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Titlebook: Hydrogen as an Energy Carrier; Technologies, System Carl-Jochen Winter,Joachim Nitsch Book 1988 Springer-Verlag Berlin Heidelberg 1988 Pote

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W. Peschkas chapter describes the strategies as employed by the “From Gene to Lead” platform, including the major computer and experimental approaches and their interrelationship. The latter part of the chapter contains some examples of the steps required for implementing this platform.
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M. Fischer,H. Eichertespect to the catalytic mechanisms. Proteins in distinct organisms are surprisingly homologous, reflecting considerable hysteresis in biological evolution; solutions of catalytic problems are only found once and then further copied. Appreciable similarities occur in the development and anatomy of di
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rsimony, likelihood, and Bayesian methods have been devised for estimating phylogenetic networks and associated parameters using estimated gene trees as data. Use of those inference methods has been augmented with statistical tests for specific hypotheses of hybridization, like the .-statistic. Most
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G. Bauer and the use of supertree methods in divide-and-conquer strategies, and we identify directions where future research could lead to improved supertree methods. Finally, we present a new type of divide-and-conquer strategy that bypasses the need for supertree estimation, in which the division into sub
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W. Schnurnberger,W. Seeger,H. Steebhm to compute the probability of the observed sequence of events. Both Viterbi and forward algorithms are dynamic programming algorithms that we were first exposed to in the chapter on sequence alignment. HMM is applied to reconstructing protein secondary structure as an illustrative example.
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, the term “molecular biologist” came handy. To get the crystallographer, biophysicist, biochemist,and geneticist within hi mself to collaborate with each other probably worked better than a team with a crystallographer, a biophysicist, a biochemist and a geneticist who maynot even be interested in
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J. Nitsch,C. Voigt, the term “molecular biologist” came handy. To get the crystallographer, biophysicist, biochemist,and geneticist within hi mself to collaborate with each other probably worked better than a team with a crystallographer, a biophysicist, a biochemist and a geneticist who maynot even be interested in
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J. Nitsch,C. Voigt, the term “molecular biologist” came handy. To get the crystallographer, biophysicist, biochemist,and geneticist within hi mself to collaborate with each other probably worked better than a team with a crystallographer, a biophysicist, a biochemist and a geneticist who maynot even be interested in
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