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Haskel-Ittah, Michal; Duncan, Ravit Golan; Vázquez-Ben, Lucia; Yarden, Anat – Journal of Research in Science Teaching, 2020
Mechanisms are central in scientific explanations. However, developing mechanistic explanations is difficult for students especially in domains in which mechanisms involve abstract components and functions, such as genetics. One of the core components of genetic mechanisms are proteins and their functions. Students struggle to reason about the…
Descriptors: Middle School Students, Grade 7, Secondary School Science, Genetics
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Sui, Chi-Jung; Chen, Hsin-Chueh; Cheng, Ping-Han; Chang, Chun-Yen – Journal of Science Education and Technology, 2023
Utilizing an inquiry-learning space (ILS) via the Go-Lab platform, we investigated students' technology acceptance, knowledge integration [KI] process, and learning outcomes of both the high-achiever KI student and low-achiever KI student. This study aimed to understand how students engage in knowledge integration tasks using an inquiry-learning…
Descriptors: Student Attitudes, Technology Integration, Technology Uses in Education, High Achievement
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Daucourt, Mia C.; Erbeli, Florina; Little, Callie W.; Haughbrook, Rasheda; Hart, Sara A. – Scientific Studies of Reading, 2020
According to the Multiple Deficit Model, comorbidity results when the genetic and environmental risk factors that increase the liability for a disorder are domain-general. In order to explore the role of domain-general etiological risk factors in the co-occurrence of learning-related difficulties, the current meta-analysis compiled 38 studies of…
Descriptors: Learning Problems, Attention Deficit Hyperactivity Disorder, Reading Skills, Mathematics Skills
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Chen, Hsin-Chueh; Gijlers, Hannie; Sui, Chi-Jung; Chang, Chun-Yen – Journal of Science Education and Technology, 2023
Learning and teaching Mendelian genetics are central topics in school science. This study explored factors associated with the learning outcomes of Taiwanese junior high school students in an online inquiry learning environment. Research within face-to-face classroom settings had revealed that Asian students are more likely to be tutor-oriented…
Descriptors: Foreign Countries, Junior High School Students, Grade 7, Electronic Learning
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Duncan, Ravit Golan; Castro-Faix, Moraima; Choi, Jinnie – International Journal of Science and Mathematics Education, 2016
The Framework for Science Education and the Next Generation Science Standards in the USA emphasize learning progressions (LPs) that support conceptual coherence and the gradual building of knowledge over time. In the domain of genetics there are two independently developed alternative LPs. In essence, the difference between the two progressions…
Descriptors: Genetics, Sequential Approach, Molecular Biology, Scientific Concepts
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Donovan, Brian M. – Journal of Research in Science Teaching, 2017
For over a century, genetic arguments for the existence of racial inequality have been used to oppose policies that promote social equality. And, over that same time period, American biology textbooks have repeatedly discussed genetic differences between races. This experiment tests whether racial terminology in the biology curriculum causes…
Descriptors: Racial Bias, Labeling (of Persons), Science Curriculum, Biology
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Mullins, Sara Brooke – Journal of Research in Education, 2020
The concept of angles is important for future geometric knowledge (Arslan et al., 2016; Moore, 2013; Yigit, 2014). However, although Piaget (1948) suggests angles lead to the discovery of lines, angles are typically taught later in schools, after points, lines, and planes (Charles, 2011). Therefore, the way in which angles are taught can affect…
Descriptors: Geometric Concepts, Grade 5, Grade 7, Grade 12
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Yang, Chi; Jen, Chun-Hui; Chang, Chun-Yen; Yeh, Ting-Kuang – Educational Technology & Society, 2018
This study aimed to examine the relative effectiveness of using an animation versus static pictures in terms of supporting the learning of genetics. To provide a methodologically sound comparison, the two sessions were constructed to be equivalent and were designed based on principles provided by the cognitive theory of multimedia learning and the…
Descriptors: Genetics, Teaching Methods, Science Instruction, Scientific Concepts
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Brouillard, Charlie; Brendgen, Mara; Vitaro, Frank; Dionne, Ginette; Boivin, Michel – Developmental Psychology, 2019
The present study used a genetically informed design of twins raised in the same family (375 monozygotic and 290 dizygotic twins; 50.2% girls) to examine the association between adolescents' genetic risk for depressive symptoms and the course of the parent-child relationship quality throughout adolescence. Depressive symptoms and the quality of…
Descriptors: Depression (Psychology), Conflict, Parent Child Relationship, Mothers
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Wu, Jen-Yi; Tung, Yu-Neng; Hwang, Bi-Chi; Lin, Chen-Yung; Che-Di, Lee; Chang, Yung-Ta – American Biology Teacher, 2014
Various sequences for teaching genetics have been proposed. Three seventh-grade biology textbooks in Taiwan share similar key knowledge assemblages but have different knowledge arrangements. To investigate the influence of knowledge arrangements on student understanding of genetics, we compared students' reading comprehension of the three texts…
Descriptors: Foreign Countries, Science Instruction, Grade 7, Reading Comprehension
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Little, Callie W.; Hart, Sara A.; Schatschneider, Christopher; Taylor, Jeanette – Journal of Learning Disabilities, 2016
Previous literature has indicated an important association between reading comprehension and both attention-deficit/hyperactivity disorder (ADHD) and homework habits. This investigation sought to extend previous knowledge by providing information about how ADHD and homework behavior (i.e., completing homework regularly) may jointly influence…
Descriptors: Attention Deficit Hyperactivity Disorder, Homework, Reading Comprehension, Correlation
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Williams, Michelle; DeBarger, Angela Haydel; Montgomery, Beronda L.; Zhou, Xuechun; Tate, Erika – Science Education, 2012
This study examines students' understanding of the normative connections between key concepts of cell division, including both mitosis and meiosis, and underlying biological principles that are critical for an in-depth understanding of genetic inheritance. Using a structural equation modeling method, we examine middle school students'…
Descriptors: Factor Analysis, Genetics, Middle School Students, Structural Equation Models
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Freidenreich, Hava Bresler; Duncan, Ravit Golan; Shea, Nicole – International Journal of Science Education, 2011
Genetics is the cornerstone of modern biology and a critical aspect of scientific literacy. Research has shown, however, that many high school graduates lack fundamental understandings in genetics necessary to make informed decisions about issues and emerging technologies in this domain, such as genetic screening, genetically modified foods, etc.…
Descriptors: Middle School Students, Instructional Design, High School Graduates, Genetics
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Williams, Michelle; Merritt, Joi; Opperman, Amanda; Porter, Jakob; Erlenbeck, Kyle – Science Scope, 2012
Genetics is an increasingly important topic in today's society, and one that permeates people's lives on many levels. Students, teachers, and the general public alike are constantly exposed to this topic through popular television shows such as "CSI: Crime Scene Investigation," political issues like voting on stem-cell research, and the…
Descriptors: Genetics, Heredity, Elementary Secondary Education, Middle School Students
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Koc, Isil; Turan, Merve – Science Activities: Classroom Projects and Curriculum Ideas, 2012
The cycle of duplication and division, known as the "cell cycle," is the essential mechanism by which all living organisms reproduce. This activity allows students to develop an understanding of the main events that occur during the typical eukaryotic cell cycle mostly in the process of mitotic phase that divides the duplicated genetic material…
Descriptors: Science Instruction, Learning Activities, Scientific Concepts, Molecular Structure
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