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Gamble, Tim; Turner-Cobb, Julie M.; Walker, Ian; Holt, Nigel – Teaching of Psychology, 2019
Integral to most undergraduate psychology degree programs are research methods courses. Students learn about theory, study design and hypothesis testing, and gain knowledge that is assessed by laboratory reports. We describe a problem-based learning approach with an emphasis on acquisition of study design skills. Working in small groups, students…
Descriptors: Undergraduate Students, Psychology, Hypothesis Testing, Problem Based Learning
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Lawton, Leigh – Journal of Statistics Education, 2009
Hypothesis testing is one of the more difficult concepts for students to master in a basic, undergraduate statistics course. Students often are puzzled as to why statisticians simply don't calculate the probability that a hypothesis is true. This article presents an exercise that forces students to lay out on their own a procedure for testing a…
Descriptors: Hypothesis Testing, Probability, Learning Activities, Statistics
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Halvorson, Sarah J.; Wescoat, James L., Jr. – Journal of Geography, 2002
This paper reports on the design and implementation of a project-based course--World Water Problems--that was introduced within the framework of introductory undergraduate geography education. The aims of the course were twofold: (1) to cultivate in students a world geographic perspective on water problems; and (2) to conduct an original research…
Descriptors: Geography Instruction, Hypothesis Testing, Electronic Libraries, Databases
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Peterson, Nils S.; And Others – Machine-Mediated Learning, 1987
This discussion of teaching science as a design activity emphasizes open-ended problem solving. Highlights include the relationship between teachers and students; hypotheses as solutions; and descriptions of four microworlds, or computer simulations, in chemistry, geography, physiology, and genetics which use graphic interfaces. (LRW)
Descriptors: Chemistry, Computer Assisted Instruction, Computer Graphics, Computer Simulation
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Streibel, Michael; And Others – Machine-Mediated Learning, 1987
Describes an advice-giving computer system being developed for genetics education called MENDEL that is based on research in learning, genetics problem solving, and expert systems. The value of MENDEL as a design tool and the tutorial function are stressed. Hypothesis testing, graphics, and experiential learning are also discussed. (Author/LRW)
Descriptors: Computer Assisted Instruction, Computer Graphics, Computer Simulation, Design