx.doi.org/10.1109/nems.2019.8915665.

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Best, J. T., M. A. Masud, M. P. de Boer, and G. Piazza. "Phase Change NEMS Relay." In 2019 IEEE International Electron Devices Meeting (IEDM). IEEE, 2019. http://dx.doi.org/10.1109/iedm19573.2019.8993584.

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Reports on the topic "NEMS"

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Roukes, Michael, and Mark Dykman. Dynamics-Enabled Nanoelectromechanical Systems (NEMS) Oscillators. Defense Technical Information Center, 2014. http://dx.doi.org/10.21236/ada604923.

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Czaplewski, David A., Darwin Keith Serkland, Roy H. ,. III Olsson, et al. Integrated NEMS and optoelectronics for sensor applications. Office of Scientific and Technical Information (OSTI), 2008. http://dx.doi.org/10.2172/950096.

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Cohen, Jesse A., Jennifer L. Edwards, and Chris Marnay. U.S. Regional Demand Forecasts Using NEMS and GIS. Office of Scientific and Technical Information (OSTI), 2005. http://dx.doi.org/10.2172/886059.

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Atluri, Satya N. Workshop on Advanced Computational Modeling of Bio-Mems & Nems. Defense Technical Information Center, 2004. http://dx.doi.org/10.21236/ada429478.

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Hamachi LaCommare, Kristina, Chris Marnay, Etan Gumerman, Peter Chan, Greg Rosenquist, and Julie Osborn. Investigation of residential central air conditioning load shapes in NEMS. Office of Scientific and Technical Information (OSTI), 2002. http://dx.doi.org/10.2172/813571.

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None, None. Appendix A - GPRA06 benefits estimates: MARKAL and NEMS model baseline cases. Office of Scientific and Technical Information (OSTI), 2009. http://dx.doi.org/10.2172/1216493.

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None, None. Appendix A - GPRA05 benefits estimates: MARKAL and NEMS model baseline cases. Office of Scientific and Technical Information (OSTI), 2009. http://dx.doi.org/10.2172/1216589.

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Author, Not Given. Appendix A: GPRA08 benefits estimates: NEMS and MARKAL Model Baseline Cases. Office of Scientific and Technical Information (OSTI), 2009. http://dx.doi.org/10.2172/1216636.

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Author, Not Given. Appendix A: GPRA07 benefits estimates: NEMS-GPRA07 and MARKAL-GPRA07 baseline cases. Office of Scientific and Technical Information (OSTI), 2009. http://dx.doi.org/10.2172/1216619.

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Plotkin, S. E., and M. K. Singh. Appendix E: Other NEMS-MP results for the base case and scenarios. Office of Scientific and Technical Information (OSTI), 2009. http://dx.doi.org/10.2172/968963.

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