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Showing 1 to 15 of 29 results Save | Export
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Haruna Abe; Kay Colthorpe; Pedro Isaias – Discover Education, 2025
To improve the online learning experience, adaptive learning technologies are being used to personalise learning content to suit individual learning needs, with learning analytics being integrated to collect data about the student usage behaviour on the platform. Research indicates that the adaptive learning platforms promote a supportive learning…
Descriptors: Physiology, Science Instruction, Instructional Design, Learning Management Systems
Yuli Deng – ProQuest LLC, 2021
Personalized learning is gaining popularity in online computer science education due to its characteristics of pacing the learning progress and adapting the instructional approach to each individual learner from a diverse background. Among various instructional methods in computer science education, hands-on labs have unique requirements of…
Descriptors: Individualized Instruction, Experiential Learning, Computer Science Education, Electronic Learning
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Martineau, Carolyn; Traphagen, Stephen; Sparkes, Timothy C. – Journal of Biological Education, 2013
University instructors are challenged to involve large student populations with varying pre-existing knowledge in authentic inquiry. We present a model in which students collaborate to design and run their own experiment and engage in peer evaluation. In the model, students in different lab sections of a multi-section course explore alternative…
Descriptors: Undergraduate Students, Inquiry, Biology, Individualized Instruction
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Watson, David; Knight, Gillian L. – Bioscience Education, 2012
Here we report on the successful implementation of an online experimental summary sheet that enabled the continual student monitoring of a large cohort of students undertaking a 6 week enquiry-based laboratory project. Students submitted a weekly research summary that contained information about their data analysis and future experimental plans.…
Descriptors: Program Effectiveness, Individualized Instruction, Feedback (Response), Data Analysis
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Jakubowski, Henry V. – Biochemistry and Molecular Biology Education, 2011
Content and emphases in undergraduate biochemistry courses can be readily tailored to accommodate the standards of the department in which they are housed, as well as the backgrounds of the students in the courses. A more challenging issue is how to construct laboratory experiences for a class with both chemistry majors, who usually have little or…
Descriptors: Learning Theories, Majors (Students), Biochemistry, Student Experience
Courville, Keith – Online Submission, 2010
(Purpose) This article describes the use of tiered instruction, a specific form of differentiation, within the author's high school Physics classroom. A background and discussion on the nature of tiered instruction is also included. (Findings) Topics addressed in this paper include: (1) the necessity of differentiation within the classroom; (2)…
Descriptors: Action Research, Student Surveys, Physics, Science Instruction
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Mellon, E. K. – Journal of Chemical Education, 1977
Discusses a teaching program for introductory chemistry laboratories that allows for differences in student background and ability. The flexible program involves self-pacing and a classification of experiments; this permits slower students to proceed through remedial loops while advanced students proceed to more difficult experiments. (MLH)
Descriptors: Chemistry, College Science, Individualized Instruction, Instruction
Krubsack, Arnold J. – 1975
As part of an experiment, a three quarter sequence in organic chemistry was designed to be accompanied by laboratory experiments that reinforce the lecture material and encourage independent investigation by minimizing cookbook-style procedures. By having laboratory techniques explained in detail on video casettes, students were exposed to uniform…
Descriptors: Chemistry, College Curriculum, College Students, Curriculum Development
Halyard, Rebecca A.; And Others – 1979
Reported is the analysis of an individualized biology laboratory program in order to determine if objectives of the laboratory were achieved by students and to identify factors related to success in an individualized laboratory. (Author/PB)
Descriptors: Achievement, Biology, College Science, Course Objectives
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Fox, Norris D.; Schor, Mark – 1979
This is the final report of the evaluation of Project CAUSE, a three year project to improve the laboratory portions of undergraduate physics courses at North Texas State University. The report is divided into six sections. Included in the overview are goals and purposes, the instructional format, and the evaluation plan. Demographic profiles…
Descriptors: College Science, Curriculum Evaluation, Higher Education, Individualized Instruction
Forsyth Technical Inst., Winston-Salem, NC.
This vocational physics individualized student instructional module on thermometers consists of the three units: Temperature and heat, expansion thermometers, and electrical thermometers. Designed with a laboratory orientation, experiments are included on linear expansion; making a bimetallic thermometer, a liquid-in-gas thermometer, and a gas…
Descriptors: Individualized Instruction, Instructional Materials, Laboratory Experiments, Laboratory Manuals
Parsons, Ralph
This vocational physics individualized student instructional module on jacks (simple machines used to lift heavy objects) contains student prerequisites and objectives, an introduction, and sections on the ratchet bumper jack, the hydraulic jack, the screw jack, and load limitations. Designed with a laboratory orientation, each section consists of…
Descriptors: Individualized Instruction, Instructional Materials, Laboratory Experiments, Laboratory Manuals
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Forsyth Technical Inst., Winston-Salem, NC.
This vocational physics individualized instructional student module on the alternator consists of the four units: Current electricity, magnets from electricity, electricity from magnets, and energy conversion. Designed with a laboratory orientation, the units present explanations of the concepts and experiments. Laboratory data sheets,…
Descriptors: Individualized Instruction, Instructional Materials, Laboratory Experiments, Laboratory Manuals
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Ogborn, J. M.; Black, P. J. – Physics Education, 1973
Summarizes the early discussion results in the development of a physics project in higher education. Indicates that the first-year experience concentrates on the following aspects: laboratory work, tutorial programs, and individualized instruction. (CC)
Descriptors: College Science, Curriculum Development, Educational Objectives, Individualized Instruction
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Heller, Kenneth – Physics Teacher, 1973
Describes a physics laboratory course which operates without written instructions and with no required experiments. Course is based upon one- or two-week topics in mechanics, heat, electromagnetism and optics with a student-designed experiment in modern physics as an extended project. (DF)
Descriptors: College Science, Course Descriptions, Individualized Instruction, Instruction
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