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Kostøl, Kristine Bakkemo; Bøe, Maria Vetleseter; Skår, Aud Ragnhild – Science & Education, 2023
Developing students' understanding of the nature of science (NOS) is seen as critical for educating scientifically literate citizens, and has emerged as an important curricular goal internationally. In Norway, a new curriculum reform has recently been implemented, intended to improve the Norwegian education in several ways. The reform aims to…
Descriptors: Scientific Principles, Science Education, Curriculum Development, Educational Improvement
Cheung, Kason Ka Ching – Science & Education, 2020
Nature of science (NOS) has become one of the major emphases in curriculum and assessment. This study explores "what" NOS is included and how this is achieved in the Hong Kong biology curriculum and 7-year high-stakes assessments. While conceptualizations of the official definition of NOS differ, this study employs the family resemblance…
Descriptors: Scientific Principles, Curriculum Development, Biology, High Stakes Tests
Wei, Bing; Chen, Xiaomin – Science & Education, 2021
In this study, we examined the teaching emphasis of the history of science (HOS) in science lesson plans. The examination was based on a five-dimensional framework, which comprises conceptual, procedural, epistemological, affectional, and social dimensions. Content analysis was employed as the research methodology, targeting 71 copies of science…
Descriptors: Foreign Countries, Science History, Science Instruction, Lesson Plans
Roseman, Jo Ellen; Herrmann-Abell, Cari; Flanagan, Jean; Kruse, Rebecca; Howes, Elaine; Carlson, Janet; Roth, Kathy; Bourdelat-Parks, Brooke – Online Submission, 2013
Researchers at AAAS and BSCS have developed a six-week unit that aims to help middle school students learn important chemistry ideas that can be used to explain growth and repair in animals and plants. By integrating core physical and life science ideas and engaging students in the science practices of modeling and constructing explanations, the…
Descriptors: Middle School Students, Grade 8, Chemistry, Biology
Cakmakci, Gultekin; Sevindik, Hatice; Pektas, Meryem; Uysal, Asli; Kole, Fatma; Kavak, Gamze – Research in Science Education, 2012
This paper reports on an attempt to investigate Turkish primary school students' interest in science by using their self-generated questions. We investigated students' interest in science by analyzing 1704 self-generated science-related questions. Among them, 826 questions were submitted to a popular science magazine called Science and Children.…
Descriptors: Informal Education, Science Interests, Foreign Countries, Internet
An Approach to Teaching General Chemistry II that Highlights the Interdisciplinary Nature of Science
Sumter, Takita Felder; Owens, Patrick M. – Biochemistry and Molecular Biology Education, 2011
The need for a revised curriculum within the life sciences has been well-established. One strategy to improve student preparation in the life sciences is to redesign introductory courses like biology, chemistry, and physics so that they better reflect their disciplinary interdependence. We describe a medically relevant, context-based approach to…
Descriptors: Introductory Courses, Scientific Principles, Student Interests, Chemistry
Bizzo, Nelio; El-Hani, Charbel N. – Journal of Biological Education, 2009
Many studies have shown that students' understanding of evolution is low and some sort of historical approach would be necessary in order to allow students to understand the theory of evolution. It is common to present Mendelian genetics to high school students prior to Biological Evolution, having in mind historical and epistemological…
Descriptors: Heredity, Curriculum Development, Scientific Principles, Genetics
Schonborn, Konrad J.; Bogeholz, Susanne – International Journal of Science and Mathematics Education, 2009
Recent curriculum reform promotes core competencies such as desired "content knowledge" and "communication" for meaningful learning in biology. Understanding in biology is demonstrated when pupils can apply acquired knowledge to new tasks. This process requires the transfer of knowledge and the subordinate process of translation across external…
Descriptors: Curriculum Development, Biology, Educational Change, Cognitive Ability
Muwanga-Zake, Johnnie Wycliffe Frank – Journal of Science Education and Technology, 2007
I report on benefits from 26 teacher-participant evaluators of a computer game designed to motivate learning and to ease conceptual understanding of biology in South Africa. Using a developmental, social constructivist and interpretative model, the recommendation is to include the value systems and needs of end-users (through social dialogue);…
Descriptors: Constructivism (Learning), Curriculum Development, Evaluators, Scientific Principles
Peer reviewedLewis, Ralph W. – BioScience, 1973
General biology courses should be planned and taught in colleges according to widely accepted theories and laws of biology. A list of 24 such principles is provided around which general biology courses could be structured. (PS)
Descriptors: Biology, College Science, Course Descriptions, Curriculum
Howe, Eric M. – 2003
This paper examines how using a series of lessons developed from the history of research on sickle cell anemia affects preservice teacher conceptions of the nature of science (NOS). The importance of a pedagogy that has students do science through an integral use of the history of science is effective at enriching students' NOS views is presented.…
Descriptors: Biology, Concept Formation, Curriculum Development, Cytology
Peer reviewedRoberts, Ros – Journal of Biological Education, 2001
Procedural understanding should be taught to students for an understanding of the 'nature of science'. Considers some of the concepts of evidence that are particularly important to biology, and discusses how and why these ideas could be taught. (Contains 21 references.) (Author/YDS)
Descriptors: Biology, Cognitive Development, Curriculum Development, Higher Education
Peer reviewedLutz-Ryan, Linda – Legacy, 2002
Introduces a paleontology curriculum that focuses on the concepts of observation and inference, setting up an experiment, collecting data, and developing and testing a hypothesis. Features units such as Nature of Science, Paleontology of Florissant, and Evolution. (YDS)
Descriptors: Biology, Climate, Critical Thinking, Curriculum Development
Lederman, Norman G.; Lederman, Judith S. – Science Teacher, 2004
Current reform documents place a strong emphasis on students' understandings of the nature of science (NOS). Interestingly, the importance of this educational outcome is not new and has been agreed upon as important by most scientists and science educators for the past 100 years. Despite numerous attempts, including the major curricular reform…
Descriptors: Science Education, Curriculum Development, Science Curriculum, Knowledge Level
Tanner, Kimberly; Allen, Deborah – Cell Biology Education, 2002
The first challenge in designing and teaching any course is to decide what to teach. At most colleges and universities, the process of selecting course content is an extremely local enterprise. Sometimes the decisions are made by a small group of faculty members, but most often they are made by a single professor with the responsibility of…
Descriptors: Curriculum Development, Course Content, Cytology, Biology

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