BIOMG 1350

BIOMG 1350

Course information provided by the Courses of Study 2024-2025.

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 in multicellular organisms; and how their misbehavior contributes to disease. Students seeking additional help with the material taught in BIOMG 1350 should consider the active learning supplemental class BIOMG 1035 (see course catalog for details). The learning outcomes below indicate the topics and skills that students should master upon completion of the course.

When Offered Fall, Spring, Summer.

Distribution Category (BIO-AS) (BIO-AG, OPHLS-AG)

Comments Biological sciences majors must take course for a letter grade. Students may not receive credit for BIOG 1140 after taking BIOMG 1350.

Outcomes
  • The internal organization of the cell, cellular organelles, and their main functions.
  • The four major classes of macromolecules in cells.
  • The diversity of structures that allow proteins to execute nearly all of a cell's myriad functions.
  • The molecular basis of various cellular processes such as secretory pathway and the cell cycle.
  • The signaling pathways used by cells to communicate with each other and with their environment.
  • Individual cell behaviors that act to promote form and function of embryonic tissue and organs.
  • How to apply concepts learned in class to interpret hypothetical experimental observations.
  • How to acquire scientific information from various databases and from the primary literature.

View Enrollment Information

Syllabi: none
  •   Regular Academic Session.  Choose one lecture and one discussion. Combined with: BIOMG 5350

  • 3 Credits Stdnt Opt

  •  1688 BIOMG 1350   LEC 001

  • Instruction Mode: In Person
    Biological Sciences majors must take this course for a letter grade.

  •  1716 BIOMG 1350   DIS 201

  • Instruction Mode: In Person

  •  1717 BIOMG 1350   DIS 202

  • Instruction Mode: In Person

  •  1718 BIOMG 1350   DIS 203

    • R Kennedy Hall 105
    • Aug 26 - Dec 9, 2024
    • Tumbar, T

  • Instruction Mode: In Person

  •  1719 BIOMG 1350   DIS 204

  • Instruction Mode: In Person

  •  1720 BIOMG 1350   DIS 205

  • Instruction Mode: In Person

  •  1721 BIOMG 1350   DIS 206

    • R Kennedy Hall 101
    • Aug 26 - Dec 9, 2024
    • Tumbar, T

  • Instruction Mode: In Person

  •  1722 BIOMG 1350   DIS 207

    • R Fernow Hall G01
    • Aug 26 - Dec 9, 2024
    • Tumbar, T

  • Instruction Mode: In Person

  •  1723 BIOMG 1350   DIS 208

  • Instruction Mode: In Person

  •  1724 BIOMG 1350   DIS 209

  • Instruction Mode: In Person

  •  1725 BIOMG 1350   DIS 210

    • R Fernow Hall G01
    • Aug 26 - Dec 9, 2024
    • Tumbar, T

  • Instruction Mode: In Person

  •  1774 BIOMG 1350   DIS 211

  • Instruction Mode: In Person

  •  1775 BIOMG 1350   DIS 212

  • Instruction Mode: In Person

  •  1776 BIOMG 1350   DIS 213

    • F Warren Hall 113
    • Aug 26 - Dec 9, 2024
    • Tumbar, T

  • Instruction Mode: In Person

  •  1777 BIOMG 1350   DIS 214

    • F Warren Hall 137
    • Aug 26 - Dec 9, 2024
    • Tumbar, T

  • Instruction Mode: In Person

  •  1778 BIOMG 1350   DIS 215

    • F Warren Hall 137
    • Aug 26 - Dec 9, 2024
    • Tumbar, T

  • Instruction Mode: In Person

  •  1779 BIOMG 1350   DIS 216

    • F Fernow Hall G01
    • Aug 26 - Dec 9, 2024
    • Tumbar, T

  • Instruction Mode: In Person

  •  1780 BIOMG 1350   DIS 217

  • Instruction Mode: In Person

  •  1815 BIOMG 1350   DIS 218

  • Instruction Mode: In Person

  •  2135 BIOMG 1350   DIS 219

  • Instruction Mode: In Person

  •  2136 BIOMG 1350   DIS 220

  • Instruction Mode: In Person

  •  2193 BIOMG 1350   DIS 221

    • F Fernow Hall G01
    • Aug 26 - Dec 9, 2024
    • Graef, M

      Tumbar, T

  • Instruction Mode: In Person