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Amelia Auchstetter; Eben Witherspoon; Oluchi Ozuzu; Jonathan Margolin; Lawrence B. Friedman – American Institutes for Research, 2023
The purpose of this study was to evaluate the implementation and impact of the Pack program. The Pack was developed by the New York Hall of Science (NYSCI) and includes a digital game and set of curricular and professional development resources that aim to support computational thinking teaching and learning in middle school science and computer…
Descriptors: Computation, Thinking Skills, Educational Games, Program Implementation
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Hermanns, Jolanda – Journal of Chemical Education, 2021
Educational Scaffolding was first mentioned in 1976 by Wood et al. Several examples for scaffolding in chemistry are also known from the literature. As written scaffolds, stepped supporting tools to support students while solving problems in organic chemistry were developed, applied, and evaluated. Although the students rated the tool as very…
Descriptors: Scaffolding (Teaching Technique), Organic Chemistry, Science Instruction, Teaching Methods
Alfaiz, Fahad Suliman – ProQuest LLC, 2019
Developing students' creative problem solving skills should be one of the top goals in general education. One teaching model that was developed to increase students' creative problem solving abilities is the Real Engagement in Active Problem Solving (REAPS) model. This model was used as an intervention in classrooms in many studies. However, the…
Descriptors: Program Implementation, Fidelity, Creativity, Problem Solving
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Lin, Yu-Tzu; Wang, Ming-Tsan; Wu, Cheng-Chih – Asia-Pacific Education Researcher, 2019
This study designs and implements interdisciplinary STEM instruction by adopting modelling-based physics programming, and explores its effectiveness on learning. A quasi-experimental study was conducted. The experimental group wrote programs to solve physics problems by following the modelling process, while the control group solved general…
Descriptors: Design, STEM Education, Program Implementation, Science Instruction
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Tsakeni, Maria – EURASIA Journal of Mathematics, Science and Technology Education, 2021
Inquiry-based practical work (IBPW) is one of the innovative instructional strategies in science education. Science teacher preparation programmes play a role in preparing preservice teachers to facilitate IBPW in classrooms located in different school settings, including multiple-deprived classrooms. The adverse conditions against the successful…
Descriptors: Foreign Countries, Preservice Teachers, Computation, Thinking Skills
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Rich, Kathryn M.; Yadav, Aman; Larimore, Rachel A. – Education and Information Technologies, 2020
Incorporating computational thinking (CT) ideas into core subjects, such as mathematics and science, is one way of bringing early computer science (CS) education into elementary school. Minimal research has explored how teachers can translate their knowledge of CT into practice to create opportunities for their students to engage in CT during…
Descriptors: Computation, Thinking Skills, Elementary School Mathematics, Elementary School Science
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Zare, Richard N.; Cox, Charles T., Jr.; Murphy, Katherine; Bayas, Camille – Journal of College Science Teaching, 2017
In large, introductory courses, instructors and teaching assistants often struggle to provide detailed feedback on student homework in a timely manner. Here we describe a peer-reviewed homework system that provides quick turnaround while offering flexibility in the construction of homework problems. Homework is administered through a cycle, which…
Descriptors: Homework, Peer Evaluation, Introductory Courses, Problem Solving
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Thomas, Debra Kelly; Milenkovic, Lisa; Marousky, Annamargareth – Science and Children, 2019
Computer science (CS) and computational thinking (a problem-solving process used by computer scientists) teach students design, logical reasoning, and problem solving--skills that are valuable in life and in any career. Computational thinking (CT) concepts such as decomposition teach students how to break down and tackle a large complex problem.…
Descriptors: Computation, Thinking Skills, Computer Simulation, Computer Science Education
Akinoglu, Orhan – Online Submission, 2008
Aim of the study is to assess how students in 6th, 7th and 8th grades of primary education see the project works made in science education and their implementation processes. The study was fulfilled upon the descriptive survey model to collect data. Participants of the research were 100 students who had project implementation experiences in…
Descriptors: Foreign Countries, Science Education, Program Evaluation, Program Implementation
Washington, Wanda – Online Submission, 2010
The OEYP state-funded program provides extended learning for students who are at risk of academic failure. This report summarizes Austin Independent School District's OEYP activities during 2008-2009.
Descriptors: School Districts, Extended School Year, At Risk Students, Academic Failure
Washington, Wanda – Online Submission, 2009
This report summarizes Austin Independent School District's state-funded optional extended year program for the 2007-2008 school year.
Descriptors: School Districts, Extended School Year, Program Evaluation, Program Implementation
Spicker, Howard H.; And Others – 1996
This report describes the strategies, accomplishments, and outcomes of a project designed to identify economically disadvantaged rural gifted children (grades 3-8) from African American, Hispanic, Native American, and Appalachian descended, rural Caucasian populations. Project objectives are outlined, along with evidence of their accomplishment.…
Descriptors: Ability Identification, Academic Achievement, Case Studies, Creativity
Georgia State Univ., Atlanta. Dept. of Vocational and Career Development. – 1984
This guide offers information and procedures necessary to train electromechanical engineering technicians. Discussed first are the rationale and objectives of the curriculum. The occupational field of electromechanical engineering technology is described. Next, a curriculum model is set forth that contains information on the standard…
Descriptors: Classroom Techniques, Course Content, Course Descriptions, Curriculum Development
Georgia State Univ., Atlanta. Dept. of Vocational and Career Development. – 1984
This guide offers information and procedures necessary to train mechanical engineering technicians. Discussed first are the rationale and objectives of the curriculum. The occupational field of mechanical engineering technology is described. Next, a curriculum model is set forth that contains information on the standard mechanical engineering…
Descriptors: Classroom Techniques, Computer Oriented Programs, Course Content, Course Descriptions
Georgia State Univ., Atlanta. Dept. of Vocational and Career Development. – 1984
This guide offers information and procedures necessary to train electronics engineering technicians. Discussed first are the rationale and objectives of the curriculum. The occupational field of electronics engineering technology is described. Next, a curriculum model is set forth that contains information on the standard electronics engineering…
Descriptors: Classroom Techniques, Computer Oriented Programs, Course Content, Course Descriptions