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Gai, Lichun; Li, Yanmei; Zheng, Changlong; Wei, Bing; Jiang, Zhimeng; Lederman, Judith S. – International Journal of Science Education, 2022
While helping students develop informed views about nature of scientific inquiry (VNOSI) has been emphasised in science education, little is known regarding students' current VNOSI at a certain grade level and whether there was evidence of higher attainment of VNOSI in students in higher grades as compared to lower grades? The purpose of this…
Descriptors: Student Attitudes, Scientific Principles, Scientific Attitudes, Inquiry
Walan, Susanne; Nilsson, Pernilla; Ewen, Birgitta – Research in Science Education, 2017
Studies have shown that there is a need for pedagogical content knowledge among science teachers. This study investigates two primary teachers and their objectives in choosing inquiry- and context-based instructional strategies as well as the relation between the choice of instructional strategies and the teachers' knowledge about of students'…
Descriptors: Inquiry, Science Education, Science Teachers, Pedagogical Content Knowledge
Salonen, Anssi; Kärkkäinen, Sirpa; Keinonen, Tuula – Chemistry Education Research and Practice, 2018
The aim of this study was to investigate how career-related instruction implemented in secondary school chemistry education concerning water issues influences students' career awareness and their interest towards science learning. This case study is part of a larger design-based research study for the EU-MultiCO project, which focuses on promoting…
Descriptors: Science Education, Student Interests, Grade 8, Vocational Interests
Aydin, Miraç – International Journal of Environmental and Science Education, 2016
An important stage in any research inquiry is the development of research questions that need to be answered. The strategies to develop research questions should be defined and described, but few studies have considered this process in greater detail. This study explores pre-service science teachers' research questions and the strategies they can…
Descriptors: Group Discussion, Preservice Teachers, Teaching Methods, Foreign Countries
Leblebicioglu, G.; Metin, D.; Capkinoglu, E.; Cetin, P. S.; Eroglu Dogan, E.; Schwartz, R. – Science & Education, 2017
Although nature of science (NOS) and nature of scientific inquiry (NOSI) are related to each other, they are differentiated as NOS is being more related to the product of scientific inquiry (SI) which is scientific knowledge whereas NOSI is more related to the process of SI (Schwartz et al. 2008). Lederman et al. ("Journal of Research in…
Descriptors: Scientific Principles, Science Education, Summer Programs, Inquiry
Lemmer, Miriam – Africa Education Review, 2018
Science teaching and learning require knowledge about how learning takes place (cognition) and how learners interact with their surroundings (affective and sociocultural factors). The study reported on focussed on learning for understanding of Newton's second law of motion from a cognitive perspective that takes social factors into account. A…
Descriptors: Science Education, Physics, Scientific Principles, Motion
Kang, Houn Tae; Noh, Suk Goo – Universal Journal of Educational Research, 2017
In this research, after extracting the pre-inquiries (student-level question) for which students had curiosity in the elementary science and analyzing their correlation with the elementary science curriculum, highly correlated inquiries (meaningful pre-inquiries) were selected and applied in class. After organizing an experiment group and a…
Descriptors: Elementary School Science, Science Education, Inquiry, Correlation
Reinhart, Meredith; Bloomquist, Debra; Strickler-Eppard, Lacey; Czerniak, Charlene M.; Gilbert, Amanda; Kaderavek, Joan; Molitor, Scott C. – School Science and Mathematics, 2016
A Framework for K-12 Science Education indicates that introducing young children to scientific and engineering practices, core disciplinary ideas, and crosscutting concepts during the early years is essential for the development of conceptual understanding in science. Unfortunately, science is infrequently included in preschool and primary…
Descriptors: Science Education, Science Activities, Young Children, Family Programs
Chen, Juanjuan; Wang, Minhong; Dede, Chris; Grotzer, Tina A. – Educational Technology & Society, 2017
The use of external representations has the potential to facilitate inquiry learning, especially hypothesis generation and reasoning, which typically present difficulties for students. This study describes a novel three-dimensional cognitive mapping (3DCM) approach that supports inquiry learning by allowing learners to combine the information on a…
Descriptors: Cognitive Mapping, Inquiry, Active Learning, Abstract Reasoning
Zhang, Wen-Xin; Hsu, Ying-Shao; Wang, Chia-Yu; Ho, Yu-Ting – International Journal of Science Education, 2015
This study explores the effects of metacognitive and cognitive prompting on the scientific inquiry practices of students with various levels of initial metacognition. Two junior high school classes participated in this study. One class, the experimental group (n?=?26), which received an inquiry-based curriculum with a combination of cognitive and…
Descriptors: Metacognition, Prompting, Cognitive Processes, Science Education
Lederman, Judith S.; Lederman, Norman G.; Bartos, Stephen A.; Bartels, Selina L.; Meyer, Allison Antink; Schwartz, Renee S. – Journal of Research in Science Teaching, 2014
Helping students develop informed views about scientific inquiry (SI) has been and continues to be a goal of K-12 science education, as evidenced in various reform documents. Nevertheless, research focusing on understandings of SI has taken a perceptible backseat to that which focuses on the "doing" of inquiry. We contend that this is…
Descriptors: Science Education, Measures (Individuals), Inquiry, Educational Change
Levy, Keren Sarah; Kali, Yael; Tal, Tali – Interdisciplinary Journal of e-Skills and Lifelong Learning, 2015
Implementing inquiry in the outdoors introduces many challenges for teachers, some of which can be dealt with using mobile technologies. For productive use of these technologies, teachers should be provided with the opportunity to develop relevant knowledge and practices. In a professional development (PD) program in this design-based research, 24…
Descriptors: Inquiry, Technology Uses in Education, Educational Technology, Telecommunications
Kadayifci, Hakki; Yalcin-Celik, Ayse – Science Education International, 2016
This study examined the effectiveness of Argument-Driven Inquiry (ADI) as an instructional model in a general chemistry laboratory course. The study was conducted over the course of ten experimental sessions with 125 pre-service science teachers. The participants' level of reflective thinking about the ADI activities, changes in their science…
Descriptors: Inquiry, Teaching Models, Science Education, Science Instruction
Psycharis, Sarantos – Educational Technology & Society, 2016
Computational experiment approach considers models as the fundamental instructional units of Inquiry Based Science and Mathematics Education (IBSE) and STEM Education, where the model take the place of the "classical" experimental set-up and simulation replaces the experiment. Argumentation in IBSE and STEM education is related to the…
Descriptors: Science Education, Mathematics Education, Persuasive Discourse, Experiments
Sprague Martinez, Linda; Bowers, Edmond; Reich, Amanda J.; Ndulue, Uchenna J.; Le, Albert An; Peréa, Flavia C. – International Journal of Science Education, 2016
Participation in inquiry-based science education, which focuses on student-constructed learning, has been linked to academic success. Whereas the benefits of this type of science education are evident, access to such high-quality science curriculum and programming is not equitable. Black and Latino students in particular have less access to…
Descriptors: African American Children, Minority Groups, Minority Group Children, Science Education