Molecular Biology and Genetics (BIOMG)Agriculture and Life Sciences

Showing 28 results.

Course descriptions provided by the Courses of Study 2017-2018.

BIOMG 1150

Knowledge of the principles of genetics will be acquired through active discussion of human examples. Topics include transmission of genes and chromosomes, sex determination, and chromosomal abnormalities. ... view course details

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Syllabi: none
  •   Regular Academic Session.  Choose one lecture and one discussion.

  • 3 Credits Graded

  •  4485 BIOMG 1150   LEC 001

  •  4486 BIOMG 1150   DIS 201

BIOMG 1350

The course introduces molecular mechanisms that underlie the organization, division, and growth of individual cells; how they organize during embryonic development to form functional tissues and organs ... view course details

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Syllabi:
  •   Regular Academic Session.  Choose one lecture and one discussion.

  • 3 Credits Stdnt Opt

  •  3739 BIOMG 1350   LEC 001

  • Biological Sciences majors must take this course for a letter grade. If you were unable to enroll in BioG 1350 because the course lecture and sections are full, please to go https://biology.cornell.edu/advising and open the link titled "Enrollment Information for BioG 1440 and BioMG 1350", located at the left under the First-Year Planning Guide. If you have other questions about the course, write to biomg1350@cornell.edu.

  •  3782 BIOMG 1350   DIS 201

  • This discussion session will migrate between Stimson 107 and Stimson G04, depending on the daily curriculum.

  •  3783 BIOMG 1350   DIS 202

  • This discussion session will migrate between Stimson 107 and Stimson G04, depending on the daily curriculum.

  •  3784 BIOMG 1350   DIS 203

  • This discussion session will migrate between Stimson 107 and Stimson G04, depending on the daily curriculum.

  •  3785 BIOMG 1350   DIS 204

  • This discussion session will migrate between Stimson 107 and Stimson G04, depending on the daily curriculum.

  •  3786 BIOMG 1350   DIS 205

  • This discussion session will migrate between Stimson 107 and Stimson G04, depending on the daily curriculum.

  •  3787 BIOMG 1350   DIS 206

  • This discussion session will migrate between Stimson 107 and Stimson G04, depending on the daily curriculum.

  •  3788 BIOMG 1350   DIS 207

  • This discussion session will migrate between Stimson 107 and Stimson G04, depending on the daily curriculum.

  •  3789 BIOMG 1350   DIS 208

  • This discussion session will migrate between Stimson 107 and Stimson G04, depending on the daily curriculum.

  •  3790 BIOMG 1350   DIS 209

  • This discussion session will migrate between Stimson 107 and Stimson G04, depending on the daily curriculum.

  •  3791 BIOMG 1350   DIS 210

  • This discussion session will migrate between Stimson 107 and Stimson G04, depending on the daily curriculum.

  •  3990 BIOMG 1350   DIS 211

  • This discussion session will migrate between Stimson 107 and Stimson G04, depending on the daily curriculum.

  •  3991 BIOMG 1350   DIS 212

  • This discussion session will migrate between Stimson 107 and Stimson G04, depending on the daily curriculum.

  •  3992 BIOMG 1350   DIS 213

  • This discussion session will migrate between Stimson 107 and Stimson G04, depending on the daily curriculum.

  •  3993 BIOMG 1350   DIS 214

  • This discussion session will migrate between Stimson 107 and Stimson G04, depending on the daily curriculum.

  •  3994 BIOMG 1350   DIS 215

  • This discussion session will migrate between Stimson 107 and Stimson G04, depending on the daily curriculum.

  •  3995 BIOMG 1350   DIS 216

  • This discussion session will migrate between Stimson 107 and Stimson G04, depending on the daily curriculum.

  •  3996 BIOMG 1350   DIS 217

  • This discussion session will migrate between Stimson 107 and Stimson G04, depending on the daily curriculum.

  •  4187 BIOMG 1350   DIS 218

  • This discussion session will migrate between Stimson 107 and Stimson G04, depending on the daily curriculum.

BIOMG 2800

General introduction to the fundamental principles of genetics in eukaryotes and bacteria. Topics include gene transmission, linkage, recombination, structure, mutations, and manipulation, as well as analysis ... view course details

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Syllabi:
  •   Regular Academic Session. 

  • 3 Credits Stdnt Opt

  •  1078 BIOMG 2800   LEC 001

BIOMG 2801

General introduction to laboratory experimental genetics in eukaryotes and bacteria.  Topics include gene transmission, linkage, recombination, structure, mutations, and manipulation. view course details

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Syllabi: none
  •   Regular Academic Session. 

  • 2 Credits Stdnt Opt

  •  4343 BIOMG 2801   LAB 401

  • Prerequisite or corequisite: BIOMG 2800; BIOG 1500 strongly recommended as pre-requisite. Not open to freshman, fall semester. Biological sciences majors must take course for a letter grade. Course has an evening prelim.Course may not be added after the 1st week of class.

Syllabi: none
  •   Regular Academic Session. 

  • 2 Credits Stdnt Opt

  •  4344 BIOMG 2801   LAB 402

  • Prerequisite or corequisite: BIOMG 2800; BIOG 1500 strongly recommended as pre-requisite. Not open to freshman, fall semester. Biological sciences majors must take course for a letter grade. Course has an evening prelim.Course may not be added after the 1st week of class.

Syllabi: none
  •   Regular Academic Session. 

  • 2 Credits Stdnt Opt

  •  4345 BIOMG 2801   LAB 403

  • Prerequisite or corequisite: BIOMG 2800; BIOG 1500 strongly recommended as pre-requisite. Not open to freshman, fall semester. Biological sciences majors must take course for a letter grade. Course has an evening prelim.Course may not be added after the 1st week of class.

Syllabi: none
  •   Regular Academic Session. 

  • 2 Credits Stdnt Opt

  •  4346 BIOMG 2801   LAB 404

  • Prerequisite or corequisite: BIOMG 2800; BIOG 1500 strongly recommended as pre-requisite. Not open to freshman, fall semester. Biological sciences majors must take course for a letter grade. Course has an evening prelim.Course may not be added after the 1st week of class.

BIOMG 3300

Thirteen units that cover protein structure and function, enzymes, basic metabolic pathways, DNA, RNA, protein synthesis, and an introduction to recombinant DNA techniques. No formal lectures, auto-tutorial ... view course details

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Syllabi:
  •   Regular Academic Session. 

  • 4 Credits Stdnt Opt

  •  1088 BIOMG 3300   LEC 001

  • Prerequisite: one majors-level biology course and one year general chemistry and any of the following organic chemistry courses: CHEM 1570, or CHEM 3530, or CHEM 3570, or CHEM 3590, or equivalent, or permission of instructor. Recommended corequisite: BIOMG 3340.Biological sciences majors must take course for a letter grade. No formal lectures, auto-tutorial format. Organizational meeting: Tuesday, Aug 22, 4:30 - 5:30 PM, BKL 200. Attendance is required.

BIOMG 3310

The chemical reactions important to biology, and the enzymes that catalyze these reactions, are discussed in an integrated format. Topics include protein folding, enzyme catalysis, bioenergetics, and key ... view course details

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Syllabi:
  •   Regular Academic Session. 

  • 3 Credits Stdnt Opt

  •  1228 BIOMG 3310   LEC 001

  • Prerequisite: one majors-level biology course and one year general chemistry, and CHEM 1570, or CHEM 3530, or CHEM 3570, or CHEM 3590, or equivalent, or permission of instructor. The organic chem pre-requisite should be completed before taking BIOMG 3310. An optional discussion section is held on most Fridays from 2:55-3:45pm focusing on issues such as application to medical school or graduate school, and undergraduate research. Evening Prelim. View Prelim Schedule: http://registrar.sas.cornell.edu/Sched/exams.html.

BIOMG 3340

Visualization of complex biomolecules using computer graphics techniques. Group presentations on current topics in molecular biology. view course details

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Syllabi:
  •   Regular Academic Session. 

  • 1 Credit Graded

  •  1089 BIOMG 3340   LEC 001

  • Prerequisite: BIOMG 3330 , BIOMG 3350 , BIOMG 3310 /BIOMG 3320 (BIOMG 3320 may be taken concurrently), or corequisite: BIOMG 3300.

Syllabi:
  •   Regular Academic Session. 

  • 1 Credit Graded

  •  1090 BIOMG 3340   LEC 002

  • Prerequisite: BIOMG 3330 , BIOMG 3350 , BIOMG 3310 /BIOMG 3320 (BIOMG 3320 may be taken concurrently), or corequisite: BIOMG 3300.

Syllabi:
  •   Regular Academic Session. 

  • 1 Credit Graded

  •  1091 BIOMG 3340   LEC 003

  • Prerequisite: BIOMG 3330 , BIOMG 3350 , BIOMG 3310 /BIOMG 3320 (BIOMG 3320 may be taken concurrently), or corequisite: BIOMG 3300.

BIOMG 3850

Introduction to the morphogenetic, molecular and cellular, and genetic aspects of the developmental biology of animals. view course details

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Syllabi:
  •   Regular Academic Session. 

  • 3 Credits Graded

  •  1079 BIOMG 3850   LEC 001

  • Prerequisite: BIOMG 2800 or permission of instructor.

BIOMG 4000

Introduction to principles underlying the organization of genomes and the methods of studying them, emphasizing genome-wide approaches to research. Covers the application of genomics methodologies for ... view course details

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Syllabi:
  •   Regular Academic Session. 

  • 3 Credits Stdnt Opt

  •  1248 BIOMG 4000   LEC 001

  • Prerequisite: two majors-level biology courses and BIOMG 2800 or BIOMG 3300, or 3330, or 3350, or 3310/3320, or permission of instructor.

BIOMG 4310

Overview of current research in biophysics at Cornell by faculty from different departments across the university. Designed for undergraduates considering a career in biophysics and for graduate students ... view course details

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Syllabi: none
  •   Regular Academic Session. 

  • 0.5 Credits Sat/Unsat

  •  1452 BIOMG 4310   LEC 001

  • This is a one day only class, taking place on Saturday, September 9th, 2017.

BIOMG 4370

Covers a wide spectrum of issues related to cell proliferation in eukaryotes. Lectures include various aspects of the regulation of cell division cycle and signal transduction pathways, with additional ... view course details

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Syllabi:
  •   Regular Academic Session.  Choose one lecture and one discussion. Combined with: TOX 4370

  • 3 Credits Stdnt Opt

  •  3671 BIOMG 4370   LEC 001

  • Prerequisite: two majors-level biology courses and BIOMG 3300, or 3330, or 3350, or 3310/3320. Recommended prerequisite: BIOMG 2800 and 4320.

  •  3813 BIOMG 4370   DIS 201

  • Prerequisite: two majors-level biology courses and BIOMG 3300, or 3330, or 3350, or 3310/3320. Recommended prerequisite: BIOMG 2800 and 4320.

  •  3672 BIOMG 4370   DIS 202

BIOMG 4380

Part of the excitement about "the RNA world" stems from the recognition that RNA is ancient and that the evolution of life as we know it depended upon RNA evolving both informational and catalytic capabilities. ... view course details

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Syllabi: none
  •   Regular Academic Session. 

  • 3 Credits Stdnt Opt

  •  5076 BIOMG 4380   LEC 001

  • Prerequisite: BIOMG 3300, or 3330, or 3350, or 3310/3320 or permission of instructor.

BIOMG 4400

Students perform experiments in protein biochemistry  and in molecular biology in an engaging laboratory environment.  The protein biochemistry projects include protein purifications (salt fractionation, ... view course details

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Syllabi: none
  •   Regular Academic Session. 

  • 4 Credits Graded

  •  1281 BIOMG 4400   LAB 401

  • Prerequisite: BIOMG 3300, or BIOMG 3330, or BIOMG 3350, or BIOMG 3310/BIOMG 3320 (at least one of BIOMG 3310/BIOMG 3320 completed but one may be taken concurrently). Priority given to undergraduate biology majors in Biochemistry or Molecular and Cell Biology programs of study and to graduate students with a minor in field of biochemistry. Graduate students must enroll by permission only. Limited enrollment. Please email instructor to be placed on wait-list.

Syllabi: none
  •   Regular Academic Session. 

  • 4 Credits Graded

  •  1282 BIOMG 4400   LAB 402

  • Prerequisite: BIOMG 3300, or BIOMG 3330, or BIOMG 3350, or BIOMG 3310/BIOMG 3320 (at least one of BIOMG 3310/BIOMG 3320 completed but one may be taken concurrently). Priority given to undergraduate biology majors in Biochemistry or Molecular and Cell Biology programs of study and to graduate students with a minor in field of biochemistry. Graduate students must enroll by permission only. Limited enrollment. Please email instructor to be placed on wait-list.

BIOMG 4810

Population genetics is the study of the transmission of genetic variation through time and space. This course explores what the patterns and dynamics of genetic variation in populations can teach us about ... view course details

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Syllabi: none
  •   Regular Academic Session.  Choose one lecture and one discussion. Combined with: BTRY 4810

  • 4 Credits Graded

  •  4710 BIOMG 4810   LEC 001

  • Prerequisite: BIOMG 2800, BIOEE 1780, or equivalents.

  •  4711 BIOMG 4810   DIS 201

  •  4712 BIOMG 4810   DIS 202

BIOMG 4870

Applies fundamental concepts of transmission, population, and molecular genetics to the problem of determining the degree to which familial clustering of diseases in humans has a genetic basis. Emphasizes ... view course details

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Syllabi:
  •   Regular Academic Session. 

  • 3 Credits Graded

  •  1083 BIOMG 4870   LEC 001

  • Prerequisite: BIOMG 2800.

BIOMG 4980

Designed to give qualified undergraduate students teaching experience through actual involvement in planning and assisting in biology courses. This experience may include supervised participation in a ... view course details

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Syllabi: none
  •   Regular Academic Session. 

  • 1-4 Credits Stdnt Opt

  •  3244 BIOMG 4980   IND 601

    • TBA
    • Staff

  • Prerequisite: previous enrollment in course to be taught or equivalent. Arts students may not count this course toward graduation but may, upon petition (one time only) to their class dean, carry fewer than 12 other credits and remain in good standing. This would affect Dean's List eligibility but not eligibility for graduating with distinction. S-U or letter grades by permission of the instructor. Students from all Colleges must submit a CALS Special Studies Form (Available online: http://cals.cornell.edu/academics/registrar/policies/#independent-study). Do not sign into section 601. You will be put in the course after submitting form online.

Syllabi: none
  •   Regular Academic Session. 

  • 1-4 Credits Stdnt Opt

  • 18689 BIOMG 4980   IND 611

    • TBA
    • Blankenship, J

BIOMG 6310

Presentations on the basic principles of protein structure, dynamics, and function. Specific topics include protein stability, dynamics, evolution, molecular recognition, basic enzyme kinetics, ... view course details

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Syllabi: none
  •   Regular Academic Session. 

  • 3 Credits Stdnt Opt

  •  1093 BIOMG 6310   LEC 001

  • Prerequisite: BIOMG 3300, or BIOMG 3330, or BIOMG 3350, or BIOMG 3310/BIOMG 3320 and organic chemistry. Recommended prerequisite: physical chemistry course.

BIOMG 6330

Synthesis of DNA, RNA, and proteins, and regulation of gene expression. view course details

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Syllabi:
  •   Regular Academic Session. 

  • 2 Credits Graded

  •  1095 BIOMG 6330   LEC 001

  • Prerequisite: BIOMG 3300, or BIOMG 3330, or BIOMG 3350, or BIOMG 3310/BIOMG 3320. Recommended prerequisite: BIOMG 2800.

BIOMG 6410

Includes selected experiments on gene expression, biolistic transformation, confocal microscopy, laser capture microdissection, microarray analysis, genetic mapping and mutant analysis, transposon tagging, ... view course details

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Syllabi: none
  •   Regular Academic Session.  Combined with: PLBIO 6410

  • 4 Credits Graded

  • 16774 BIOMG 6410   LAB 401

BIOMG 7800

Lectures and seminars on specialized topics in genetics, genomics and development. Topics for Fall and Spring to be announced in the course and time roster at the beginning of each semester. view course details

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Syllabi: none
  •   Regular Academic Session.  Combined with: BIOMG 7940

  • 1 Credit Sat/Unsat

  • Topic: Grant Proposal Writing

  •  1084 BIOMG 7800   LEC 001

    • R Biotechnology G01
    • Aug 24, 2017
    • Hanson, M

      Soloway, P

      Tumbar, T

      Wolfner, M

      Yu, H

  • Organization meeting TBA. Enrollment limited to: 1st year graduate students in the Field of Genetics, Genomics & Development. This class will be team-taught by multiple field faculty members.

Syllabi: none
  •   Regular Academic Session. 

  • 1 Credit Sat/Unsat

  • Topic: Mitochondrial Func, Evo & Disease

  •  5035 BIOMG 7800   LEC 002

Syllabi: none
  •   Seven Week - Second. 

  • 1 Credit Sat/Unsat

  • Topic: Career Options PhDs, Life Sci

  • 18643 BIOMG 7800   LEC 003

    • F
    • Nov 3, 2017
    • Schimenti, J

  • This course is intended for graduate students in the Field of GGD.

BIOMG 7810

Introduction to the research literature in selected areas through weekly problem sets and discussions. view course details

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Syllabi: none
  •   Regular Academic Session. 

  • 2 Credits Graded

  •  1085 BIOMG 7810   DIS 201

    • T
    • Pawlowski, W

  • Enrollment limited to: first year graduate students in the field of Genetics & Development.

BIOMG 7860

Each graduate student presents one seminar per year based on his or her thesis research. The student then meets with the thesis committee members for an evaluation of the presentation. view course details

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Syllabi: none
  •   Regular Academic Session. 

  • 1 Credit Sat/Unsat

  •  1086 BIOMG 7860   SEM 101

  • Enrollment limited to: graduate students in Genetics & Development.

BIOMG 7870

Seminars in current research in genetics and developmental biology conducted by distinguished visitors and staff. view course details

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Syllabi: none
  •   Regular Academic Session. 

  • 1 Credit Sat/Unsat

  •  1087 BIOMG 7870   SEM 101

  • Enrollment limited to: students in Genetics & Development.

BIOMG 7940

Lectures and seminars on specialized topics. Topics for fall and spring to be announced in the course and time roster published at the beginning of each semester. view course details

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Syllabi: none
  •   Regular Academic Session.  Combined with: BIOMG 7800

  • 1 Credit Sat/Unsat

  • Topic: NSF Grant Proposal Writing

  •  4200 BIOMG 7940   LEC 001

    • R Biotechnology G01
    • Aug 24, 2017
    • Hanson, M

      Soloway, P

      Tumbar, T

      Wolfner, M

      Yu, H

  • Organization meeting TBA. Enrollment is limited to 1st year graduate students in the Field of Biochemistry, Molecular, and Cell Biology. This class will be team-taught by multiple field faculty members.

Syllabi: none
  •   Regular Academic Session. 

  • 0.5-1 Credits Sat/Unsat

  • Topic: PLSF Seminar

  •  4680 BIOMG 7940   LEC 005

    • TBA
    • Barbash, D

Syllabi: none
  •   Seven Week - Second. 

  • 0.5-1 Credits Sat/Unsat

  • Topic: Careers in Molecular Biosciences

  • 15728 BIOMG 7940   LEC 002

    • F
    • Nov 3, 2017
    • Schimenti, J

  • This course is intended for graduate students in the Field of BMCB.

BIOMG 8300

Lectures on current research in biochemistry, presented by distinguished visitors and staff members. view course details

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Syllabi: none
  •   Regular Academic Session. 

  • 0 Credits Sat/Unsat

  •  1099 BIOMG 8300   SEM 101

  • Enrollment limited to: students in Biochemistry, Molecular and Cell Biology(BMCB)

BIOMG 8310

The first half of this course comprises an intensive laboratory covering fundamental aspects of modern molecular biology and cell biology. The second half comprises research in the laboratory of a professor ... view course details

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Syllabi: none
  •   Regular Academic Session. 

  • 6 Credits Sat/Unsat

  •  1100 BIOMG 8310   LAB 401

    • TBA
    • Grimson, A

      Pleiss, J

  • Students must register for both labs. Enrollment only open to 1st year BMCB students. Organizational meeting: first Friday of the semester.

BIOMG 8330

Each student presents one seminar per year on his or her thesis research and then meets with instructors and thesis committee members for evaluation. view course details

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Syllabi: none
  •   Regular Academic Session. 

  • 1 Credit Sat/Unsat

  •  1101 BIOMG 8330   SEM 101

BIOMG 8370

Introduction to the research literature in selected areas through weekly problem sets and discussion. view course details

View Enrollment Information

Syllabi: none
  •   Regular Academic Session. 

  • 2 Credits Graded

  •  3629 BIOMG 8370   DIS 201

  • Enrollment limited to: first semester Ph.D. students in the Graduate Field of BMCB.