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Holly Feen-Calligan; Grace Serra; Kelly Farrell; Jennifer Mendez; Elizabeth McQuillen; Ceara Murphy; David Amponsah – Art Therapy: Journal of the American Art Therapy Association, 2024
Art therapy and medical students (N = 45) participated in Visual Thinking Strategies (VTS) to: (1) enhance observation skills, (2) examine interdisciplinary approaches to assessment, (3) determine VTS' impact on awareness of implicit bias. Quantitative and qualitative questionnaires and a post-procedure reflective focus group evaluated…
Descriptors: Art Therapy, Counseling Techniques, Visual Learning, Thinking Skills
Toluchuri Shalini Shanker Rao; Kaushal Kumar Bhagat – Educational Technology Research and Development, 2024
Computational thinking (CT) has received growing interest as a research subject in the last decade, with research contributions attempting to capitalize on the benefits that CT may provide. This study included a systematic analysis aimed at revealing current trends in the CT subject, identifying educational interventions, and emerging assessment…
Descriptors: Computation, Thinking Skills, Educational Research, Skill Development
Benjamin Lee Wolden – ProQuest LLC, 2024
Clinical Reasoning (CR) integrates thinking and decision-making in clinical practice (Huhn et al., 2019). CR is an established area of research in Doctor of Physical Therapy (DPT) education (Musolino & Jensen, 2019; Jensen & Mostrom, 2012) and has been acknowledged as a core competency of physical therapist residency education (APTA…
Descriptors: Thinking Skills, Skill Development, Simulation, Learning Experience
Atilla Ergin; Yelkin Diker Coskun – International Journal on Social and Education Sciences, 2024
This study aims to develop a scale to measure the design thinking process and to evaluate the reliability and validity of this scale. It fills this gap by introducing a 36-item scale specifically designed to measure design thinking abilities across the five key stages of the design thinking process: empathize, define, ideate, prototype, and test,…
Descriptors: Design, Thinking Skills, Likert Scales, Empathy
Dek Ngurah Laba Laksana; Maria Yuliana Kua; I Gde Wawan Sudatha; Dimas Qondias; Ngurah Mahendra Dinatha – Pegem Journal of Education and Instruction, 2024
The purpose of this study is to identify the difference between elementary pupils' higher order thinking skill (HOTS) in an environment learning using a variety of resources in a local culture-based learning. HOTS differences between those who use printed and electronic learning resources after controlling self-regulated learning pupil. This is an…
Descriptors: Thinking Skills, Indigenous Knowledge, Elementary School Students, Cognitive Ability
Alejandro Espinal; Camilo Vieira; Alejandra J. Magana – ACM Transactions on Computing Education, 2024
This paper presents a systematic literature review of professional development programs in computational thinking (CT). CT has emerged as an essential set of skills that everyone should develop to participate in a global society. However, there were no pre-service or in-service teacher programs to integrate CT into the K-12 classrooms until very…
Descriptors: Faculty Development, Computation, Thinking Skills, Skill Development
Sun, Lihui; You, Xinxin; Zhou, Danhua – Education and Information Technologies, 2023
Computational thinking (CT) has become the basic foothold of STEAM education. The role of teachers as an essential element of CT education cannot be ignored. Therefore, measuring teachers' ability to integrate CT into classroom is necessary. There were two sub-studies in this study, the one was to develop a specialized scale for the evaluation of…
Descriptors: STEM Education, Art Education, Computation, Thinking Skills
Sheila Tabanli – International Journal of Teaching and Learning in Higher Education, 2023
There is a large body of research on how to improve student learning through active learning and metacognition. However, without well-structured guidelines, students do not tend to actively engage with the taught material, peers, and the instructor at a desirable metacognitive level (Deslauriers et al., 2019). To address this problem, a…
Descriptors: Active Learning, Metacognition, Skill Development, Mathematics Education
Jang, Yeonju; Choi, Seongyune; Kim, Seonghun; Kim, Hyeoncheol – Educational Technology & Society, 2023
Given the importance of digital technology in daily life, computational thinking (CT) has become a necessary skill for everyone, not just for computer scientists. For CT development, students need to receive appropriate social learning support. However, instructors find it difficult to provide such support to many students in online courses. This…
Descriptors: Social Networks, Electronic Learning, Mentors, Skill Development
María-Asunción Lorenzo-Rial; Mercedes Varela-Losada; Uxío Pérez-Rodríguez; Pedro Vega-Marcote – International Journal of Sustainability in Higher Education, 2025
Purpose: The purpose of this paper is to evaluate the presence of systems thinking after an educational proposal on climate sustainability based on reflection and video creation. To evaluate this competency, an evaluation rubric was constructed. Design/methodology/approach: This research is a case study with a mixed approach. It was carried out…
Descriptors: Systems Approach, Thinking Skills, Systems Development, Climate
Zapata-Caceres, Maria; Martin-Barroso, Estefania; Roman-Gonzalez, Marcos – IEEE Transactions on Learning Technologies, 2021
Computational thinking (CT) can be considered a 21st century core skill and, accordingly, it should be taught to students at an early age. Nevertheless, the implementation of CT in school curricula is still in an experimental stage, given that different performance metrics remain unclear, including the appropriate age for learning each skill, the…
Descriptors: Thinking Skills, Problem Solving, Computation, Elementary School Students
Francesco C. Ugolini; Panagiotis Kakavas – Research on Education and Media, 2024
This study consists of a 17-year (2006-2021) systematic literature review on the effective instructional strategies for developing Computational Thinking (CT) in primary school students (K-5). The aim of this paper is to identify instructional strategies that have been implemented and evaluated by means of a pre- and post-test, with the aim of…
Descriptors: Teaching Methods, Computer Science Education, Kindergarten, Elementary School Students
Will Lorié – National Center for the Improvement of Educational Assessment, 2023
As a desired outcome of education, ethical thinking has roots in philosophy, developmental psychology, and political movements that advocate for developing knowledge, capabilities, and dispositions beyond those associated with traditional school subjects. Economists, business leaders, and educators have long advocated for preparing students for an…
Descriptors: Success, Thinking Skills, Ethics, Outcomes of Education
Ulker Shafiyeva – European Journal of Education (EJED), 2021
Standardized tests have been applied as student knowledge assessment in many countries, including Azerbaijan. However, studies have shown that standardized tests are not an effective way of measuring students' knowledge because they limit students' creativity and prevent instructors from applying individual teaching methods due to the pressure of…
Descriptors: Critical Thinking, Thinking Skills, Skill Development, Inquiry
Guenaga, Mariluz; Eguíluz, Andoni; Garaizar, Pablo; Gibaja, Juanjo – Computer Science Education, 2021
Background and Context: Despite many initiatives to develop Computational Thinking (CT), not much is known about how early programmers develop CT and how we can assess their learning. Objective: Determine if the analysis of students' interactions with an online platform allows understanding the development of CT, how we can convert data collected…
Descriptors: Computation, Thinking Skills, Skill Development, Cognitive Tests