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1

Stocks, Stuart Michael. The flocculation of high concentration cell debris from E.coli. University of Birmingham, 1997.

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2

Tonkaboni, Madjid Mohseni. The influence of cell concentration and morphology on yielding properties of filamentous fermentation broths. National Library of Canada, 1994.

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3

S, Aronson Peter, ed. Na⁺-H⁺ exchange, intracellular pH, and cell function. Academic Press, 1986.

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4

Komhyr, W. D. Operations handbook--ozone measurements to 40-km altitude with model 4A electrochemical concentration cell (ECC) ozonesondes (used with 1680-MHz radiosondes). U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Environmental Research Laboratories, Air Resources Laboratory, 1986.

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5

Komhyr, W. D. Operations handbook--ozone measurements to 40-km altitude with model 4A electrochemical concentration cell (ECC) ozonesondes (used with 1680-MHz radiosondes). U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Environmental Research Laboratories, Air Resources Laboratory, 1986.

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6

Komhyr, W. D. Operations handbook--ozone measurements to 40-km altitude with model 4A electrochemical concentration cell (ECC) ozonesondes (used with 1680-MHz radiosondes). U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Environmental Research Laboratories, Air Resources Laboratory, 1986.

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7

Komhyr, W. D. Operations handbook--ozone measurements to 40-km altitude with model 4A electrochemical concentration cell (ECC) ozonesondes (used with 1680-MHz radiosondes). U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Environmental Research Laboratories, Air Resources Laboratory, 1986.

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8

Komhyr, W. D. Operations handbook--ozone measurements to 40-km altitude with model 4A electrochemical concentration cell (ECC) ozonesondes (used with 1680-MHz radiosondes). U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Environmental Research Laboratories, Air Resources Laboratory, 1986.

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9

Komhyr, W. D. Operations handbook--ozone measurements to 40-km altitude with model 4A electrochemical concentration cell (ECC) ozonesondes (used with 1680-MHz radiosondes). U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Environmental Research Laboratories, Air Resources Laboratory, 1986.

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10

Komhyr, W. D. Operations handbook--ozone measurements to 40-km altitude with model 4A electrochemical concentration cell (ECC) ozonesondes (used with 1680-MHz radiosondes). U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Environmental Research Laboratories, Air Resources Laboratory, 1986.

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11

Komhyr, W. D. Operations handbook--ozone measurements to 40-km altitude with model 4A electrochemical concentration cell (ECC) ozonesondes (used with 1680-MHz radiosondes). U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Environmental Research Laboratories, Air Resources Laboratory, 1986.

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12

Sengil, Nevsan. Solar cell concentrator system. Naval Postgraduate School, 1986.

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13

Luque, A. Solar cells and optics for photovoltaic concentration. A. Hilger, 1989.

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14

S, Sugimura R., and Jet Propulsion Laboratory (U.S.), eds. Concentrator hot-spot testing: Phase I final report. The Laboratory, 1987.

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15

Martha, Symko-Davies, and Society of Photo-optical Instrumentation Engineers., eds. High and low concentration for solar electric applications: 14 August, 2006. SPIE, 2006.

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16

Mackle, Aideen B. Rapid determination of optimum chitosan concentrations for eliciting secondary metabolites in plant cell cultures. The Author], 1992.

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17

Symko-Davies, Martha. High and low concentration for solar electric applications III: 11-12 August 2008, San Diego, California, USA. SPIE, 2008.

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18

Curtis, Henry B. Performance of GaAs and silicon concentrator cells under 37 MeV proton irradiation. National Aeronautics and Space Administration, 1988.

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19

Curtis, Henry B. Performance of GaAs and silicon concentrator cells under 37 MeV proton irradiation. National Aeronautics and Space Administration, 1988.

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20

United States. National Aeronautics and Space Administration., ed. Thin film, concentrator and multijunction space solar cells: Status and potential. National Aeronautics and Space Administration, 1991.

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21

Tugaĭ, V. A. Reguli͡a︡tornai͡a︡ rolʹ protona v membrannykh prot͡s︡essakh myshechnoĭ kletki. Nauk. dumka, 1993.

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22

Jamie, Goode, Chadwick Derek, Novartis Foundation, and Symposium on the Tumour Microenvironment: Causes and Consequences of Hypoxia and Acidity (2000 : London, England), eds. The tumour microenvironment: Causes and consequences of hypoxia and acidity. Wiley, 2001.

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23

Wijesuriya, Kanchana. Limiting glucose concentrations in human breast cancer cell lines, MCF-7/WT and MCF-7/ADR. Laurentian University, 1998.

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24

K, Swartz Clifford, Hart Russell E, and United States. National Aeronautics and Space Administration., eds. Radiation performance of AlGaAs and InGaAs concentrator cells and expected performance of cascade structure. National Aeronautics and Space Administration, 1987.

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25

Center, Lewis Research, ed. Diffusion welding of Cassegrainian concentrator cell stack assemblies: For the period June 1983 - September 1985. National Aeronautics and Space Administration, Lewis Research Center, 1985.

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26

Fanetti, E. High concentration PV 100 W module making use of spectral splitting SI-GaAs coupled cells. Commission of the European Communities, 1985.

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27

W, Hall Stephen, and United States. National Aeronautics and Space Administration., eds. Effect of KOH concentration on LEO cycle life of IPV nickel-hydrogen flight battery cells. National Aeronautics and Space Administration, 1990.

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28

S, Fatemi Navid, and United States. National Aeronautics and Space Administration., eds. A very low resistance, non-sintered contact system for use on indium phosphide concentrator/shallow junction solar cells. National Aeronautics and Space Administration, 1991.

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29

W, Hall Stephen, and United States. National Aeronautics and Space Administration., eds. Effect of KOH concentration on LEO cycle life of IPV nickel-hydrogen flight cells: An update. National Aeronautics and Space Administration, 1991.

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30

Gesellschaft für Christlich-Jüdische Zusammenarbeit Celle., ed. Jüdisches Leben in Celle nach 1945. Verlag für Regionalgeschichte, 2005.

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31

Greene, Lori E. High and low concentrator systems for solar electric applications IV: 3-5 August 2009, San Diego, California, United States. SPIE, 2009.

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32

Nina, Gunde-Cimerman, Oren Aharon 1945-, and Plemenitaš Ana, eds. Adaptation to life at high salt concentrations in Archaea, Bacteria, and Eukarya. Springer, 2005.

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33

Nina, Gunde-Cimerman, Oren Aharon 1952-, and Plemenitaš Ana, eds. Adaptation to life at high salt concentrations in archaea, bacteria, and eukarya. Springer, 2005.

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34

Wojtczuk, Steven. Manufacturing of high-efficiency bi-facial tandem concentrator solar cells: February 20, 2009-August 20, 2010. National Renewable Energy Laboratory, 2011.

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35

Greene, Lori E. High and low concentrator systems for solar electric applications V: 3-4 August 2010, San Diego, California, United States. SPIE, 2010.

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36

(Society), SPIE, ed. High and low concentrator systems for solar electric applications VI: 22-24 August 2011, San Diego, California, United States. SPIE, 2011.

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37

(Germany), Celle, ed. Celle April 1945 revisited: Ein amerikanischer Bombenangriff, deutsche Massaker an KZ-Häftlingen und ein britisches Gerichtsverfahren. Verlag für Regionalgeschichte, 2008.

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38

Nina, Gunde-Cimerman, Oren Aharon 1952-, and Plemenitaš Ana, eds. Adaptation to life at high salt concentrations in archaea, bacteria, and eukarya. Springer, 2005.

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39

Bassermann, Friedrich Jacob. Als Arzt in Bergen-Belsen nach 1945: Ein Bericht über Zeiten und Menschen. Mittelbayerischer Verlag, 2000.

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40

E, Lueck Dale, and United States. National Aeronautics and Space Administration., eds. Evaluation testing of a portable vapor detector for part-per-billion (PPB) level UDMH and N₂H₄. National Aeronautics and Space Administration, 1995.

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41

Forum on New Materials (5th 2010 Montecatini Terme, Italy). New materials II: Thermal-to-electrical energy conversion, photovoltaic solar energy conversion and concentrating solar technologies : proceedings of the 5th Forum on New Materials, part of CIMTEC 2010, 12th International Ceramics Congress and 5th Forum on New Materials, Montecatini Terme, Italy, June 13-18, 2010. Trans Tech Publications, 2011.

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42

Nothnagel, Jürgen. Der Einfluss von Salinität und Lichtintensität auf die Osmolytkonzentrationen, die Zellvolumina und die Wachstumsraten der antarktischen Eisdiatomeen Chaetoceros sp. und Navicula sp. unter besonderer Berücksichtigung der Aminosäure Prolin =: The effects of salinity and light intensity on the osmolyte concentrations, cell volumes and growth rates of the antarctic sea-ice diatoms Chaetoceros sp. and Navicula sp. with emphasis on the amino acid proline. Alfred-Wegener-Institut für Polar- und Meeresforschung, 1995.

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43

Nothnagel, Jürgen. Der Einfluss von Salinität und Lichtintensität auf die Osmolytkonzentrationen, die Zellvolumina und die Wachstumsraten der antarktischen Eisdiatomeen Chaetoceros sp. und Navicula sp. unter besonderer Berücksichtigung der Aminosäure Prolin =: The effects of salinity and light intensity on the osmolyte concentrations, cell volumes and growth rates of the Antarctic sea-ice diatoms Chaetoceros sp. and Navicula sp. with emphasis on the amino acid proline. Alfred-Wegener-Institut für Polar- und Meeresforschung, 1995.

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44

Heuser, Florian. Increasing the Productivity of Whole Cell Biotransformation by Enhancing the Intracellular Nad Concentration. GRIN Verlag GmbH, 2009.

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45

Doucet, Alain, and Gilles Crambert. Potassium homeostasis. Edited by Robert Unwin. Oxford University Press, 2015. http://dx.doi.org/10.1093/med/9780199592548.003.0023.

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The equilibrium between the concentration of K+ in the extracellular space (low) and the intracellular compartment (high) is crucial for maintaining the electrical properties of excitable and non-excitable cells, because it determines the membrane resting potential. The high intracellular concentration of K+ (120–140 mmol/L) also contributes to the intracellular osmolarity, a determinant of cell volume. It is therefore crucial to finely tune both extracellular and intracellular K+ concentrations. There is a coordinated regulation between processes/mechanisms that store/release K+ from internal
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46

Tunggal, Jonathan Kurniadi. Cell concentration and drug penetration: Implications for the reversal of multidrug resistance in solid tumours. 1999.

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47

Ravensbrück. Der Zellenbau: Geschichte und Gedenken ; Begleitband zur Ausstellung = Ravensbrück. The cell building : history and commemoration ; essays accompanying the exhibition. Metropol, 2008.

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48

Zito, Ralph. Concentration Cells. Wiley & Sons, Incorporated, John, 2030.

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49

Douglas, Kenneth. Bioprinting. Oxford University Press, 2021. http://dx.doi.org/10.1093/oso/9780190943547.001.0001.

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Abstract: This book describes how bioprinting emerged from 3D printing and details the accomplishments and challenges in bioprinting tissues of cartilage, skin, bone, muscle, neuromuscular junctions, liver, heart, lung, and kidney. It explains how scientists are attempting to provide these bioprinted tissues with a blood supply and the ability to carry nerve signals so that the tissues might be used for transplantation into persons with diseased or damaged organs. The book presents all the common terms in the bioprinting field and clarifies their meaning using plain language. Readers will lear
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50

Martinson, Kerry Elizabeth. Changes in plasma pyridoxal 5'-phosphate and red blood cell pyridoxal 5'-phosphate concentration during an oral glucose tolerance test in persons with diabetes mellitus. 1994.

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