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Baher Amouzgar – ProQuest LLC, 2022
Organizations advance and grow by solving problems one at a time, and management graduates should possess critical thinking and problem-solving capacities to be effective business managers and creative engineers. The problem was that critical thinking and creative problem solving are operationally ill-defined in engineering and management…
Descriptors: Critical Thinking, Problem Solving, Business Administration Education, Engineering Education
Putra, Pramudya Dwi Aristya; Sulaeman, Nurul Fitriyah; Supeno; Wahyuni, Sri – Asia-Pacific Education Researcher, 2023
Critical thinking skills (CTS) have been applied in the learning environment to address students' challenges in the twenty-first century. Therefore, specific approaches need to be implemented in the learning environment to support students' CTS. This research explores students' CTS during the learning process through the engineering design process…
Descriptors: Thinking Skills, Critical Thinking, Physics, Engineering
Debika Sihi; Abigail Ryan – Marketing Education Review, 2025
The rapid adoption and evolution of generative artificial intelligence (AI) tools like ChatGPT and Gemini have impacted marketing education and practice. This paper introduces a prompt engineering assignment that utilizes generative AI to build critical thinking skills through the development of keyword research strategies, customer profiles, and…
Descriptors: Marketing, Business Education, Artificial Intelligence, Technology Uses in Education
Keri M. Guilbault; Yi Wang; Kimberly M. McCormick – Gifted Child Today, 2025
Artificial intelligence (AI) has the potential to revolutionize education by promoting personalized learning experiences and enhancing educators' efficiency. Generative AI tools like ChatGPT are increasingly used by K-12 teachers for lesson planning, differentiated instruction, and automated feedback. This article examines how ChatGPT, in…
Descriptors: Artificial Intelligence, Computer Uses in Education, Secondary School Students, Academically Gifted
Cardon, Philip L.; Kinczkowski, Linda; Speelman, Pamela – Technology and Engineering Teacher, 2022
The versatility required for employment continues to change with technological advancements. Some of the top listed skills needed for a career are positive attitude, communication, time management, critical-thinking, and problem-solving (Peart, 2019). How to teach each of these competencies may take different strategies and techniques. This…
Descriptors: Problem Based Learning, Learning Activities, Communication Skills, Critical Thinking
Ni Cheng; Siti Zuraidah Md Osman – Journal of Education and e-Learning Research, 2025
This study explores the current status of computational thinking (CT) skills among first-year university students and examines whether any differences exist across genders, geographic backgrounds and academic disciplines with programming learning experience given the growing interest in computational thinking (CT) in recent years. It also…
Descriptors: Computation, Thinking Skills, College Freshmen, Algorithms
Vo, Tina; Hammack, Rebekah – Journal of Science Teacher Education, 2022
National reform documents and shifts in educational standards have continued to highlight the importance of engineering and engineering practices within science literacy. High-quality engineering opportunities must be present in formal education due to their association with problem-solving and critical thinking. Given this directive to reach…
Descriptors: Academic Standards, Engineering, Scientific Literacy, Educational Quality
Yu, Kuang-Chao; Wu, Pai-Hsing; Fan, Szu-Chun – International Journal of Science and Mathematics Education, 2020
With an increased emphasis on science, technology, engineering, and mathematics (STEM) education, educators have often adopted engineering projects for integrating interdisciplinary knowledge through engineering design process. However, there is scant research that has empirically documented the relationships among students' understanding of the…
Descriptors: High School Students, Scientific Literacy, Critical Thinking, Engineering
Hutner, Todd L.; Sampson, Victor; Baze, Christina L.; Chu, Lawrence; Crawford, Richard H. – International Journal of Science Education, 2022
Calls for engineering integration in pre-collegiate science courses are being made across the globe. The success of such efforts depends heavily on science teachers changing their instructional practices to include engineering. We conjecture when a science teacher chooses to make instructional change, including a change to integrate engineering…
Descriptors: Science Teachers, Teaching Methods, Educational Practices, Engineering
William Cain – TechTrends: Linking Research and Practice to Improve Learning, 2024
This paper explores the transformative potential of Large Language Models Artificial Intelligence (LLM AI) in educational contexts, particularly focusing on the innovative practice of prompt engineering. Prompt engineering, characterized by three essential components of content knowledge, critical thinking, and iterative design, emerges as a key…
Descriptors: Artificial Intelligence, Natural Language Processing, Technology Uses in Education, Prompting
Quelhas, Osvaldo Luiz Gonçalves; Lima, Gilson Brito Alves; Ludolf, Nicholas Van-Erven; Meiriño, Marcelo Jasmim; Abreu, Chrystyane; Anholon, Rosley; Vieira Neto, Julio; Rodrigues, Leandro Silva Goulart – International Journal of Sustainability in Higher Education, 2019
Purpose: This paper aims to deal with the skills for sustainable development in engineering courses. The main objective is to identify which competences should be developed in these courses to contribute to the resolution of conflicts related to sustainability, as well as the means used by universities for their development.…
Descriptors: Engineering Education, Sustainability, Competency Based Education, Specialists
Sara Fatima; Ruhil Amal Azmuddin; Asiah Kassim – International Society for Technology, Education, and Science, 2024
One of the most notable developments in English language pedagogy is the teaching of English for Science and Technology (EST). This includes providing language learners of various scientific fields with their specific language needs. This study was conducted as a component of a pilot study on qualitative data collection into the reading of EST…
Descriptors: Textbook Selection, English for Science and Technology, Second Language Learning, Second Language Instruction
Johnson, Kristen C.; Sabel, Jaime L.; Cole, Judith; Pruett, Christin L.; Plymale, Ruth; Reyna, Nathan S. – Biochemistry and Molecular Biology Education, 2022
The need for changing how science is taught and the expansion of undergraduate research experiences is essential to foster critical thinking in the Natural Sciences. Most faculty research programs only involve a small number of upper-level undergraduate students each semester. The course-based undergraduate research experience (CURE) model enables…
Descriptors: Undergraduate Students, College Science, Science Education, Science Instruction
Yu, Kuang-Chao; Lin, Kuen-Yi; Chang, Shu-Fen – EURASIA Journal of Mathematics, Science & Technology Education, 2017
The purpose of this study was to develop a mechanical critical thinking scale for high school students. A stratified random sampling method was used to establish the norms. After pre-tests and item analysis, the scale was determined to have five subtest sections (i.e., recognition of assumptions, induction, deduction, interpretation, and…
Descriptors: Critical Thinking, High School Students, Foreign Countries, Item Analysis
McCrum, Daniel Patrick – European Journal of Engineering Education, 2017
For a structural engineer, effective communication and interaction with architects cannot be underestimated as a key skill to success throughout their professional career. Structural engineers and architects have to share a common language and understanding of each other in order to achieve the most desirable architectural and structural designs.…
Descriptors: Problem Solving, Undergraduate Students, Problem Based Learning, Active Learning