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Chin Wen Png; Lih Ing Goh; Yuanxiang Kenneth Chen; Huimin Yeo; Haiyan Liu – Journal of Microbiology & Biology Education, 2024
The COVID-19 global pandemic has prompted educators in universities to reconsider their teaching methods, mainly due to the social distancing measures imposed within the classroom settings. On the other hand, the growing importance of continuing education opportunities for adult learners after graduation has seen the need to transform traditional…
Descriptors: Foreign Countries, Universities, College Students, Online Courses
Hongyu Chen; Lu Tian; Meiqin Zhang – Journal of Chemical Education, 2023
Level 3 characteristics are increasingly important for fingerprint identification, particularly when the fingerprints are problematic and lack level 2 details. In practice, no reliable visualization methods for level 3 features are transferred into a course for the general public, forensic students, or investigators. Our group has reported the…
Descriptors: College Students, Identification, Individual Characteristics, Crime
Kerstiens, Geri Anne – ProQuest LLC, 2019
Recently, there have been many calls for an increase in instruction on the nature of science (NOS) in schools (i.e. NRC, 1996; NGSS Lead States, 2013). These calls recognize the importance of this topic at all levels of science education, but there is little guidance in terms of how to address it effectively in curricula. Similarly, there have…
Descriptors: Scientific Principles, Science Instruction, Chemistry, Science Laboratories
Kurson, Rebecca – Science and Children, 2014
This article describes an integrated unit designed to teach second graders about the phases of the Moon. The science department at the author's school had been reshaping their curriculum to match their state standards as well as the "Next Generation Science Standards" ("NGSS"). Their primary goal was for students to be…
Descriptors: Science Instruction, Elementary School Science, Grade 2, Astronomy
Winkelmann, Kurt; Baloga, Monica; Marcinkowski, Tom; Giannoulis, Christos; Anquandah, George; Cohen, Peter – Journal of Chemical Education, 2015
Research projects conducted by faculty in STEM departments served as the inspiration for a new curriculum of inquiry-based, multiweek laboratory modules in the general chemistry 1 course. The purpose of this curriculum redesign was to improve students' attitudes about chemistry as well as their self-efficacy and skills in performing inquiry…
Descriptors: Inquiry, Science Process Skills, Skill Development, Self Efficacy

Githens, Sherwood, Jr. – Physics Teacher, 1970
Describes the development and organization of a course begun in 1962 consisting of a sequence of manipulative learning operations. The laboratory operations of Quantitative Physical Science lead the student through the fundamentals of instrumentation and of measurement processes. Principles studied include physical, electrical, chemical, and wave…
Descriptors: Course Descriptions, Course Evaluation, Curriculum Development, Instruction
Goolsby, Charles M. – 1972
Intended to be used along with the "Teacher's Guide to Classroom Discussions for Biology" and the "Teacher's Guide to Laboratory Activities for Biology," this volume presents 43 laboratory exercises for introductory college-level biology. (CP)
Descriptors: Biology, College Science, Curriculum Development, Higher Education

Yang, Min J.; Atkinson, George F. – Journal of Chemical Education, 1998
Addresses the difficulty that teaching assistants and new faculty members may experience in finding a convenient outline of the task of preparing an experiment for undergraduates. Explains all phases of developing a laboratory exercise and includes a list of things to consider for each phase. (DDR)
Descriptors: Chemistry, Concept Formation, Curriculum Development, Faculty Development
Martinez-Jimenez, P.; Salas-Morera, L.; Pedros-Perez, G.; Cubero-Atienza, A. J.; Varo-Martinez, M. – IEEE Transactions on Education, 2010
During the last few years, the number of university students choosing to follow engineering degrees has decreased dramatically in Spain. For that reason, several university departments, in collaboration with some high schools, have developed a range of activities in order to promote a higher enrollment rate, to improve the level of mathematics and…
Descriptors: Foreign Countries, Engineering Education, Enrollment Rate, Engineering

Zoller, Uri – Journal of Chemical Education, 1979
A description is given of a chemically-oriented curriculum on "Smoking and Cigarette Smoke" for science and nonscience oriented high school students. Laboratory activity is emphasized. (SA)
Descriptors: Chemistry, Curriculum Development, Decision Making, Health Education

Policoff, Ivan – Journal of College Science Teaching, 1990
Discussed is the use of volunteers to teach an astronomy laboratory course. Amateur astronomy groups were recruited to help teach this course. Advantages of using volunteers are listed. A list of student field experiences is included. (KR)
Descriptors: Astronomy, College Science, Course Descriptions, Curriculum Development

Howard, Robert E.; And Others – Journal of Chemical Education, 1989
Describes a year long laboratory program for third, fourth, and fifth graders. States the goal of the program is to demonstrate what chemistry is, how it is done, and why it is fun and interesting. Provides a syllabus of the experiments and lists educational objectives. (MVL)
Descriptors: Chemical Reactions, Chemistry, Curriculum Development, Elementary Education
Brophy, M.; Fryars, M. – 1983
Seychelles Integrated Science (SIS), a 3-year laboratory-based science program for students (ages 11-15) in upper primary grades 7, 8, and 9, was developed from an extensive evaluation and modification of previous P7-P9 materials. This P7 SIS unit is designed to: (1) introduce students to and familiarize them with working in the school laboratory;…
Descriptors: Curriculum Development, Integrated Curriculum, Junior High Schools, Laboratory Procedures
Steinfeld, J. I. – J Chem Educ, 1969
Descriptors: Chemistry, College Science, Curriculum Development, Laboratory Experiments

Gregory, J. M. – Physics Education, 1974
Describes teaching schemes and apparatus designed to give the teacher and the student a range of reliable, workable experiments to explore the world of small static charges. (GS)
Descriptors: Curriculum Development, Electricity, Equipment, Laboratory Experiments