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Hollowell, Gail P.; Osler, James E.; Hester, April L. – Journal of Educational Technology, 2015
This paper provides an applied research rational for a longitudinal investigation that involved teaching a "Technology Engineered Science Education Course" via an Interactive Laboratory Based Genomics Curriculum. The Technology st Engineering [TE] methodology was first introduced at the SAPES: South Atlantic Philosophy of Education…
Descriptors: Science Instruction, Teaching Methods, Science Laboratories, Biology
Wolyniak, Michael J. – Biochemistry and Molecular Biology Education, 2013
A study of modern genetics requires students to successfully unite the principles of Mendelian genetics with the functions of DNA. Traditional means of teaching genetics are often successful in teaching Mendelian and molecular ideas but not in allowing students to see how the two subjects relate. The laboratory module presented here attempts to…
Descriptors: Science Instruction, College Science, Secondary School Science, High Schools
Amenkhienan, Ehichoya; Smith, Edward J. – Biochemistry and Molecular Biology Education, 2006
Variation and polymorphism are concepts that are central to genetics and genomics, primary biological disciplines in which high school students and undergraduates require a solid foundation. From 1998 through 2002, a web-based genetics education program was developed for high school teachers and students. The program included an exercise on using…
Descriptors: High Schools, Secondary School Teachers, Science Instruction, Internet

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