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Santini, Joseph – Odyssey: New Directions in Deaf Education, 2017
Among the fields that particularly lack images of diverse participants are those of science, technology, engineering, and math, fields captured under the acronym STEM. Often in STEM fields, images and experiences of deaf and hard of hearing children, children of color, and young women are rare or absent altogether, with the result that these…
Descriptors: Deafness, Hearing Impairments, STEM Education, American Sign Language
Kye, Hannah – Science and Children, 2019
In this article, second graders learn the basics of engineering through an exploration of magnetic levitation (maglev) technology. The author designed and taught the lessons to a class of 26 students enrolled in a month-long summer science program. The maglev lessons took place over three mornings (15 minutes for the first lesson and 40 minutes…
Descriptors: Grade 2, Engineering Education, Magnets, Summer Science Programs
Weinburgh, Molly; Silva, Cecilia; Smith, Kathy Horak; Groulx, Judy; Nettles, Jenesta – Journal of Science Teacher Education, 2014
As teacher educators, we are tasked with preparing prospective teachers to enter a field that has undergone significant changes in student population and policy since we were K-12 teachers. With the emphasis placed on connections, mathematics integration, and communication by the New Generation Science Standards (NGSS) (Achieve in Next generation…
Descriptors: Inquiry, Science Instruction, Teacher Educators, Science Teachers
Riedinger, Kelly; Taylor, Amy – Afterschool Matters, 2016
Out-of-school time (OST) programs like the Coastal Ecology science camp can positively influence science identities, particularly for youth from groups historically underserved and underrepresented in science, technology, engineering, and math (STEM). OST STEM programming gives youth opportunities to learn science outside the formal classroom in…
Descriptors: STEM Education, Science Education, After School Programs, Science Interests
Ayar, Mehmet C. – Educational Sciences: Theory and Practice, 2015
The purpose of this study is to present students' experiences, interest in engineering, and personal narratives while participating in a robotics summer camp in a metropolitan city in Turkey. In this study, I used qualitative data collection methods such as interviews, field notes, and observations. I used the four principles of Engle and Conant…
Descriptors: Foreign Countries, Engineering Education, Design, Vocational Interests
Peer reviewedSather, Glenn A.; Coca, Jose – Chemical Engineering Education, 1988
Describes a summer course in chemical engineering. Includes discussions of the course program, course goals, student performance, and course faculty. Lists examples of informal experiments which have been used, and prerequisite courses that are required for students to enroll in the course. (CW)
Descriptors: Chemical Engineering, College Science, Course Content, Course Descriptions
Dobey, Daniel C.; Johnstone, Judy Ramoy – Outdoor Communicator, 1989
Describes an outdoor summer enrichment program for rural elementary and middle school students. Examines activities that teach language arts skills through outdoor education content: student journals, daily vocabulary development exercises, instructional word games, critical discussions of relevant books, and a student newspaper containing field…
Descriptors: Class Activities, Elementary Education, Enrichment Activities, Experiential Learning
Peer reviewedBell, R. C.; And Others – Journal of Chemical Education, 1980
Described is a one-week summer chemistry workshop held at Lebanon Valley College, Annville, Pennsylvania, for secondary school students. Experiments and evaluation results of the workshops are provided. (HM)
Descriptors: College Programs, Educational Development, Program Evaluation, Science Activities
Peer reviewedWhimbey, Arthur; And Others – Journal of Reading, 1980
Describes a summer program for prefreshman science students entering Xavier University, designed to develop their problem-solving and academic abilities by emphasizing the connection between reading comprehension and analytical skills. (MKM)
Descriptors: Cognitive Processes, Critical Reading, Critical Thinking, Educational Research
Peer reviewedHill, Stanford R., Jr.; Hounshell, Paul B. – American Biology Teacher, 1991
A remedial biology course that employed six planned strategies to guide program activity is described. Team planning and team teaching, mastery learning, process skill emphasis, technology emphasis, positive reinforcement grading, attendance incentives, student achievement, student attitudes, parent attitudes, and implications are topics of…
Descriptors: Academic Achievement, Attendance, Biology, Evaluation
Peer reviewedCarlson, Robert V.; Camp, Martha G. – Science and Children, 1973
Describes an elementary school summer program designed to allow children to develop their fullest potentials for logical thinking and structuring their own knowledge. In particular, the activities of the science center are discussed. (JR)
Descriptors: Elementary School Science, Instructional Materials, Program Descriptions, Science Activities
Peer reviewedKonvolinka, Thomas L. – Journal of Geological Education, 1973
Descriptors: Educational Programs, Field Instruction, Instruction, Junior High Schools
Peer reviewedRice, Dale R.; Duckett, Josephine – Science and Children, 1980
Two kinds of summer science camp experiences for elementary children are described. The program is intended to provide elementary teachers and preservice teachers with a chance to practice their science teaching skills. The Day Camp (K-3) emphasizes the senses and the Overnight Camp program (4-6) emphasizes instruction in science. (SA)
Descriptors: Elementary Education, Elementary School Science, Environmental Education, Inservice Teacher Education
Peer reviewedScaife, Charles, W. J. – Journal of Chemical Education, 1986
Describes a two-week concentrated laboratory course in chemistry offered by Union College (New York) for middle school students. Provides the objectives of the course and a listing of experiments done by the students. Promotes the use of experiential approaches rather than lengthy lectures and discussions. (TW)
Descriptors: Chemistry, College School Cooperation, Experiential Learning, Grade 6

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