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Computational Molecular Biology

"Primarily aimed at advanced undergraduate and graduate students from bioinformatics, computer science, statistics, mathematics and the biological sciences, this text will also interest researchers from these fields."--Jacket.

Dettagli Bibliografici
Autore principale: Peter Clote
Altri autori: Rolf Backofen
Natura: Printed Book
Pubblicazione: New York John Wiley & Sons 2000
Serie:Wiley series in mathematical and computational biology.
Soggetti:
LEADER 01977nam a2200193Ia 4500
999 |c 27012  |d 27012 
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100 |a  Peter Clote 
245 |a Computational Molecular Biology 
260 |a  New York   |b  John Wiley & Sons  |c 2000 
300 |a  ix, 286 pages : illustrations ; 25 cm. 
490 |a  Wiley series in mathematical and computational biology. 
505 |a  1. Molecular Biology. 1.1. Some Organic Chemistry. 1.2. Small Molecules. 1.3. Sugars. 1.4. Nucleic Acids. 1.5. Proteins. 1.6. From DNA to Proteins. 1.7. Exercises -- 2. Math Primer. 2.1. Probability. 2.2. Combinatorial Optimization. 2.3. Entropy and Applications to Molecular Biology. 2.4. Exercises. 2.5. Appendix: Modification of Bezout's Lemma -- 3. Sequence Alignment. 3.1. Motivating Example. 3.2. Scoring Matrices. 3.3. Global Pairwise Sequence Alignment. 3.4. Multiple Sequence Alignment. 3.5. Genomic Rearrangements. 3.6. Locating Cryptogenes and Guide RNA. 3.7. Expected Length of gRNA in Trypanosomes. 3.8. Exercises. 3.9. Appendix: Maximum-Likelihood Estimation for Pair Probabilities -- 4. All About Eve. 4.1. Introduction. 4.2. Rate of Evolutionary Change. 4.3. Clustering Methods. 4.4. Maximum Likelihood. 4.5. Quartet Puzzling. 4.6. Exercises -- 5. Hidden Markov Models. 5.1. Likelihood and Scoring a Model. 5.2. Re-estimation of Parameters. 5.3. Applications. 5.4. Exercises -- 6. Structure Prediction. 
520 |a  "Primarily aimed at advanced undergraduate and graduate students from bioinformatics, computer science, statistics, mathematics and the biological sciences, this text will also interest researchers from these fields."--Jacket. 
650 |a  Bioinformatics. Genetics -- Mathematical models. Molecular biology -- Mathematical models.  
700 |a Rolf Backofen 
942 |c BK 
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