Publication Date
| In 2026 | 0 |
| Since 2025 | 0 |
| Since 2022 (last 5 years) | 1 |
| Since 2017 (last 10 years) | 3 |
| Since 2007 (last 20 years) | 5 |
Descriptor
Source
| Improving Schools | 1 |
| International Journal of… | 1 |
| Physics Teacher | 1 |
| Policy Futures in Education | 1 |
| Written Communication | 1 |
Author
| Butler, Cameron | 1 |
| Dasgupta, Deepanwita | 1 |
| De La Paz, Susan | 1 |
| Farenga, Stephen J. | 1 |
| Garofalo, Salvatore G. | 1 |
| Levin, Daniel M. | 1 |
| Liao, David | 1 |
| Ness, Daniel | 1 |
| Shah, Vishal | 1 |
| Talanquer, Vicente | 1 |
Publication Type
| Journal Articles | 5 |
| Reports - Descriptive | 5 |
Education Level
| Elementary Secondary Education | 1 |
| Higher Education | 1 |
| Postsecondary Education | 1 |
Audience
Location
| India | 1 |
Laws, Policies, & Programs
Assessments and Surveys
What Works Clearinghouse Rating
De La Paz, Susan; Levin, Daniel M.; Butler, Cameron – Written Communication, 2023
Students with disabilities (SWD) in general education science classes are expected to engage in the scientific practices and potentially in the writing of arguments drawn from evidence. Currently, however, there are few research-based instructional approaches for teaching argument writing for these students. The present article responds to this…
Descriptors: Writing Instruction, Teaching Methods, Students with Disabilities, Writing (Composition)
Liao, David – Physics Teacher, 2018
Students often struggle in AP Physics 1 because they have not been previously trained to develop qualitative arguments. Extensive literature on multiple representations and qualitative reasoning provides strategies to address this challenge. Table I presents three examples, including SiQuENC, which I adapted from a strategy promoted by Etkina et…
Descriptors: Advanced Placement, Physics, Problem Solving, Science Process Skills
Talanquer, Vicente – International Journal of Science Education, 2018
One of the central goals of modern science and chemistry education is to develop students' abilities to understand complex phenomena, and productively engage in explanation, justification, and argumentation. To accomplish this goal, we should better characterise the types of reasoning that we expect students to master in the different scientific…
Descriptors: Science Education, Chemistry, Science Process Skills, Abstract Reasoning
Dasgupta, Deepanwita – Policy Futures in Education, 2015
This paper is an attempt to reconstruct how C.V. Raman, a peripheral scientist in the early 20th century colonial India, managed to develop a research programme in physical optics from his remote colonial location. His attempts at self-training and self-education eventually led him to the discovery of the Raman Effect and to the Nobel Prize in…
Descriptors: Scientists, Science Process Skills, Scientific Methodology, Thinking Skills
Ness, Daniel; Farenga, Stephen J.; Shah, Vishal; Garofalo, Salvatore G. – Improving Schools, 2016
Appeals to reform science education by policy makers are not new phenomena. To be sure, while science reform efforts have been ongoing occurrences for nearly six decades, perpetual educational reform efforts as a whole have been evolving and gaining momentum in number for more than a century. The general motivation for continual reform appears to…
Descriptors: Educational Change, Science Education, Science Curriculum, Curriculum Development

Peer reviewed
Direct link
