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Artykuły w czasopismach na temat "Spectroscopic Properties of W"
Goldman, Nir, Claude Leforestier, and R. J. Saykally. "A ‘first principles’ potential energy surface for liquid water from VRT spectroscopy of water clusters." Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences 363, no. 1827 (2004): 493–508. http://dx.doi.org/10.1098/rsta.2004.1504.
Pełny tekst źródłaTucker, Sheryl A., Heather C. Bates, Vicki L. Amszi, et al. "Spectroscopic properties of polycyclic aromatic compounds." Analytica Chimica Acta 278, no. 2 (1993): 269–74. http://dx.doi.org/10.1016/0003-2670(93)85109-w.
Pełny tekst źródłaNykvist, Cathryn Dawn, Mahendra Kumar Trivedi, Gopal Nayak, Alice Branton, and Dahryn Trivedi. "A Comprehensive Physical, Spectroscopic, and Thermal Characterization of Withania somnifera (Ashwagandha) Root Extract Treated with the Energy of Consciousness (The Trivedi Effect®)." International Journal of Biomedical Materials Research 5, no. 1 (2017): 5–14. https://doi.org/10.5281/zenodo.822549.
Pełny tekst źródłaVincent, Dianne Heather, Mahendra Kumar Trivedi, Gopal Nayak, Alice Branton, and Dahryn Trivedi. "A Comprehensive Physical, Spectroscopic, and Thermal Characterization of Withania somnifera (Ashwagandha) Root Extract Treated with the Energy of Consciousness (The Trivedi Effect®)." International Journal of Biomedical Materials Research 5, no. 1 (2017): 5–14. https://doi.org/10.5281/zenodo.834415.
Pełny tekst źródłaKonersman, Douglas Jay, Mahendra Kumar Trivedi, Gopal Nayak, Alice Branton, and Dahryn Trivedi. "A Comprehensive Physical, Spectroscopic, and Thermal Characterization of Withania somnifera (Ashwagandha) Root Extract Treated with the Energy of Consciousness (The Trivedi Effect®)." International Journal of Biomedical Materials Research 5, no. 1 (2017): 5–14. https://doi.org/10.5281/zenodo.835640.
Pełny tekst źródłaFeeney, Elizabeth Ann, Mahendra Kumar Trivedi, Gopal Nayak, Alice Branton, and Dahryn Trivedi. "A Comprehensive Physical, Spectroscopic, and Thermal Characterization of Withania somnifera (Ashwagandha) Root Extract Treated with the Energy of Consciousness (The Trivedi Effect®)." International Journal of Biomedical Materials Research 5, no. 1 (2017): 5–14. https://doi.org/10.5281/zenodo.836593.
Pełny tekst źródłaPrague, Jay Anthony, Mahendra Kumar Trivedi, Gopal Nayak, Alice Branton, and Dahryn Trivedi. "A Comprehensive Physical, Spectroscopic, and Thermal Characterization of Withania somnifera (Ashwagandha) Root Extract Treated with the Energy of Consciousness (The Trivedi Effect®)." International Journal of Biomedical Materials Research 5, no. 1 (2017): 5–14. https://doi.org/10.5281/zenodo.838384.
Pełny tekst źródłaStarodub, Joanne Lydia, Mahendra Kumar Trivedi, Gopal Nayak, Alice Branton, and Dahryn Trivedi. "A Comprehensive Physical, Spectroscopic, and Thermal Characterization of Withania somnifera (Ashwagandha) Root Extract Treated with the Energy of Consciousness (The Trivedi Effect®)." International Journal of Biomedical Materials Research 5, no. 1 (2017): 5–14. https://doi.org/10.5281/zenodo.839093.
Pełny tekst źródłaRasdan, Karan, Mahendra Kumar Trivedi, Gopal Nayak, Alice Branton, and Dahryn Trivedi. "A Comprehensive Physical, Spectroscopic, and Thermal Characterization of Withania somnifera (Ashwagandha) Root Extract Treated with the Energy of Consciousness (The Trivedi Effect®)." International Journal of Biomedical Materials Research 5, no. 1 (2017): 5–14. https://doi.org/10.5281/zenodo.840618.
Pełny tekst źródłaMayne, Maire Anne, Mahendra Kumar Trivedi, Gopal Nayak, Alice Branton, and Dahryn Trivedi. "A Comprehensive Physical, Spectroscopic, and Thermal Characterization of Withania somnifera (Ashwagandha) Root Extract Treated with the Energy of Consciousness (The Trivedi Effect®)." International Journal of Biomedical Materials Research 5, no. 1 (2017): 5–14. https://doi.org/10.5281/zenodo.843623.
Pełny tekst źródłaRozprawy doktorskie na temat "Spectroscopic Properties of W"
Dupuis, Anne-Claire. "V2O3(0001)/Au(111) and /W(110) growth, electronic structure and adsorption properties /." Phd thesis, [S.l. : s.n.], 2002. http://deposit.ddb.de/cgi-bin/dokserv?idn=966531736.
Pełny tekst źródłaPfüller, Carsten [Verfasser], Henning [Akademischer Betreuer] Richert, W. Ted [Akademischer Betreuer] Masselink, and Pierre [Akademischer Betreuer] Lefebvre. "Optical properties of single semiconductor nanowires and nanowire ensembles : probing surface physics by photoluminescence spectroscopy / Carsten Pfüller. Gutachter: Henning Richert ; W. Ted Masselink ; Pierre Lefebvre." Berlin : Humboldt Universität zu Berlin, Mathematisch-Naturwissenschaftliche Fakultät I, 2011. http://d-nb.info/1015169082/34.
Pełny tekst źródłaCarnimeo, Ivan. "Computational methods for spectroscopic properties." Doctoral thesis, Scuola Normale Superiore, 2014. http://hdl.handle.net/11384/85802.
Pełny tekst źródłaTucker, Sheryl A. (Sheryl Ann). "Spectroscopic Properties of Polycyclic Aromatic Compounds." Thesis, University of North Texas, 1994. https://digital.library.unt.edu/ark:/67531/metadc278682/.
Pełny tekst źródłaEl-Kholy, S. M. "Spectroscopic investigation of current zero arc properties." Thesis, University of Liverpool, 1988. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.384300.
Pełny tekst źródłaBehera, Swayamprabha. "STABILITY AND SPECTROSCOPIC PROPERTIES OF NEGATIVE IONS." VCU Scholars Compass, 2011. http://scholarscompass.vcu.edu/etd/210.
Pełny tekst źródłaWaters, Cecilia Anne. "Optical, spectroscopic and dielectric properties of metal nanoparticles." Thesis, University of Liverpool, 2006. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.433996.
Pełny tekst źródłaJacobsen, S. M. "Chemical, catalytic and spectroscopic properties of titanium (II)." Thesis, University of Strathclyde, 1986. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.381356.
Pełny tekst źródłaMeacham, Andrew Paul. "The spectroscopic properties of electrochromic ruthenium dioxolene complexes." Thesis, University of Bristol, 2004. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.404181.
Pełny tekst źródłaReynolds, Darren Michael. "The spectroscopic properties of wastewater and potential constituents." Thesis, Cranfield University, 1995. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.309710.
Pełny tekst źródłaKsiążki na temat "Spectroscopic Properties of W"
Susła, Bronisław. Zastosowanie spektroskopii tunelowej do badania przejść elektronowych i emisji światła w złączach metal-izolator-metal. Wydawn. Politechniki Poznańskiej, 1993.
Znajdź pełny tekst źródłaKhristenko, Sergei V., Viatcheslav P. Shevelko, and Alexander I. Maslov. Molecules and Their Spectroscopic Properties. Springer Berlin Heidelberg, 1998. http://dx.doi.org/10.1007/978-3-642-71946-2.
Pełny tekst źródłaShevelko, Viatcheslav P. Atoms and Their Spectroscopic Properties. Springer Berlin Heidelberg, 1997. http://dx.doi.org/10.1007/978-3-662-03434-7.
Pełny tekst źródłaShevelko, Viatcheslav P. Atoms and Their Spectroscopic Properties. Springer Berlin Heidelberg, 1997.
Znajdź pełny tekst źródłaKhristenko, S. V. Molecules and their spectroscopic properties. Springer, 1998.
Znajdź pełny tekst źródłaShevelʹko, V. P. Atoms and their spectroscopic properties. Springer, 1997.
Znajdź pełny tekst źródłaGan, Fuxi. Optical and spectroscopic properties of glass. Springer-Verlag, 1992.
Znajdź pełny tekst źródłaDavidson, G., ed. Spectroscopic Properties of Inorganic and Organometallic Compounds. Royal Society of Chemistry, 2007. http://dx.doi.org/10.1039/9781847558251.
Pełny tekst źródłaDouthwaite, Richard, Simon Duckett, and Jack Yarwood, eds. Spectroscopic Properties of Inorganic and Organometallic Compounds. Royal Society of Chemistry, 2014. http://dx.doi.org/10.1039/9781782621485.
Pełny tekst źródłaYarwood, Jack, Richard Douthwaite, and Simon Duckett, eds. Spectroscopic Properties of Inorganic and Organometallic Compounds. Royal Society of Chemistry, 2009. http://dx.doi.org/10.1039/9781847551054.
Pełny tekst źródłaCzęści książek na temat "Spectroscopic Properties of W"
Manes, L. "Optical and Spectroscopic Properties." In U Uranium. Springer Berlin Heidelberg, 1986. http://dx.doi.org/10.1007/978-3-662-10719-5_3.
Pełny tekst źródłaMaryanoff, Cynthia A. "Spectroscopic Properties of Oxazoles." In Chemistry of Heterocyclic Compounds: A Series Of Monographs. John Wiley & Sons, Inc., 2008. http://dx.doi.org/10.1002/9780470187289.ch2.
Pełny tekst źródłaVašák, Milan, and Jeremias H. R. Kagi. "Spectroscopic Properties of Metallothionein." In Metal Ions in Biological Systems. CRC Press, 2023. http://dx.doi.org/10.1201/9781003418092-6.
Pełny tekst źródłaAlonso, Maria Isabel, and Miquel Garriga. "Optical Properties of Semiconductors." In Spectroscopic Ellipsometry for Photovoltaics. Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-75377-5_4.
Pełny tekst źródłaHartog, H. W. "Spectroscopic Properties of Defect Solids." In Defects and Disorder in Crystalline and Amorphous Solids. Springer Netherlands, 1994. http://dx.doi.org/10.1007/978-94-011-1942-9_20.
Pełny tekst źródłaDemchenko, Alexander P. "Spectroscopic Properties of Protein Chromophores." In Ultraviolet Spectroscopy of Proteins. Springer Berlin Heidelberg, 1986. http://dx.doi.org/10.1007/978-3-642-70847-3_2.
Pełny tekst źródłaBarthomeuf, D. "Spectroscopic Investigations of Zeolite Properties." In Zeolite Microporous Solids: Synthesis, Structure, and Reactivity. Springer Netherlands, 1992. http://dx.doi.org/10.1007/978-94-011-2604-5_10.
Pełny tekst źródłaKhristenko, Sergei V., Viatcheslav P. Shevelko, and Alexander I. Maslov. "Electrical Properties of Molecules." In Molecules and Their Spectroscopic Properties. Springer Berlin Heidelberg, 1998. http://dx.doi.org/10.1007/978-3-642-71946-2_4.
Pełny tekst źródłaFujiwara, Hiroyuki. "Optical Properties of Cu(In,Ga)Se2." In Spectroscopic Ellipsometry for Photovoltaics. Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-75377-5_10.
Pełny tekst źródłaMező, István. "Basic properties of W." In The Lambert W Function. Chapman and Hall/CRC, 2022. http://dx.doi.org/10.1201/9781003168102-1.
Pełny tekst źródłaStreszczenia konferencji na temat "Spectroscopic Properties of W"
Yu, Xiaoxu, Zhongben Pan, Kirill Eremeev та ін. "Watt-Level Diode-Pumped Tm:CALGO Laser at 2.31 μm". У CLEO: Science and Innovations. Optica Publishing Group, 2024. http://dx.doi.org/10.1364/cleo_si.2024.sf1g.3.
Pełny tekst źródłaBernås, Mia, Ida Westermann, Roy Johnsen, et al. "Effect of Tungsten on the Precipitation Kinetics and Localized Corrosion Resistance of Super Duplex Stainless Steels." In CORROSION 2018. NACE International, 2018. https://doi.org/10.5006/c2018-11105.
Pełny tekst źródłaWongcharu, Aoraya, Chanikan Sonklin, Cherdchai Laongtiparos, Siriporn Pranee, Samitthichai Seeyangnok, and Nisalak Trongsiriwat. "Chemical Constituents of Black Galingale Rhizome from Hexane Crude Extract and its Nanoemulsion Preparation." In 2024 8th International Conference on Materials Engineering and Nano Sciences & 2024 8th International Conference on Material Engineering and Manufacturing. Trans Tech Publications Ltd, 2024. http://dx.doi.org/10.4028/p-p1fkxg.
Pełny tekst źródłaPanda, Krutibas, Reece Goldsberry, and Brendan Voglewede. "Corrosion Characterization and Performance Evaluation of Co-Cr Alloys by Laser Powder Bed Fusion and Suitability of Their Use for Pressure Containing Down-hole Wear Components." In CONFERENCE 2022. AMPP, 2022. https://doi.org/10.5006/c2022-17580.
Pełny tekst źródłaYu, Xiaoxu, Kirill Eremeev, Zhongben Pan та ін. "5.5 W Diode-Pumped Tm:YVO4 Laser at 2.29 μm". У Compact EUV & X-ray Light Sources. Optica Publishing Group, 2024. http://dx.doi.org/10.1364/euvxray.2024.jw4a.8.
Pełny tekst źródłaVernickaite, E., Z. Z. Antar, A. Nicolenco, R. Kreivaitis, N. Tsyntsaru, and H. Cesiulis. "Tribological and Corrosion Properties of Iron-Based Alloys." In BALTTRIB 2015. Aleksandras Stulginskis University, 2015. http://dx.doi.org/10.15544/balttrib.2015.29.
Pełny tekst źródłaYu, Xiaoxu, Kirill Eremeev, Zhongben Pan та ін. "6W Diode-Pumped Tm:GdVO4 Laser at 2.29 μm". У Advanced Solid State Lasers. Optica Publishing Group, 2023. http://dx.doi.org/10.1364/assl.2023.am6a.3.
Pełny tekst źródłaVernhes, L., M. Azzi, E. Bousser, and J. E. Klemberg-Sapieha. "Hybrid Co-Cr/W-WC and Ni-W-Cr-B/W-WC Coating Systems." In ITSC2015, edited by A. Agarwal, G. Bolelli, A. Concustell, et al. ASM International, 2015. http://dx.doi.org/10.31399/asm.cp.itsc2015p1031.
Pełny tekst źródłaDurfee, C. G., J. Lynch, and H. M. Milchberg. "Mode Properties of a High Intensity Plasma Waveguide." In High Resolution Fourier Transform Spectroscopy. Optica Publishing Group, 1994. http://dx.doi.org/10.1364/hrfts.1994.wa1.
Pełny tekst źródłaEckart, Sven, Ralph Behrend, and Hartmut Krause. "Microwave influenced laminar premixed hydrocarbon flames: Spectroscopic investigations." In Ampere 2019. Universitat Politècnica de València, 2019. http://dx.doi.org/10.4995/ampere2019.2019.9834.
Pełny tekst źródłaRaporty organizacyjne na temat "Spectroscopic Properties of W"
Stokowski, S., R. Saroyan, and M. Weber. Nd-Doped Laser Glass Spectroscopic and Physical Properties. Office of Scientific and Technical Information (OSTI), 2004. http://dx.doi.org/10.2172/15011789.
Pełny tekst źródłaYull, Rhee Joo. Optical properties of γ- and α-Ce by spectroscopic ellipsometry. Office of Scientific and Technical Information (OSTI), 1992. http://dx.doi.org/10.2172/10166903.
Pełny tekst źródłaMuenter, J. S. Intermolecular potential functions from spectroscopic properties of weakly bound complexes. Office of Scientific and Technical Information (OSTI), 1992. http://dx.doi.org/10.2172/7305438.
Pełny tekst źródłaSanamyan, T., C. Cooper, G. Gilde, A. C. Sutorik, and M. Dubinskii. Spectroscopic Properties of Neodymium and Erbium-Doped Magnesium Oxide Ceramics. Defense Technical Information Center, 2015. http://dx.doi.org/10.21236/ada621403.
Pełny tekst źródłaYohannes, Yohannes. PCC Properties to Support W/C Determination for Durability. Purdue University, 2012. http://dx.doi.org/10.5703/1288284314986.
Pełny tekst źródłaLevitskaia, Tatiana G., Amity Andersen, Sayandev Chatterjee, Gabriel B. Hall, Eric D. Walter, and Nancy M. Washton. Spectroscopic Properties of Tc(I) Tricarbonyl Species Relevant to the Hanford Tank Waste. Office of Scientific and Technical Information (OSTI), 2015. http://dx.doi.org/10.2172/1364016.
Pełny tekst źródłaO’Neal, Kenneth, and Janice Musfeldt. Spectroscopic studies of size-dependent optical properties of oxide nanomaterials, molecule-based materials in extreme condition - Spectroscopic studies of size-dependent optical properties of oxide nanomaterials, molecule-based materials in extreme condition. University of Tennessee, Knoxville, 2019. http://dx.doi.org/10.7290/qtlpnw5g3.
Pełny tekst źródłaDrucker, Robert Brian. Properties of W + jet events in proton-antiproton collisions at 1.8 TeV. Office of Scientific and Technical Information (OSTI), 1993. http://dx.doi.org/10.2172/10107504.
Pełny tekst źródłaCourtney, T. H. Structure, Properties, and Processing of Two-Phase Crystalline-Amorphous W-Based Alloys. Defense Technical Information Center, 2000. http://dx.doi.org/10.21236/ada384294.
Pełny tekst źródłaBobbitt, Jonathan. Optical-based spectroscopic methods for measuring chemical, optical, and physical properties of thin polymer waveguide films. Office of Scientific and Technical Information (OSTI), 2017. http://dx.doi.org/10.2172/1417984.
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