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Showing 1 to 15 of 52 results Save | Export
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Lindsay Ruhter; Thai Williams; Meagan Karvonen; Sarah Koebley; Shawnee Wakeman; David Pugalee – TEACHING Exceptional Children, 2025
Many teachers have a level of discomfort with planning inquiry-based science lessons for students with complex needs. Science instruction typically includes teaching discrete skills with a focus on vocabulary acquisition (Knight et al., 2020). Because science is universal and thus important for all learners, many states have adopted the Next…
Descriptors: Science Education, Science Instruction, Lesson Plans, Special Needs Students
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Nika Golob; Vanja Ungar – Center for Educational Policy Studies Journal, 2025
This paper aims to investigate the systematic use of an inquiry-based learning approach in science by using inquiry boxes for preschool children. We prepared four thematic inquiry boxes for the areas of magnetism and buoyancy, separation of substances, weighing objects, and the investigation of substances. The research sample consisted of twenty…
Descriptors: Inquiry, Active Learning, Preschool Education, Science Instruction
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Yan Wang; Peng He; Jinling Geng; Zhiwei Zhu – Journal of Chemical Education, 2025
This paper presents an innovative teaching approach that integrates photoelectric technology with analytical chemistry instruction through inquiry-based learning (IBL), using cerium as a selected analyte. With the advancement of science and technology, a strong foundation of basic knowledge and methodologies is crucial in analytical chemistry…
Descriptors: Instructional Innovation, Chemistry, Science Instruction, Active Learning
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Ahmad Fauzi Hendratmoko; Madlazim Madlazim; Wahono Widodo; Suyono Suyono; Zainful Arifin Imam Supardi – International Journal of Education in Mathematics, Science and Technology, 2024
Scientific argumentation skills are a key component of science learning practices needed by students in the 21st century. Where the essence of scientific argumentation is to support the argument with evidence and reasoning and then refute the claims and evidence of the opponent's argument. Supporting arguments with evidence and reasoning can be…
Descriptors: Science Instruction, Skill Development, Persuasive Discourse, Evidence
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Margaret K. Meadows – Journal of Chemical Education, 2024
This paper describes the design, implementation, and evaluation of an inquiry-based laboratory for sophomore-level organic chemistry into a mostly cookbook, existing laboratory curriculum. For the laboratory, students were required to generate their own procedures and use their own recorded data from prior laboratory assignments to identify an…
Descriptors: Active Learning, Inquiry, Laboratory Experiments, Chemistry
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Rima Suwistika; I. Ibrohim; Hendra Susanto – Journal of Biological Education Indonesia (Jurnal Pendidikan Biologi Indonesia), 2024
Education in the 21st century has experienced many advances that are adjusted to the demands of the times. Thinking skills are in high demand in the 21st century, especially critical thinking and creative thinking skills for students. This study aims to determine the effectiveness of POPBL model learning in improving critical and creative thinking…
Descriptors: Creative Thinking, Critical Thinking, 21st Century Skills, High School Students
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Echiburu, Mauricio; Hernández, Carla; Pino, Miguel – Physics Education, 2023
Teaching physics in real-life contexts continues to be a challenge for teachers at different educational levels. In this article, three context-rich problems are proposed to be implemented in the classroom for higher education, using the explosion that occurred in Beirut as a case study. These problems require the search and analysis of real data,…
Descriptors: Higher Education, Physics, Science Instruction, Authentic Learning
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Quang Linh Nguyen; Tien Khoa Cao; Quang Hieu Tran; Thi Ngoc Nguyen – Discover Education, 2025
In Vietnamese secondary education, traditional science teaching that focuses on theory over practical application presents a challenge to developing students' scientific competence, a key priority of the national curriculum. Scientific competence is broadly defined as the ability to explain phenomena, conduct investigations, and apply knowledge in…
Descriptors: Science Process Skills, Skill Development, Scientific Literacy, Active Learning
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Clevenger, Lindsey; Teshera-Levye, Jennifer; Walker, Joi P.; Vance-Chalcraft, Heather D. – Journal of Microbiology & Biology Education, 2023
Argumentation is vital in the development of scientific knowledge, and students who can argue from evidence and support their claims develop a deeper understanding of science. In this study, the Argument-Driven Inquiry instruction model was implemented in a two-semester sequence of introductory biology laboratories. Student's scientific…
Descriptors: Introductory Courses, Science Instruction, Biology, Persuasive Discourse
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Zudaire, Isabel; Buil, Raquel; Uriz, Irantzu; Napal, María – International Journal of Early Childhood, 2022
Inquiry-based science education has become one of the most effective methodologies to learn science; however, proposals in preschool are scarce. Different factors are responsible for this situation, such as the low self-confidence of teachers to teach science and the belief that young children are unable to develop certain reasoning skills. This…
Descriptors: Preservice Teachers, Preschool Education, Active Learning, Inquiry
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Henny Setiawati; Nurhasanah; Asrullah Syam – International Journal of Technology in Education, 2025
21st-century learning requires every student to have thinking skills, work habits, and character to achieve an independent and successful life. Learning in schools must develop students' thinking skills, including biology learning. The learning process in schools has undergone many changes during the COVID-19 pandemic. A study by the Ministry of…
Descriptors: Student Projects, Active Learning, Teaching Methods, Thinking Skills
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Shegufta Shetranjiwalla; Molly S. J. Hu – Journal of Chemical Education, 2023
Green chemistry and chemical safety complement each other in reducing adverse health and safety outcomes. However, it is imperative to train students of advanced synthetic chemistry, beyond reaction mechanisms, to proactively connect complex experiments with hazard analysis, risk minimization, and planetary sustainability. Virtual experiments…
Descriptors: Stakeholders, Science Experiments, Chemistry, Electronic Learning
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Kopecki-Fjetland, Mary A.; Steffenson, Matthew – Biochemistry and Molecular Biology Education, 2021
For many students biochemistry is a demanding course because they are expected to apply previously learned foundational concepts to new biological contexts. These foundational concepts serve as a scaffold onto which to build threshold concepts such as the physical basis of interactions. Unfortunately, many students possess misconceptions or gaps…
Descriptors: Active Learning, Learning Strategies, Fundamental Concepts, Scientific Concepts
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Ruder, Suzanne M.; Stanford, Courtney – Journal of Chemical Education, 2020
Active learning environments are ideal settings to help students develop process skills such as teamwork, critical thinking, and problem solving. However, implementing active learning pedagogies where students have the opportunity to develop these skills can be challenging in large enrollment courses. With the assistance of undergraduate teaching…
Descriptors: Undergraduate Students, Teaching Assistants, Skill Development, Large Group Instruction
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Tsybulsky, Dina; Sinai, Erez – Journal of Science Education and Technology, 2022
This article presents a case study of the integration of the Internet of Things (IoT) in high-school biology project-based learning. The study's main goal was to conduct an in-depth, qualitative examination of the students' experiences and the development of their skills over the course of this project. The following research questions were…
Descriptors: Biology, Science Instruction, Teaching Methods, High School Students
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