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Lawlor, Hugh – Education in Science, 2010
At the heart of the vision for the Diploma in Science is a multidisciplinary approach to learning by tackling scientific challenges and questions in applied work-related contexts. This, together with the innovative delivery model offered by a consortia approach, will bridge a significant gap in the provision of science and mathematics education.…
Descriptors: Mathematics Education, Scientific Principles, Interdisciplinary Approach, Science Process Skills
Chenprakhon, Pirom; Sucharitakul, Jeerus; Panijpan, Bhinyo; Chaiyen, Pimchai – Journal of Chemical Education, 2010
The dissociation constant, K[subscript d], of the binding of riboflavin-binding protein (RP) with neutral red (NR) can be determined by titrating RP to a fixed concentration of NR. Upon adding RP to the NR solution, the maximum absorption peak of NR shifts to 545 nm from 450 nm for the free NR. The change of the absorption can be used to determine…
Descriptors: Science Instruction, Scientific Concepts, Science Process Skills, Scientific Principles
Delahunty, Tina – Geography Teacher, 2010
The Nature Conservancy's (TNC) Orchard Bog site in Shady Valley, Tennessee, is a unique Appalachian mountain bog that provides many opportunities for student exploration. A biogeographer, a field technician, two biologists, and a historian combined their expertise to teach 100 fourth graders how historians and scientists learn about past…
Descriptors: Research Methodology, Ecology, Grade 4, Historians
Maltese, Adam V.; Tai, Robert H.; Sadler, Philip M. – Physics Teacher, 2010
Laboratory experiences play a substantial role in most high school science courses, and many teachers believe the number of labs they offer is a measure of the quality of their curriculum. While some teachers believe labs are meant to confirm concepts taught during lectures, others feel labs should address students' everyday beliefs about the…
Descriptors: Scientific Methodology, Physics, Science Laboratories, Science Instruction
Honey, Margaret A., Ed.; Hilton, Margaret, Ed. – National Academies Press, 2011
At a time when scientific and technological competence is vital to the nation's future, the weak performance of U.S. students in science reflects the uneven quality of current science education. Although young children come to school with innate curiosity and intuitive ideas about the world around them, science classes rarely tap this potential.…
Descriptors: Learning Motivation, Science Education, Science Process Skills, Computer Games
Seeman, Jeffrey I.; Lawrence, Tom – Science Teacher, 2011
One goal of 21st-century education is to develop mature citizens who can identify issues, solve problems, and communicate solutions. What better way for students to learn these skills than by participating in a science and engineering fair? Fair participants face the same challenges as professional scientists and engineers, even Nobel laureates.…
Descriptors: Video Technology, Science Fairs, Learning Experience, Peer Influence
Rangachari, P. K. – Advances in Physiology Education, 2011
Education involves interactions between students and teachers in a societal framework. Teachers can best serve their students and society by making students flexible enough to thrive under uncertain conditions. They should, in a sense, nourish, nurture, provoke, and stimulate pluripotent "educatoblasts."
Descriptors: Aptitude Treatment Interaction, Teacher Student Relationship, Active Learning, Student Centered Curriculum
Walpuski, Maik; Ropohl, Mathias; Sumfleth, Elke – Chemistry Education Research and Practice, 2011
In 2004 national educational standards for chemistry were implemented in Germany. While the standards describe different competencies to be reached after grade 10, no compulsory contents are defined. The contents are defined by the different German states individually. This means that there are no defined common topics taught in all states that…
Descriptors: Test Items, Foreign Countries, Reading Skills, Grade 10
Mann, Eric L.; Mann, Rebecca L.; Strutz, Michele L.; Duncan, Daphne; Yoon, So Yoon – Journal of Advanced Academics, 2011
The fields of gifted and engineering education share many common interests, and their students share many common attributes. Infusing and making engineering implicit in the K-6 education programs creates opportunities to develop concepts, skills, and habits of the mind that are valuable in all disciplines while providing opportunities to discover…
Descriptors: Engineering Education, Talent, Curriculum Development, Curriculum Enrichment
Koretsky, Carla M.; Petcovic, Heather L.; Rowbotham, Katherine L. – Journal of Geoscience Education, 2012
A field-based environmental geochemistry course was developed at Western Michigan University for undergraduate geosciences and environmental studies students to (1) improve student understanding of complex environmental systems, specifically targeting lake systems; (2) facilitate student development of professional-level, field- and…
Descriptors: Undergraduate Students, Geology, Chemistry, Environmental Education
Guerra, Cecília; Moreira, António; Vieira, Rui Marques – Bulgarian Comparative Education Society, 2012
One of the challenges higher education institutions face is to effectively endow science primary teachers with competences on "how", "where", "when" and "whether" to use technological resources (software and hardware) in teaching contexts. Teachers' Technological Pedagogical Content Knowledge (TPCK) requires…
Descriptors: Information Technology, Teacher Competencies, Science Teachers, Teacher Education
Longo, Christopher M. – ProQuest LLC, 2012
This study investigated the impact of an inquiry-based science program on the critical thinking skills, science process skills, creativity, and science fair achievement of middle school students. Although research indicates the connection between inquiry and achievement, there is limited empirical research relating specific inquiry-based programs…
Descriptors: Middle School Students, Secondary School Science, Grade 7, Grade 8
Goldey, Ellen S.; Abercrombie, Clarence L.; Ivy, Tracie M.; Kusher, Dave I.; Moeller, John F.; Rayner, Doug A.; Smith, Charles F.; Spivey, Natalie W. – CBE - Life Sciences Education, 2012
We transformed our first-year curriculum in biology with a new course, Biological Inquiry, in which greater than 50% of all incoming, first-year students enroll. The course replaced a traditional, content-driven course that relied on outdated approaches to teaching and learning. We diversified pedagogical practices by adopting guided inquiry in…
Descriptors: Majors (Students), Teaching Methods, Biology, Undergraduate Study
Spector, Barbara S.; Burkett, Ruth; Leard, Cyndy – Science Educator, 2012
This paper introduces a model for using informal science education venues as contexts within which to teach the nature of science. The model was initially developed to enable university education students to teach science in elementary schools so as to be consistent with "National Science Education Standards" (NSES) (1996) and "A Framework for…
Descriptors: Elementary Secondary Education, Scientific Principles, Experiential Learning, Science Education
Lynch, Kathy; Barr, Nigel; Oprescu, Florin – Electronic Journal of e-Learning, 2012
Paramedic students need to acquire knowledge and skills necessary to perform basic as well as complex clinical skills, to ensure patient safety, and to manage sophisticated equipment. Time and resource pressures on students, teaching staff and institutions have led health professional educators to develop and embrace alternative opportunities such…
Descriptors: Allied Health Personnel, Clinical Experience, Vignettes, Video Technology

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