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Durkaya, Figen – Hungarian Educational Research Journal, 2023
In science class, students learn by making and living information, enabling them to make sense of knowledge effectively and permanently and to associate it with daily life. Applied science courses make learning more qualified. While science teaching is carried out in application areas such as laboratories, virtual laboratories are used with the…
Descriptors: Computer Simulation, Science Laboratories, Laboratory Training, Science Education
Hester, Susan D.; Nadler, Michele; Katcher, Jennifer; Elfring, Lisa K.; Dykstra, Emily; Rezende, Lisa F.; Bolger, Molly S. – CBE - Life Sciences Education, 2018
Providing opportunities for science, technology, engineering, and mathematics undergraduates to engage in authentic scientific practices is likely to influence their view of science and may impact their decision to persist through graduation. Laboratory courses provide a natural place to introduce students to scientific practices, but existing…
Descriptors: STEM Education, Inquiry, Science Laboratories, College Science
Boltax, Ariana L.; Armanious, Stephanie; Kosinski-Collins, Melissa S.; Pontrello, Jason K. – Biochemistry and Molecular Biology Education, 2015
Modern research often requires collaboration of experts in fields, such as math, chemistry, biology, physics, and computer science to develop unique solutions to common problems. Traditional introductory undergraduate laboratory curricula in the sciences often do not emphasize connections possible between the various disciplines. We designed an…
Descriptors: Biology, Organic Chemistry, Interdisciplinary Approach, Introductory Courses
Suwa, Tomomi; Williamson, Brad – American Biology Teacher, 2014
We present a guided-inquiry biology lesson, using the plant-rhizobium symbiosis as a model system. This system provides a rich environment for developing connections between the big ideas in biology as outlined in the College Board's new AP Biology Curriculum. Students gain experience with the practice of scientific investigation, from…
Descriptors: Science Instruction, Biology, College Science, Science Experiments
Marquard, Robert D.; Steinback, Rebecca – American Biology Teacher, 2009
Major advances in fundamental science are developed using model systems. Classic examples of model systems include Mendel's work with the common garden pea ("Pisium sativa"), classic inheritance work by Morgan with the fruit fly ("Drosophila"), developmental studies with the nematode ("C. elegans"), and transposable elements in maize ("Zea…
Descriptors: Biology, Biochemistry, Science Curriculum, Plants (Botany)
Madihally, Sundararajan V.; Lewis, Randy S. – Chemical Engineering Education, 2007
To enhance bioengineering in the chemical engineering curriculum, a Unit Operations experiment simulating the hemodialysis of creatinine was implemented. The blood toxin creatinine was used for developing a more realistic dialysis experiment. A dialysis model is presented that allows students to assess the validity of model assumptions. This work…
Descriptors: Feedback (Response), Chemical Engineering, Science Curriculum, Simulation
Peer reviewedFox, John N.; And Others – American Biology Teacher, 1995
Describes a course for science education majors that explores the uses of computer-interfaced experiments in a variety of interesting activities. Several examples of biology experiments are given. (ZWH)
Descriptors: Biology, Computer Interfaces, Computer Uses in Education, Science Curriculum
Krasny, Marianne E.; Trautmann, Nancy; Carlsen, William; Cunningham, Christine – 2003
This book contains the student edition of the Environmental Inquiry curriculum series developed at Cornell University. It is designed to teach learning skills for investigating the behaviors of non-native and native species and demonstrate how to apply scientific knowledge to solve real-life problems. This book focuses on strange intruders…
Descriptors: Biology, Ecology, Elementary Secondary Education, Environmental Education
Krasny, Marianne E.; Trautmann, Nancy; Carlsen, William; Cunningham, Christine – 2003
This book contains the teacher's guide of the Environmental Inquiry curriculum series developed at Cornell University. It is designed to teach learning skills for investigating the behaviors of non-native and native species and demonstrate how to apply scientific knowledge to solve real-life problems. This book focuses on strange intruders…
Descriptors: Biology, Ecology, Environmental Education, Inquiry
Peer reviewedHellingman, C. – European Journal of Science Education, 1982
Describes rationale, need, and purpose of three lists of objectives (included in appendices) of objectives for skills and abilities related to experimental, practical work in biology, chemistry, and physics. (SK)
Descriptors: Behavioral Objectives, Biology, Chemistry, Laboratory Procedures
Gardiner, Peter G.; Farragher, Pierce – 1997
The purpose of this study was to survey the quantity and quality of laboratory work conducted by Grade 11 and 12 biology students in British Columbia High Schools, to analyze student performance on laboratory based questions on Provincial examinations, and to examine the curriculum for recommended laboratory work. Examination and curriculum data…
Descriptors: Academic Achievement, Biology, Educational Strategies, Foreign Countries
PDF pending restorationTullock, Bruce, Ed.; And Others – 1979
This guide contains lesson plans and outlines of science activities which present concepts of solar energy in the context of biology experiments. Each unit presents an introduction; objectives; skills and knowledge needed; materials; methods; questions; recommendations for further work; and a teacher information sheet. The teacher information…
Descriptors: Biology, Earth Science, Ecology, Energy
Peer reviewedAmme, Robert C.; Doherty, Ryness – Journal of College Science Teaching, 1992
Describes a college course that provides a challenging learning experience in science based upon famous experiments and observations dating from the time of Aristotle to the present day. Presents information concerning (1) the course organization, structure, laboratory development, and expectations; (2) course content by quarter; (3) evaluation of…
Descriptors: Biology, Chemistry, College Science, Evaluation
Peer reviewedHummer, Paul J., Jr. – American Biology Teacher, 1993
Provides instructions for teachers and students to culture protozoans for use in science laboratories. Sections include setting up a culture area, basic culture media, amoeba culture technique, powdered milk-wheat-rice medium, alfalfa medium, and uses of the protozoa in the laboratory. (PR)
Descriptors: Biology, High Schools, Laboratory Procedures, Microbiology
Peer reviewedCarmichael, Doug – Inquiry, 2001
Discusses BioProjects, a new technique for helping students understand the scientific method, in which students formulate a hypothesis, test it, and present the project to the class. States that through biological, quantitative investigations conducted outside of the classroom, BioProjects helps students develop investigative as well as oral and…
Descriptors: Biology, Community Colleges, Science Curriculum, Science Education

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