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González-Espada, Wilson J.; Carrasquillo, Rose E. – Physics Teacher, 2017
It was a pleasant surprise to see Gary White's call for papers on race and physics teaching. We definitely think that the physics teaching and learning of students from diverse and minority backgrounds is an important issue to discuss, especially given the fact that bias and discrimination are common experiences in the lives of many Latinx,…
Descriptors: Race, Ethnicity, Culture, Physics
Smith, Mark – School Science Review, 2012
This article describes how the Science Department at Shoeburyness High School in Essex introduced a space-themed year 8 (ages 12-13) science course to increase student engagement and motivation. As well as discussing the rationale for such curriculum change, it describes the processes of planning and resourcing the course, and the barriers that…
Descriptors: Learner Engagement, Curriculum Development, Science Curriculum, Science Departments
Korsunsky, Boris; Agar, Ozymandias – Physics Teacher, 2008
The idea of teaching physics to ninth-graders, known as "Physics First," has become more and more popular among physics educators in this country. However, introducing ninth-grade physics has been an uphill battle; such a change has a major impact on the students, parents, teachers, and the school administration. Switching to Physics First affects…
Descriptors: Physics, Science Departments, Science Instruction, Grade 9
Melville, Wayne; Wallace, John – Journal of Science Teacher Education, 2007
This study explores teacher professional learning within the workplace context of a science department community. Workplace learning is considered in terms of the construction and flow of information about science, pedagogy and the relationships of science to the wider community. Implications for establishing sound conditions for teacher workplace…
Descriptors: Science Departments, Science Teachers, Professional Development, Teacher Education

Bodner, George M.; Herron, J. Dudley – Journal of College Science Teaching, 1985
A division of chemical education has been created within the chemistry department at Purdue University. The nature of chemical education, impediments to research and development in chemical education, and future directions of the division are discussed. (JN)
Descriptors: Chemistry, College Science, Futures (of Society), Higher Education

Herron, J. Dudley; Brooks, David W. – Journal of Chemical Education, 1984
Suggests that academic departments reshape the intellectual climate for chemistry education as one way to ensure the future of chemistry. Current practices in chemistry and possible benefits which may result if the system is modified are examined. These benefits include better public support and understanding of chemistry. (JN)
Descriptors: Chemistry, College Science, Educational Objectives, Futures (of Society)

Chemical and Engineering News, 1984
Highlights an American Chemical Society (ACS) survey of 103 chemistry departments on their instrumentation needs. The 2-year study affirms that instruments used for chemical research and education are becoming outdated because of their age and changes in technology. The survey also reveals how departments plan to use newly acquired instruments.…
Descriptors: Chemistry, College Science, Higher Education, Instrumentation

Lehman, Jeffrey R. – School Science and Mathematics, 1985
Questionnaire responses from 193 high schools indicate that very few science teachers use microcomputers regularly in classrooms. Descriptions of schools/science departments, background information on faculty using microcomputers, and nature/extent of utilization are discussed along with possible causes of limited use and recommendations for…
Descriptors: Computer Oriented Programs, High Schools, Microcomputers, Science Departments

Hansch, Corwin; Smith, R. Nelson – Journal of Chemical Education, 1984
Examines programmatic effects of undergraduate chemistry research programs, focusing on internal research funding at Pomona College. The two-phase funding plan is described, accompanied by commentary on the reasoning and philosophy which lie behind these procedures. (JN)
Descriptors: Chemistry, College Science, Financial Support, Higher Education

Mullin, William J. – Physics Teacher, 1989
Described is a physics course for satisfying the junior-year writing requirement. Gives nine assignment examples of the course. Discusses the use of the writing component as a teaching aid in junior level "Electricity and Magnetism" course. (YP)
Descriptors: College Science, Content Area Writing, Electricity, Physics