Publication Date
| In 2026 | 0 |
| Since 2025 | 1 |
| Since 2022 (last 5 years) | 3 |
| Since 2017 (last 10 years) | 8 |
| Since 2007 (last 20 years) | 23 |
Descriptor
Source
Author
Publication Type
Education Level
| Higher Education | 9 |
| Postsecondary Education | 7 |
| Elementary Secondary Education | 5 |
| Secondary Education | 4 |
| Elementary Education | 2 |
| High Schools | 1 |
| Middle Schools | 1 |
Location
| United Kingdom (Great Britain) | 10 |
| Canada | 5 |
| United Kingdom | 5 |
| Australia | 3 |
| Asia | 2 |
| United Kingdom (England) | 2 |
| United States | 2 |
| China | 1 |
| Finland | 1 |
| Hungary | 1 |
| Illinois | 1 |
| More ▼ | |
Laws, Policies, & Programs
Assessments and Surveys
| Program for International… | 1 |
| Trends in International… | 1 |
What Works Clearinghouse Rating
David B. Kushner; Mya Breitbart; Kari M. Debbink; Maureen C. Ferran; Dylan M. Johnson; Laura L. Newcomb; Lauren A. O'Donnell – Journal of Microbiology & Biology Education, 2024
It has become increasingly important for microbiology educators to help students learn critical concepts of the discipline. This is particularly true in virology, where current challenges include increasing rates of vaccine hesitancy, misinformation about the COVID-19 pandemic, and controversy surrounding research on pathogens with pandemic…
Descriptors: Undergraduate Students, College Science, Science Education, Educational Objectives
Nicola Broderick – Irish Educational Studies, 2025
This discussion paper focuses on the purpose of, and vision for, Irish primary science education prior to the redevelopment and publication of the primary science curriculum in 2024. Scientific literacy is broadly accepted as the goal of science education. Despite this, curricular analysis focusing on scientific literacy in Europe is scarce. There…
Descriptors: Scientific Literacy, Elementary School Science, Teaching Methods, Science Education
Hamilton, Nicholas B.; Remington, Jacob M.; Schneebeli, Severin T.; Li, Jianing – Journal of Chemical Education, 2022
We reported a redesign of a physical chemistry laboratory course (CHEM 166) for our chemistry majors at the University of Vermont carried out during the COVID-19 pandemic. We started to teach this course after a curriculum reform, which split an upper-division undergraduate laboratory course into physical and analytical chemistry laboratories. To…
Descriptors: Outcome Based Education, Chemistry, Science Laboratories, Science Curriculum
Rifkin, Moses – Science Teacher, 2020
Underrepresentation is endemic across disciplines and across time (National Science Foundation 2019), and extensive research clearly shows that this reflects bias and a lack of access, not a lack of ability in students from those underrepresented groups (National Research Council 2012). Systemic injustice is present in the teaching (Moss-Racusin…
Descriptors: Science Education, Science and Society, Social Justice, Science Instruction
Tracy, Charles – School Science Review, 2018
The Institute of Physics curriculum committee has been looking at ways of framing schoollevel physics so that it gives students a rewarding and productive experience of physics and leaves them with positive views of the discipline and its cultural contribution, as well as lasting and detailed skills, knowledge and understanding. The result is some…
Descriptors: Physics, Science Curriculum, Curriculum Development, Guidelines
Mendez, Gabriela – Distance Learning, 2019
In the K-12 2010 report by the President's Council of Advisors on Science and Technology, the term "deeply digital" referred to comprehensive instructional materials for STEM education that "would use simulations, probes, multimedia, and other digital resources as needed" (p. 80). When used in a broader sense, deeply digital…
Descriptors: Electronic Learning, STEM Education, Science Curriculum, Curriculum Development
Gibney, Danièle – School Science Review, 2018
This article discusses the development by the Royal Society of Chemistry of a framework to provide a relevant and coherent chemistry curriculum for all students. This work has been carried out by our Curriculum and Assessment Working Groups. The framework identifies three components that combine to give a rounded view of the discipline. Within the…
Descriptors: Science Curriculum, Curriculum Development, Chemistry, Science Education
Hainsworth, Mark – Primary Science, 2018
As well as providing a valuable and enjoyable experience for pupils, outdoor learning also enhances and contextualises learning in science by helping pupils understand science concepts. Teachers' lack of confidence in which aspects of the science curriculum they can actually teach outdoors deters them from venturing outside the classroom for…
Descriptors: Outdoor Education, Science Instruction, Science Curriculum, Scientific Concepts
Hodson, Derek – International Journal of Science Education, 2014
This opinion piece paper urges teachers and teacher educators to draw careful distinctions among four basic learning goals: learning science, learning about science, doing science and learning to address socio-scientific issues. In elaboration, the author urges that careful attention is paid to the selection of teaching/learning methods that…
Descriptors: Science Instruction, Learning Strategies, Teaching Methods, Inquiry
Hawkey, Kate; James, Jon; Tidmarsh, Celia – Teaching History, 2016
Inspired by the news that Bristol had become the UK's first Green Capital, Kate Hawkey, Jon James and Celia Tidmarsh set out to explore what a "Green Capital" School Curriculum might look like. Hawkey, James and Tidmarsh explain how they created a cross-curricular project to deliver in-school workshops focused on the teaching of climate…
Descriptors: Foreign Countries, Climate, Science Curriculum, Curriculum Development
Yacoubian, Hagop A. – Canadian Journal of Science, Mathematics and Technology Education, 2015
In this article, I introduce a framework for guiding future citizens to think critically about nature of science (NOS) and "with" NOS as they engage in socioscientific decision making. The framework, referred to as the critical thinking--nature of science (CT-NOS) framework, explicates and targets both NOS as a learning objective and NOS…
Descriptors: Science Education, Critical Thinking, Scientific Principles, Science and Society
Wilson, Christopher James – PRIMUS, 2014
We describe specific curricular decisions employed at Butler University that have resulted in student achievement in the actuarial science major. The paper includes a discussion of how these decisions might be applied in the context of a new actuarial program.
Descriptors: Majors (Students), Risk Assessment, Educational Objectives, Degree Requirements
Fossey, A. – South African Journal of Higher Education, 2012
Universities of Technology are mandated to provide career-orientated programmes preparing graduates for the workplace, doing research aimed at identifying societal and industrial needs, and finding solutions. Universities of Technology interweave technology with university endeavours; focusing on the know-how for the fabrication of things, and the…
Descriptors: Career Education, Biotechnology, Foreign Countries, Industry
Withers, Michelle – CBE - Life Sciences Education, 2016
Finding the time for developing or locating new class materials is one of the biggest barriers for instructors reforming their teaching approaches. Even instructors who have taken part in training workshops may feel overwhelmed by the task of transforming passive lecture content to engaging learning activities. Learning cycles have been…
Descriptors: College Science, Educational Change, Instructional Innovation, Learning Processes
Khalaf-Kairouz, Layla – Discourse and Communication for Sustainable Education, 2012
The Faculty of Natural and Applied Sciences at Notre Dame University--Louaize, conscious to the need of experts in the emerging field of sustainability and to the role that an educational institution plays for the service of the community, introduced into the university curricula a major in environmental science. This paper will present the…
Descriptors: Sustainable Development, Science Curriculum, Environmental Education, College Programs

Peer reviewed
Direct link
