Academic literature on the topic 'Beem'

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Journal articles on the topic "Beem"

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Aghajanina, John G. "Beem Capsule Removal." Microscopy Today 4, no. 10 (December 1996): 16. http://dx.doi.org/10.1017/s1551929500063306.

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von Känel, Hans, and Thomas Meyer. "Recent progress on BEEM." Ultramicroscopy 73, no. 1-4 (June 1998): 175–83. http://dx.doi.org/10.1016/s0304-3991(97)00152-6.

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NAKASE, Yoshiaki. "Industrial Use of Electron Beem." Journal of the Japan Society of Colour Material 66, no. 1 (1993): 19–27. http://dx.doi.org/10.4011/shikizai1937.66.19.

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Mahr, Matthias. "Beem greift bei Siebträgern an." Lebensmittel Zeitung 73, no. 33 (2021): 44. http://dx.doi.org/10.51202/0947-7527-2021-33-044.

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Der vormalige Nischenanbieter Beem Blitz-Elektro-Erzeugnisse Manufaktur soll nach der Übernahme durch DS Produkte eine andere Rolle im Markt spielen. Die Umpositionierung soll auf den drei Säulen „Qualität, Design und Innovation“ stehen.
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Holly, Jeff M. P. "Editorial." Best Practice & Research Clinical Endocrinology & Metabolism 13, no. 1 (April 1999): vii. http://dx.doi.org/10.1053/beem.1999.0001.

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Bray, George A. "Preface." Best Practice & Research Clinical Endocrinology & Metabolism 13, no. 1 (April 1999): ix—x. http://dx.doi.org/10.1053/beem.1999.0002.

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Deurenberg, Paul, and Mabel Yap. "The assessment of obesity: methods for measuring body fat and global prevalence of obesity." Best Practice & Research Clinical Endocrinology & Metabolism 13, no. 1 (April 1999): 1–11. http://dx.doi.org/10.1053/beem.1999.0003.

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Campfield, L. Arthur, and Françoise J. Smith. "The pathogenesis of obesity." Best Practice & Research Clinical Endocrinology & Metabolism 13, no. 1 (April 1999): 13–30. http://dx.doi.org/10.1053/beem.1999.0004.

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Maffeis, Claudio. "Childhood obesity: the genetic–environmental interface." Best Practice & Research Clinical Endocrinology & Metabolism 13, no. 1 (April 1999): 31–46. http://dx.doi.org/10.1053/beem.1999.0005.

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Björntorp, Per A. "Overweight is risking fate." Best Practice & Research Clinical Endocrinology & Metabolism 13, no. 1 (April 1999): 47–69. http://dx.doi.org/10.1053/beem.1999.0006.

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Dissertations / Theses on the topic "Beem"

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Im, Hsung J. "Metal Contacts to Silicon Carbide and Gallium Nitride Studied with Ballistic Electron Emission Microscopy." The Ohio State University, 2001. http://rave.ohiolink.edu/etdc/view?acc_num=osu1000844302.

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Obernhuber, Sandra. "Ballistische Elektronen-Emissions-Mikroskopie (BEEM) an Ferromagnet-Halbleitergrenzflächen." [S.l.] : [s.n.], 2007. http://deposit.ddb.de/cgi-bin/dokserv?idn=984769412.

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Che, Yulu. "Ambipolar Ballistic Electron Emission Microscopy Studies of Gate-field Modified Schottky Barriers." The Ohio State University, 2010. http://rave.ohiolink.edu/etdc/view?acc_num=osu1282070943.

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Caud, Francois. "Microscopie tunnel à électrons balistiques: vers le Magnétisme." Phd thesis, Université Paris Sud - Paris XI, 2006. http://tel.archives-ouvertes.fr/tel-00080846.

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Ce travail a consisté à développer une microscopie tunnel à électrons balistiques (BEEM) dont l'application finale est l'obtention d'un dispositif d'étude d'objets magnétiques, à l'échelle du nanomètre (imagerie de domaines et de nanostructures magnétiques). Nous présentons ici une formulation poussée de calculs de spectres macroscopiques I(V) et de spectres BEEM Ib(V) qui se révèle très efficace pour l'analyse des données expérimentales. L'étude des I(V) macroscopiques permet, avant toute mesure microscopique, de connaître les caractéristiques importantes d'un échantillon BEEM: hauteur de barrière Schottky, facteur d'idéalité et résistance à tension nulle de la jonction Schottky. Les fonctions d'ajustement des spectres BEEM ont été calculées à partir d'un modèle publié par les pionniers de la technique, que nous décrivons ici dans ses différents stades de raffinement. La mise au point d'un processus chimique adapté à la préparation de surface des substrats de silicium et le travail de salle blanche pour mener à bien les étapes technologiques sont ensuite exposés. Les échantillons fabriqués par évaporation ultra-vide ont révélé de meilleures caractéristiques que ceux faits par pulvérisation cathodique: hauteur de barrière plus élevée, transmission plus grande, bruit réduit. Les mesures BEEM ont montré l'obtention de différents contrastes sur le signal des électrons balistiques. Certains sont nettement liés à une atténuation des électrons chauds par effet d'épaisseur de la couche métallique alors que d'autres contrastes, à la nature clairement différente, ne sont pas totalement compris. La préparation et la caractérisation d'échantillons magnétiques est aussi abordée.
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Tivarus, Cristian Alexandru. "Schottky barrier formation at metal-quantum well interfaces studied with ballistic electron emission microscopy." The Ohio State University, 2006. http://rave.ohiolink.edu/etdc/view?acc_num=osu1134419471.

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Guézo, Sophie. "Microscopie à Emission d'ELectrons Balistiques (BEEM): étude des propriétés électroniques locales d'hétérostructures." Phd thesis, Université Rennes 1, 2009. http://tel.archives-ouvertes.fr/tel-00429319/en/.

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Nous avons développé un microscope à émission d'électrons balistiques (BEEM) sous ultra-vide, dédié à l'étude des propriétés électroniques d'interfaces d'hétérostructures à base de semiconducteurs III-V pertinentes pour des applications potentielles en électronique de spin. Dans un premier temps, nous avons étudié les contacts Schottky épitaxiés Au(110)/GaAs(001) et Fe(001)/GaAs(001). Nous montrons d'un point de vue théorique que le transport cohérent d'électrons chauds à travers le métal et la conservation de la composante transverse du vecteur d'onde électronique à l'interface métal/GaAs sont à l'origine des signatures spectroscopiques BEEM contrastées observées expérimentalement sur ces deux systèmes. Ensuite, l'étude du contact tunnel MgO/GaAs(001) a révélé la présence de canaux de conduction situés dans la bande interdite de MgO. Ces canaux sont associés à la présence de lacunes d'oxygène localisées dans l'oxyde, qui diminuent fortement la hauteur de barrière tunnel. Finalement, le phénomène de magnétorésistance d'électrons chauds dans la vanne de spin Fe/Au/Fe/GaAs(001) permet d'observer par BEEM des domaines et des parois de domaines magnétiques avec une résolution latérale nanométrique.
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Guézo, Sophie. "Microscopie à Emission d’Electrons Balistiques (BEEM) : étude des propriétés électroniques locales d’hétérostructures." Rennes 1, 2009. https://tel.archives-ouvertes.fr/tel-00429321.

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Ce travail de thèse s’est développé autour de la microscopie à émission d’électrons balistiques (BEEM) sous ultra-vide, dédiée à l’étude des propriétés électroniques d’interfaces d’hétérostructures pertinentes pour des applications potentielles en électronique de spin. Dans un premier temps, l’étude de la jonction Schottky Au/GaAs(001) a permis de mettre en évidence l’influence des propriétés structurales sur le transport d’électrons chauds. Une étude similaire sur Fe/GaAs(001) a confirmé la sensibilité du BEEM aux effets de structures électroniques. Ensuite, l’étude BEEM sur les propriétés électroniques locales de la barrière MgO/GaAs(001) a révélé la présence de canaux de conduction situés dans la bande interdite de MgO. Ces canaux sont associés à la présence de lacunes d’oxygène localisées dans l’oxyde, qui diminuent fortement la hauteur de barrière tunnel. Enfin, des études préliminaires de transport d’électrons chauds dépendants du spin sur Fe/Au/Fe/GaAs(001) sont présentées
This thesis work has been developed on ballistic electron emission microscopy (BEEM) under ultra-high vacuum, dedicated to the study of interface electronic properties of heterostructures based on III-V semiconductors, essentially for further potential applications in spintronics. First, the study of Au/GaAs Schottky junction has shown, by comparison between experimental measurements and theorical calculations, the effect of structural properties on hot-electron transport. A similar study realized on Fe/GaAs(001) has confirmed the BEEM sensitivity to electronic structure effects. Then, BEEM measurements on the barrier MgO/GaAs(001) have revealed new conduction channels localized in the band gap of MgO. They are related to oxygen vacancies in the oxide layer, which strongly reduce the tunnel barrier height. Finally, first measurements of spin-polarized hot-electron transport realized on Fe/Au/Fe/GaAs(001) spin-valve are presented
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Beardsley, Jonas T. "Charge-Spin Transport Correlation in Local Electrical Spin Injection in Silicon." The Ohio State University, 2014. http://rave.ohiolink.edu/etdc/view?acc_num=osu1417777678.

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Wennerberg, Fåhraeus Maja. "How to succeed with energy efficient refurbishment measures : A study of the CONCERTO initiative, BEEM-UP project and EPC model." Thesis, Uppsala universitet, Institutionen för teknikvetenskaper, 2015. http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-267908.

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Buildings consume 40 % of Europe’s total energy consumption and causes 33 % of the CO2 emissions. (Pol and Lippert, 2010) Existing old buildings, especially those constructed with limited energy standards before 1960, are in need of refurbishment and energy efficiency. (Economidou, 2011) The thesis is a part of the EU project GrowSmarter, where smart solutions for sustainable cities are to be implemented in the lighthouse cities Stockholm, Cologne and Barcelona. (European Commission, 2014) The purpose of this thesis is to look into the experiences, success factors and barriers from the CONCERTO initiative, BEEM-UP project and EPC model, focusing on energy efficient refurbishment. The intent is that e.g. authorities, municipalities, companies and building owners, who are planning on performing energy efficient refurbishment measures, can access identified success factors and barriers in previous projects of different scale and methods. The conclusions of this study are that the communication and cooperation between stakeholders in a project, knowledge transfer and training of installers are important factors for successful projects. Information and involvement of tenants facilitates work execution, improves results after refurbishment and increases energy knowledge and awareness. The data quantity and quality is another influencing factor on building performance and the difference between calculated and measured energy savings. Stakeholder approach, energy performance regulations, ownership structure and financial status/possibilities for the building owner can affect project results.
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Junay, Alexandra. "Étude des propriétés électroniques et de transport multi-échelle de jonctions tunnel Au/Alcanethiols/n-GaAs(001)." Thesis, Rennes 1, 2015. http://www.theses.fr/2015REN1S024/document.

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Les hétérostructures hybrides organique-inorganique présentent des propriétés intéressantes, notamment pour des applications dans le domaine de l’électronique et de la spintronique. Notre intérêt s’est porté particulièrement sur la réalisation d’hétérostructures de type Métal/Monocouche organique/Semiconducteur, dont l’étape de reprise de top-contact métallique reste actuellement un verrou majeur à la réalisation de telles jonctions. L’expérience de l’équipe sur des hétérostructures de type MOS (Métal/Oxyde/Semiconducteur), ainsi que les différentes techniques de surface et de transport disponibles au laboratoire, sont appliquées ici à l’étude de ces hétérostructures hybrides. En particulier, la Microscopie à Emission d’Electrons Balistiques (BEEM) permet d’étudier localement les propriétés électroniques des hétérostructures, avec une résolution spatiale nanométrique. A partir du système Au/GaAs(001) bien connu au laboratoire, nous avons intercalé une monocouche d’alcanethiols à l’interface, pour former des hétérostructures de type Au/Alcanethiols/GaAs(001), entièrement préparées sous ultra-vide. Lors du dépôt d’or à température ambiante, les images BEEM ont révélé des interfaces hétérogènes, avec des zones où le peigne moléculaire est court-circuité ou non par le métal. Une analyse quantitative en spectroscopie BEEM des zones non court-circuitées a mis en évidence des signatures particulières, avec une première contribution associée au passage tunnel des électrons à travers le peigne moléculaire, et une seconde contribution, à plus haute énergie, révélant l’existence de nouveaux canaux de conduction associés à l’existence d’états inoccupés dans la monocouche organique. Les effets de l’épaisseur du métal déposé, de la longueur de chaîne des molécules organiques, ainsi que du groupe terminal de la chaîne organique, ont été discutés. Afin d’améliorer le dépôt du contact métallique, un dispositif expérimental original a permis de déposer l’or sur le substrat refroidi, sur lequel une couche tampon de Xénon est condensée (méthode BLAG : Buffer Layer Assisted Growth). L’analyse BEEM de ces hétérostructures a révélé ici des interfaces homogènes, sans pénétration du métal. Des signatures spectroscopiques similaires aux zones non court-circuitées précédentes ont été mises en évidence. Une étude complète de ces hétérostructures préparées par la méthode BLAG a été réalisée via des mesures de transport à l’échelle macroscopique (J(V) et C(V)), ainsi que des mesures de photoémission par rayonnement synchrotron. Ces mesures ont confirmé le caractère reproductible des jonctions formées, avec des hauteurs de barrière en accord avec celles déterminées par BEEM
In molecular electronics and spintronics, top-contact metal electrode deposition on organic molecular monolayer (OML)/semiconductor hybrid heterostructures is still a critical issue, leading to metal penetration through the molecules and monolayer’s damage. The experimental set-ups available in the lab and the team’s experience in inorganic-inorganic heterostructures are here applied to hybrid organic-inorganic heterostructures. In particular, the Ballistic Electron Emission Microscopy (BEEM), a technique derived from Scanning Tunneling Microscopy (STM), allows to study electronic properties of such heterostructures, at a nanometer scale. Starting from the well-known Au/GaAs(001) Schottky contact, we here intercalate an alkanethiols monolayer, in order to obtain Au/Alkanethiols/GaAs(001) heterostructures, fully grown in ultra-high vacuum environment. In the case of room-temperature metal deposition, BEEM imaging reveals domains which are short-circuited or not by the metal. A quantitative analysis of non-short-circuited interfaces is realized by BEEM in spectroscopy mode. Particular fingerprints are obtained, with a first component related to electron tunnel transport through the monolayer, and a second component, at higher energy, related to first unoccupied states of the molecular layer reachable for electrons. The effects of metal thickness, molecular chain length and terminal group are discussed. In order to minimize the degree of gold penetration, an alternative top-contact deposition method is used, based on buffer-layer assisted growth (BLAG). BEEM studies on these heterostructures reveal homogeneous interfaces without metal penetration, and similar spectroscopic fingerprints. Complementary studies at macroscopic scale (J(V) and C(V) transport measurements and photoemission by synchrotron radiation) confirm the reproducible character of the junctions with barrier height values similar to the ones obtained by BEEM
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Books on the topic "Beem"

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Bees & bee keeping explained. Newbury: Countryside, 2010.

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Zhongguo mi feng xue. Beijing Shi: Zhongguo nong ye chu ban she, 2001.

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Krivt︠s︡ov, N. I. Vyvod matok i razmnozhenie pchelinykh semeĭ. Sochi: Poligraf-I︠U︡g, 2011.

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I︠U︡maguzhin, F. G. Istorii︠a︡ i sovremennoe sostoi︠a︡nie burzi︠a︡nskoĭ bortevoĭ pchely. Ufa: Gilem, 2010.

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The complete guide to beekeeping for fun & profit: Everything you need to know explained simply. Ocala, Fla: Atlantic Pub. Group, 2010.

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Krivt︠s︡ov, N. I. Porody pchel i ikh selekt︠s︡ii︠a︡. Maĭkop: Poligraf-I︠U︡g, 2010.

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Laurie, Herboldsheimer, ed. The complete idiot's guide to beekeeping. New York, N.Y: Alpha Books, 2010.

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Belknap, Cindy. The complete guide to beekeeping for fun & profit: Everything you need to know explained simply. Ocala, Fla: Atlantic Pub. Group, 2010.

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Belknap, Cindy. The complete guide to beekeeping for fun & profit: Everything you need to know explained simply. Ocala, Fla: Atlantic Pub. Group, 2010.

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Keeping the bees: Why all bees are at risk and what we can do to save them. Toronto: Harper Perennial, 2014.

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Book chapters on the topic "Beem"

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Hallen, H. D., and R. A. Buhrman. "BEEM: A Probe of Nanoscale Modification." In Atomic and Nanometer-Scale Modification of Materials: Fundamentals and Applications, 153–64. Dordrecht: Springer Netherlands, 1993. http://dx.doi.org/10.1007/978-94-011-2024-1_15.

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Consoli, Piero, and Mario Pavone. "O-BEE-COL: Optimal BEEs for COLoring Graphs." In Lecture Notes in Computer Science, 243–55. Cham: Springer International Publishing, 2014. http://dx.doi.org/10.1007/978-3-319-11683-9_19.

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Shiltsev, V., and A. Valishev. "Beam–Beam Effects." In Accelerator Physics at the Tevatron Collider, 411–37. New York, NY: Springer New York, 2014. http://dx.doi.org/10.1007/978-1-4939-0885-1_8.

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Kasumbu, Arnold, and Deepa Pullanikkatil. "Busy as a Bee: Breeding Industrious Bees in Malawi." In Poverty Reduction Through Non-Timber Forest Products, 91–97. Cham: Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-75580-9_14.

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Kajobe, Robert. "Important Bee Plants for African and Other Stingless Bees." In Pot-Honey, 315–35. New York, NY: Springer New York, 2012. http://dx.doi.org/10.1007/978-1-4614-4960-7_22.

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McGrath, J. Mitchell, and Belinda J. Townsend. "Sugar Beet, Energy Beet, and Industrial Beet." In Handbook of Plant Breeding, 81–99. New York, NY: Springer New York, 2014. http://dx.doi.org/10.1007/978-1-4939-1447-0_5.

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Buterbaugh, Kevin, and Richard Fulton. "The Beef Over Beef." In The WTO Primer, 105–22. New York: Palgrave Macmillan US, 2007. http://dx.doi.org/10.1057/9780230610309_6.

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Dujmović, Darko, Boris Androić, and Ivan Lukačević. "Beam to Beam Joints." In Composite Structures According to Eurocode 4, 879–82. D-69451 Weinheim, Germany: Wiley-VCH Verlag GmbH, 2015. http://dx.doi.org/10.1002/9783433604908.ch25.

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Dresel, Michael. "Beer." In Springer Handbook of Odor, 23–24. Cham: Springer International Publishing, 2017. http://dx.doi.org/10.1007/978-3-319-26932-0_7.

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Bährle-Rapp, Marina. "Beer." In Springer Lexikon Kosmetik und Körperpflege, 61. Berlin, Heidelberg: Springer Berlin Heidelberg, 2007. http://dx.doi.org/10.1007/978-3-540-71095-0_1030.

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Conference papers on the topic "Beem"

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Thompson, J., T. Zhang, T. Shen, and M. Hopkinson. "A Ballistic Electron Emission Microscopy (BEEM) Study of Metallic Multilayers." In INTERMAG 2006 - IEEE International Magnetics Conference. IEEE, 2006. http://dx.doi.org/10.1109/intmag.2006.374907.

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Mu, Xiaoyan, Deborah Walter, and Huihui Xu. "Work in progress — Biomedical and Electrical Engineering Methods (BEEM)." In 2010 IEEE Frontiers in Education Conference (FIE). IEEE, 2010. http://dx.doi.org/10.1109/fie.2010.5673656.

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Qasim, Muhammad, and Saima Zafar. "Performance Evaluation of BEEM Clustering Algorithm in Mobile Wireless Sensor Networks." In 2019 22nd International Multitopic Conference (INMIC). IEEE, 2019. http://dx.doi.org/10.1109/inmic48123.2019.9022739.

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Narayanamurti, Venkatesh. "Ballistic electron emission microscopy (BEEM) of novel semiconductor heterostructures and quantum dots." In Optoelectronics and High-Power Lasers & Applications, edited by Gail J. Brown. SPIE, 1998. http://dx.doi.org/10.1117/12.304476.

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Xu, Lina. "The Impact of MIMO on IoT Network Coverage: Case Study with Smart-BEEM." In 2018 12th International Conference on Signal Processing and Communication Systems (ICSPCS). IEEE, 2018. http://dx.doi.org/10.1109/icspcs.2018.8631783.

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Kulish, V. V., A. V. Lysenko, and V. V. Koval. "On the Theory of Superheterodyne Amplification of Electromagnetic Waves in a Plasma-Beem System." In 2007 17th International Crimean Conference - Microwave & Telecommunication Technology. IEEE, 2007. http://dx.doi.org/10.1109/crmico.2007.4368877.

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Hutagalung, S. D., K. A. Yaacob, S. Sakrani, and A. R. Mat Isa. "The Development of BEEM Modeling for the Characterization of Si/Ge Self-Assembled Quantum Dot Heterostructures." In 2006 IEEE Conference on Emerging Technologies - Nanoelectronics. IEEE, 2006. http://dx.doi.org/10.1109/nanoel.2006.1609735.

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Ngo Thi Thanh, Quy, and Minh Nguyen Thi Hong. "Vietnamese Proverbs: Values Preserved in Modern Society." In GLOCAL Conference on Asian Linguistic Anthropology 2020. The GLOCAL Unit, SOAS University of London, 2020. http://dx.doi.org/10.47298/cala2020.4-4.

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Vietnamese proverbs has created long-lasting values which are being passed on to the modern society with numerous passions. These values include humanistic values confirming the human position in life. They also comprise social values and human philosophy as well as aesthetic values. Therefore, typical proverbs of the Viet people which have beem transferred to the younger generations via literary works such as Việt điện u linh (A collection of Vietnamese misteries) in the 14th century, Lĩnh Nam chích quái (A selection of the Viet extraordinary stories) in the 15th century are still being passed on until the present days. With the foundation of traditional Vietnamese proverbs, modern proverbs have undergone profound changes as seen in modern life through different forms of media including printed and audiovisual media as well as internet. It is obvious that traditional proverbs has regenerated in the new appearance. Proverbs are reproduced in modern literary works. Proverbs are also recreated and transformed in prose, poetry and drama. The movement and development of proverbs in our modern society confirm their deep values of the traditional culture. Writers, journalists and artists of other art forms have not only received the art tradition of word use of the ancestors but more importantly they have inherited the culural environment, humanistic values and life philosophies in order to transfer to the next generations. Henceforth, in the modern society Vietnamese proverbs are not obliterated but remain their vitality with different forms and have been of the Vietnamese people’s favourite.
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Kahana, Emmanuel, and Youngjoo Chung. "Commissioning results of the APS storage ring RF beam position monitors." In Beam instrumentation. AIP, 1997. http://dx.doi.org/10.1063/1.52285.

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Puzo, P., J. Buon, J. Jeanjean, F. LeDiberder, and V. Lepeltier. "A submicronic beam size monitor for the final focus test beam." In Beam instrumentation. AIP, 1997. http://dx.doi.org/10.1063/1.52286.

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Reports on the topic "Beem"

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Kim, Hyung Jin. Beam-Bem interactions. Office of Scientific and Technical Information (OSTI), December 2011. http://dx.doi.org/10.2172/1038932.

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Squire, Ursula. BEE CAUSE: Is Legislative Action Protecting Bees from Neonicotinoids Justified? Portland State University Library, January 2000. http://dx.doi.org/10.15760/etd.2989.

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Kelsey K Graham, Kelsey K. Graham. Bee battles: are our native bees losing the fight for resources? Experiment, April 2015. http://dx.doi.org/10.18258/5029.

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Sramek, Christopher. Beam-Beam Interactions. Office of Scientific and Technical Information (OSTI), September 2003. http://dx.doi.org/10.2172/815651.

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Hahn, H. Beam-Beam Limited Luminosity. Office of Scientific and Technical Information (OSTI), February 1985. http://dx.doi.org/10.2172/1119032.

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Abreu N. P. and W. Fischer. Emittance growth with offset beam-beam collisions and small beam-beam parameters. Office of Scientific and Technical Information (OSTI), August 2007. http://dx.doi.org/10.2172/1061875.

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Shiltsev, V., and A. Zinchenko. Electron beam distortions in beam-beam compensation set-up. Office of Scientific and Technical Information (OSTI), April 1998. http://dx.doi.org/10.2172/603075.

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Batygin, Y., and T. Katayama. Beam-Beam Simulation at RHIC. Office of Scientific and Technical Information (OSTI), February 1997. http://dx.doi.org/10.2172/1149835.

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Bane, Karl LF. Beam-Beam Experience at KEKB. Office of Scientific and Technical Information (OSTI), November 2002. http://dx.doi.org/10.2172/808675.

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Bishofberger, Kip Aaron. Successful Beam-Beam Tuneshift Compensation. Office of Scientific and Technical Information (OSTI), January 2005. http://dx.doi.org/10.2172/1223265.

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