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Lucas Vasconcelos; Cory Gleasman; Duygu Umutlu; ChanMin Kim – Journal of Science Education and Technology, 2024
Science teachers have been urged to use emerging technologies, such as robots, in ways that empower K-12 students as active participants responsible for their learning and knowledge development within the scientific domain. And yet, little is known about whether the use of robots effectively supports students' epistemic agency in science learning.…
Descriptors: Robotics, Science Instruction, Teaching Methods, Video Technology
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Elina Viro – International Journal of Mathematical Education in Science and Technology, 2024
The article focuses on study visits from the perspective of mathematical project work. Project work means a systematic organizing method of teaching that is based around a project. The research questions are the kinds of study visits students made, the meaning(s) of those visits, the mathematical content in the visits and how such study visits…
Descriptors: Mathematics Instruction, Teaching Methods, Student Projects, Course Content
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Ma, Lili – Journal of STEM Education: Innovations and Research, 2021
This paper summarizes our experience of teaching undergraduate robotic courses in the past ten years. The objective is to introduce students to the fundamental knowledge in robotics. Lecture topics covered subjects in both Autonomous Mobile Robots and Robotic Manipulator. In the lab sessions, students work on physical robots to acquire basic…
Descriptors: Teaching Methods, Robotics, Engineering Education, Computer Science Education
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Ugur-Erdogmus, Feray – Participatory Educational Research, 2021
Robotic education is a popular topic in recent years. There are robotic education courses from pre-K to K-12 and these courses claim that they support STEM education. However, the teacher's perception of these activities and needs for this education is the missing part of the chain. The aim of this study to find out the perceptions and suggestions…
Descriptors: Teacher Attitudes, Kindergarten, Preschool Teachers, Teaching Methods
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Suters, Leslie; Suters, Henry; Anderson, Adam – Contemporary Issues in Technology and Teacher Education (CITE Journal), 2021
This paper describes a 54-hour summer institute for grades 6-12 mathematics and science teachers (N = 19) with a comprehensive approach to preparing teachers to use computational thinking (CT) in their classrooms, including training in Python computer programming with Lego® Mindstorms® robotics, mathematics content sessions, and opportunities to…
Descriptors: Algebra, Mathematics Instruction, Pedagogical Content Knowledge, Programming
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Grewal, Dhruv; Motyka, Scott; Levy, Michael – Journal of Marketing Education, 2018
The pace of retail evolution has increased dramatically, with the spread of the Internet and as consumers have become more empowered by mobile phones and smart devices. This article outlines significant retail innovations that reveal how retailers and retailing have evolved in the past several decades. In the same spirit, the authors discuss how…
Descriptors: Retailing, Marketing, Futures (of Society), Teaching Methods
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Larke, Laura R. – British Journal of Educational Technology, 2019
The addition of computing to England's National Curriculum was welcomed as a much-needed modernization of the country's digital skills curriculum, replacing a poorly regarded ICT program of study with an industry-supported scheme of computer science, robotics and computational thinking. This paper will demonstrate how teachers have acted as…
Descriptors: Foreign Countries, Curriculum Design, Elementary School Students, Technological Literacy
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Chang, Yu-Liang; Wu, Huan-Hung – EURASIA Journal of Mathematics, Science & Technology Education, 2015
The primary objective of this study was to determine how experience in learning to teach scientific inquiry using a practical approach affected teacher's attitudes, evaluations of use of inquiry and their actual design of inquiry based instruction. The methodology included the use an approach incorporating inquiry methodology combined with a…
Descriptors: Vocational High Schools, Secondary School Teachers, Science Teachers, Secondary School Science
Maker, C. June – 1988
A framework for curriculum design and a set of guidelines for curriculum development in gifted education are presented. The major dimensions guiding curriculum development for gifted students are: content, process, product, and learning environment. Curriculum content should be developed in such a way that it becomes more abstract, complex,…
Descriptors: Course Content, Curriculum Design, Curriculum Development, Economics Education
Auer, Herbert J. – 1985
This instructional manual contains 20 learning activity packets for use in a workshop on robotics. The lessons cover the following topics: safety considerations in robotics; introduction to technology-level and coordinate-systems categories; the teach pendant (a hand-held computer, usually attached to the robot controller, with which the operator…
Descriptors: Competency Based Education, Computer Oriented Programs, Course Content, Equipment
Territo, Peter A., Jr.; McMurry, James G. – 1987
This model instructional unit was developed to aid trade and industrial education teachers in Louisiana in preparing students for careers in the field of power mechanics. Students are provided experiences related to the design, theory, construction, and appropriate uses of the power systems, as well as the maintenance and repair of the more common…
Descriptors: Competency Based Education, Course Content, Course Organization, Energy Occupations
Pittsburg State Univ., KS. Kansas Vocational Curriculum Dissemination Center. – 1984
This document is a teacher's guide for teaching a course on robot service and repair. The guide is organized in four units covering the following topics: introduction to robots, power supply, robot control systems, and service and repair. Each unit contains several lesson plans on the unit topic. Lesson plans consist of objectives, tools and…
Descriptors: Behavioral Objectives, Classroom Techniques, Course Content, Electronic Control
Patrick, Dale R. – 1988
This curriculum for a 1-semester or 1-year course in electronics is designed to take students from basic through advanced electronic systems. It covers several electronic areas, such as digital electronics, communication electronics, industrial process control, instrumentation, programmable controllers, and robotics. The guide contains…
Descriptors: Competence, Competency Based Education, Course Content, Electrical Systems
Alberta Dept. of Education, Edmonton. Curriculum Standards Branch. – 1997
With this Career and Technologies Studies (CTS) curriculum guide, secondary students in Alberta can do the following: develop skills that can be applied in their daily lives; refine career-planning skills; develop technology-related skills in electro-technologies; enhance employability skills, especially in electro-technologies industries; and…
Descriptors: Career Development, Competence, Competency Based Education, Course Content
Dependents Schools (DOD), Washington, DC. – 1984
This guide is designed for use in helping junior and senior high school students explore the field of electricity and electronics as a potential career area. Included in the manual are the following materials: definitions, a key to the organization and numbering code and symbols used in the lists of objectives, lists of general and program…
Descriptors: Behavioral Objectives, Career Exploration, Classroom Techniques, Communications