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  Home > JCE Print > Journal of Chemical Education > Issues > 1997  > June  >
In the Classroom
Grade/Performance Contracts, Enhanced Communication, Cooperative Learning and Student Performance in Undergraduate Organic Chemistry
Ralph C. Dougherty
Department of Chemistry, Florida State University, Tallahassee, FL 32306-3006

Cover
June 1997
Vol. 74 No. 6
p. 722

Abstract
This paper describes a grade/study-performance contract that was designed to increase student retention while maintaining academic performance levels in undergraduate organic chemistry. The experimental course included enhanced communication using electronic mail, and cooperative learning in addition to grade/study-performance contracts. The objective of the grade/study-performance contract was the development of learning skills with creation of a basis for unobtrusive auditing of performance. The retention rate in the experimental course was 0.82 for the first term and 0.93 for the second term. The overall retention was 0.76. This value was 3.8 times the average retention for the same sequence in the previous five years at the same institution. It was seven standard deviations away from the previous mean. The ACS Organic Chemistry Examination percentile score for the control section was 46+25 (n=117). The corresponding data for the experimental section was 53+23 (n=143). When the course was offered with the same instructor, cooperative learning, e-mail, but no grade/study-performance contract the ACS Exam percentile average 37+29. This represents a drop of 9.9 standard deviations for comparison of the means. We conclude that grade/study-performance contracts can be effective in increasing both student performance and retention in undergraduate organic chemistry.
More Information
*  Citation
Dougherty, Ralph C. J. Chem. Educ. 1997 74 722.
*  Keywords
Organic Chemistry, Teaching/Learning Aids, Teaching/Learning Theory/Practice, Chemical Education Research, Internet, Minorities in Chemistry, Descriptive Chemistry, (Cooperative Learning)
*  History
Created:
Last Updated:
July 28, 1999
June 23, 2005
  Home > JCE Print > Journal of Chemical Education > Issues > 1997 > June > Page 722


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