U. Sauer Books
Metabolic Engineering
By A. A. De Graaf, D. E. Stafford, Jens Nielsen, J Nielsen, U. Sauer, H. Sahm, R. T. Gill, G. Stephanopoulos, L. Eggeling, Jens Høiriis Nielsen, R. McDaniel, J Dynesen, M Gárdonyi, B Hahn-Hägerdal, L. J Jönsson, C Khosla, R Licari, M McIntyre, C Miiller, R. R Cordero Otero, C. E Wahlbom, K. S Yanagimachi, W. H. Van Zyl
1 online resource (x, 183 pages) : Metabolic engineering is a rapidly evolving field that is being applied for the optimization of many different industrial processes. In this issue of Advances in...
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Metabolic Engineering
By A. A. De Graaf, D. E. Stafford, Jens Nielsen, J Nielsen, U. Sauer, H. Sahm, R. T. Gill, G. Stephanopoulos, L. Eggeling, Jens Høiriis Nielsen, R. McDaniel, J Dynesen, M Gárdonyi, B Hahn-Hägerdal, L. J Jönsson, C Khosla, R Licari, M McIntyre, C Miiller, R. R Cordero Otero, C. E Wahlbom, K. S Yanagimachi, W. H. Van Zyl
1 online resource (x, 183 pages) : Metabolic engineering is a rapidly evolving field that is being applied for the optimization of many different industrial processes. In this issue of Advances in...
Read More
Metabolic Engineering
By A. A. De Graaf, D. E. Stafford, Jens Nielsen, J Nielsen, U. Sauer, H. Sahm, R. T. Gill, G. Stephanopoulos, L. Eggeling, Jens Høiriis Nielsen, R. McDaniel, J Dynesen, M Gárdonyi, B Hahn-Hägerdal, L. J Jönsson, C Khosla, R Licari, M McIntyre, C Miiller, R. R Cordero Otero, C. E Wahlbom, K. S Yanagimachi, W. H. Van Zyl
1 online resource (x, 183 pages) : Metabolic engineering is a rapidly evolving field that is being applied for the optimization of many different industrial processes. In this issue of Advances in...
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Physica Status Solidi / B.: Volume 62, Number 2 April 1
By R. Sauer, H. J Fischbeck, A. C. Hewson, W.D. GREGORY, J. Bostock, Y. H. Ohtsuki, U. Lindner, H. Pfeiffer, Y. Watanabe, O.F. Schirmer, S. S. Shah, J. E. Baxter, H. Buck, S. Saito, L. V. Tarakanova, G. Alefeld, K P Lee, U Kunze, E. P. Pokatilov, M Lutz, T. Shimizu, W. Hinz, U. Sauer, A. A. Kiselev, K. Minami, S. Takemoto, P. Grosse, S. Shah, K. Masuda, L. S. Kothari, G. Koren, D. Walsh, D HENDERSON, A. A. Gippius, P. Koidl, H. Maier, R. Geick, H. Stolze, E.Z. Kurmaev, G. Iadonisi, D. N. Nasledov, L. Merten, Jex, C. S. Sunandana, J. M. Elson, K. Ikeda, W. Rodewald, W. N Mathews, H. W. Den Hartog, Y Waseda, J Monecke, J Pozela, G Jungk, Yu B Gaididei, A V Liapzev, V M Loktev, R H Ritchie, J Rossat-Mignod, U Scherz, J C Souillat, D Kranzer, H Szymczak, P. BRÜESCH, W. Haubenreisser, A Brau, B S V S R Acharyulu, P Dar Andrade, G Ascakelli, W Bauhofer, R Brazis, J Cazaux, L Dagens, R Droste, J P Farges, A S Filipchenko, Yu A Freiman, D Geist, L Genze, V D Iskra, W Keess, M Kertéz, D Kuse, B Lischke, M Majek, R W Martln, M Ohtani, T Oosterhoff, J R Paitossiait, L Palmetshofer, J Perkin, G Qxjezel, L N Radaikina, C Ramasastry, H G Reik, I T Savatinova, W Schülke, M Shakhtakhtinskii, M P Skivastava, V A Slusarev, M F Sorokina, P Soukiassian, P Streitenberger, B Tairov, A Tamuba, I A Tsekhanovskii, K Uda, W Ulrici, J Uzunova, H Vollmes, S A Vorobev, G P Zucchelli
A disagreement existing in the literature between various calculations of the electrical conductivity in the single-band Hubbard model is resolved. It is replied to an article by Cabib and Kaplan w...
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