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BICH 491: Research
1.00 - 4.00 Credits
Texas A & M University-Galveston
Research. Credit 1 to 4 per semester Laboratory research supervised by a faculty member in the Department of Biochemistry and Biophysics. Registration in multiple sections of this course are possible within a given semester provided that the per semester credit hour limit is not exceeded. Prerequisite: Biochemistry major.
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BICH 491 - Research
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BICH 601: Funds Of Biochem I
3.00 Credits
Texas A & M University-Galveston
Fundamentals of Biochemistry I. (3-0). Credit 3. Basic biochemical concepts pertaining to the structure of the major biomolecules (proteins, carbohydrates, lipids and nucleic acids); the relationship of structure to function of these molecules; structure and action of enzymes; principles of bioenergetics. Prerequisite: One year of organic chemistry.
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BICH 601 - Funds Of Biochem I
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BICH 602: Funds Of Biochem Ii
3.00 Credits
Texas A & M University-Galveston
Fundamentals of Biochemistry II. (3-0). Credit 3. Major metabolic pathways for carbohydrates, lipids, amino acids, proteins and nucleic acids, emphasizing oxidative processes and the biosynthesis of RNA, DNA and protein; regulation of cellular metabolism. Prerequisite: BICH 601.
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BICH 602 - Funds Of Biochem Ii
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BICH 603: General Biochemistry
3.00 Credits
Texas A & M University-Galveston
General Biochemistry I. (3-0). Credit 3. The biochemical properties of macromolecules found in living matter; proteins, enzymes and nucleic acids. Prerequisites: BICH 410 or 601; CHEM 228 and 323.
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BICH 603 - General Biochemistry
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BICH 605: Methods Of Bich Analysis
3.00 Credits
Texas A & M University-Galveston
Methods of Biochemical Analysis. (3-0). Credit 3. Experimental techniques important in biochemistry including methodologies for data analysis. Prerequisite: Graduate classification in biochemistry or approval of instructor.
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BICH 605 - Methods Of Bich Analysis
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BICH 608: Critical Analy Bich Lit
2.00 Credits
Texas A & M University-Galveston
Critical Analysis of the Biochemical Literature. (2-0). Credit 2. Reading and presentation of original articles in biochemistry and related fields to enhance understanding of experimental logic and scientific communication. Prerequisite: Graduate classification in biochemistry or approval of instructor.
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BICH 608 - Critical Analy Bich Lit
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BICH 609: Prep Bich Research Prop
2.00 Credits
Texas A & M University-Galveston
Preparation of a Biochemical Research Proposal. (2-0). Credit 2. Development and presentation of hypotheses, specific aims, significance and experimental approaches for a biochemical research proposal. Prerequisite: Graduate classification in biochemistry.
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BICH 609 - Prep Bich Research Prop
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BICH 624: Enz Prot & Nuc Acids
3.00 Credits
Texas A & M University-Galveston
Enzymes, Proteins and Nucleic Acids. (3-0). Credit 3. Chemical and physical properties of enzymes, proteins and nucleic acids; thermodynamics, kinetics and mechanisms of enzyme-catalyzed reactions and protein-nucleic acid interactions. Prerequisites: BICH 603; CHEM 324.
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BICH 624 - Enz Prot & Nuc Acids
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BICH 625: Nuc Acid-Prot Interact
1.00 Credits
Texas A & M University-Galveston
Nucleic Acid—Protein Interactions. (1-0). Credit 1. Mechanisms of nucleic acid-protein interactions involved in fundamental biochemical processes such as DNA replication and rearrangement, transposition, transcription, RNA splicing and translation; original research articles presented focusing on experimental approaches, interpretation of results and overall significance. Course may be taken 8 times for credit. Prerequisites: BICH 431 or GENE 431 or equivalent; approval of instructor. Cross-listed with MCMD 625.
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BICH 625 - Nuc Acid-Prot Interact
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BICH 628: Computational Biology
3.00 Credits
Texas A & M University-Galveston
Computational Biology. (3-0). Credit 3. Introduction to computational biology; formulations of biology problems as computational problems; computational approaches to solve problems in genomics and proteomics. Prerequisite: Graduate classification or approval of instructor. Cross-listed with CSCE 628.
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BICH 628 - Computational Biology
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