Essential concepts and underlying theories from physics, chemistry, and mathematics for "biochemistry and molecular biology" majors

Biochem Mol Biol Educ. 2013 Sep-Oct;41(5):302-8. doi: 10.1002/bmb.20728. Epub 2013 Sep 10.

Abstract

Over the past two years, through an NSF RCN UBE grant, the ASBMB has held regional workshops for faculty members from around the country. The workshops have focused on developing lists of Core Principles or Foundational Concepts in Biochemistry and Molecular Biology, a list of foundational skills, and foundational concepts from Physics, Chemistry, and Mathematics that all Biochemistry or Molecular Biology majors must understand to complete their major coursework. The allied fields working group created a survey to validate foundational concepts from Physics, Chemistry, and Mathematics identified from participant feedback at various workshops. One-hundred twenty participants responded to the survey and 68% of the respondents answered yes to the question: "We have identified the following as the core concepts and underlying theories from Physics, Chemistry, and Mathematics that Biochemistry majors or Molecular Biology majors need to understand after they complete their major courses: 1) mechanical concepts from Physics, 2) energy and thermodynamic concepts from Physics, 3) critical concepts of structure from chemistry, 4) critical concepts of reactions from Chemistry, and 5) essential Mathematics. In your opinion, is the above list complete?" Respondents also delineated subcategories they felt should be included in these broad categories. From the results of the survey and this analysis the allied fields working group constructed a consensus list of allied fields concepts, which will help inform Biochemistry and Molecular Biology educators when considering the ASBMB recommended curriculum for Biochemistry or Molecular Biology majors and in the development of appropriate assessment tools to gauge student understanding of how these concepts relate to biochemistry and molecular biology.

Keywords: assessment and the design of probes for student understanding and learning; assessment of educational activities; curriculum assessment.

Publication types

  • Research Support, U.S. Gov't, Non-P.H.S.

MeSH terms

  • Biochemistry / education*
  • Chemistry / education*
  • Curriculum*
  • Mathematics / education*
  • Models, Theoretical*
  • Molecular Biology / education*
  • Physics / education*
  • Students