1 |
M-01. Overview of Bioinformatics |
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2 |
M-02. Molecular Database Concepts |
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3 |
M-03. Molecular Sequence Databases |
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4 |
M-04. Nucleic Acid Sequence Analysis |
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5 |
M-05. Protein Sequence Analysis |
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6 |
M-06. Sequence Alignment – Meaning and Significance |
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7 |
M-07. Sequence Alignment – Creation Process |
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8 |
M-08. Sequence Similarity Search |
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9 |
M-09. Basic Local Alignment Search Tool - BLAST |
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10 |
M-10. Sequence Alignment – a Practical Example |
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11 |
M-11. Protein Structure Hierarchy |
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12 |
M-12. Molecular Structure Databases |
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13 |
M-13. Analysis of Enzyme Active Site using SwissPDBViewer |
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14 |
M-14. Structural Evaluation of Models for Enzyme Action |
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15 |
M-15. Simulating Enzyme Kinetics |
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16 |
M-16. Simulating Biochemical Pathways |
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17 |
M-17. Protein Strcuture Prediction |
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18 |
M-18. Protein Ligand Docking |
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19 |
M-19. Multiple Sequence Alignment and Phylogenetic Tree Construction |
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20 |
M-20. Evolution of Enzymes |
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21 |
M-21. Probability distribution |
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22 |
M-22. Statistical tests |
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23 |
M-23. Importance of Biostatistics |
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24 |
M-25.a. Sampling Techniques in Biostatistics I |
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25 |
M-25.b. Sampling Techniques in Biostatistics II |
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26 |
M-26. Hypothesis testing, confidence interval and P values |
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27 |
M-27. Measures of Association |
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28 |
M-28. Measures of Central Tendency |
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29 |
M-29. Measures of dipersion |
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30 |
M-30. biostatistics |
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