Publication Date
In 2025 | 0 |
Since 2024 | 2 |
Since 2021 (last 5 years) | 3 |
Since 2016 (last 10 years) | 5 |
Since 2006 (last 20 years) | 11 |
Descriptor
Experiential Learning | 24 |
Physics | 24 |
Laboratory Experiments | 11 |
Science Education | 11 |
Science Instruction | 11 |
Science Activities | 9 |
Secondary School Science | 9 |
Hands on Science | 8 |
Science Laboratories | 8 |
Chemistry | 7 |
Science Experiments | 7 |
More ▼ |
Source
Author
Westcott, Dale | 2 |
Alpaslan, Muhammet Mustafa | 1 |
Ania Harlick | 1 |
Asayiel Alhajeri | 1 |
Brandon Bacon | 1 |
Brophy, Sean P. | 1 |
Calafate, Carlos, Ed. | 1 |
Christopher Cully | 1 |
Eichler, Jack F. | 1 |
Garvin, M. R. | 1 |
Isik, Hakan | 1 |
More ▼ |
Publication Type
Education Level
Higher Education | 6 |
Postsecondary Education | 3 |
Secondary Education | 2 |
High Schools | 1 |
Audience
Teachers | 10 |
Practitioners | 8 |
Administrators | 1 |
Location
Canada | 1 |
Indiana | 1 |
Saudi Arabia | 1 |
Sierra Leone | 1 |
Turkey | 1 |
Laws, Policies, & Programs
Assessments and Surveys
Advanced Placement… | 1 |
What Works Clearinghouse Rating
Electrochemistry Under Microscope: Observing the Diffusion Layer and Measuring Diffusion Coefficient
Lida Khalafi; Nastaran Nikzad; Asayiel Alhajeri; Brandon Bacon; Karla Alvarado; Mohammad Rafiee – Journal of Chemical Education, 2023
The area near the electrode surface is called the diffusion layer, and to understand electrochemistry, it is crucial that students have a knowledge of the phenomena occurring at the diffusion layer. Here, we present a demonstration and activity to visualize and analyze the expansion of a micrometer-sized diffusion layer. The electrode process…
Descriptors: Science Education, Chemistry, Laboratory Equipment, Scientific Concepts
Peter Gimby; Wesley Ernst; Christopher Cully; Ania Harlick – Papers on Postsecondary Learning and Teaching, 2024
The switch to online learning required a creative solution to allow for the experiential learning outcomes of the program to be satisfied when access to physical spaces and equipment was restricted. This paper describes a collaborative process between technical and support staff as well as research and teaching faculty that led to the creation of…
Descriptors: Online Courses, Experiential Learning, Teacher Collaboration, Educational Technology
Mable Moloi; Mogalatjane Edward Matabane – Research in Social Sciences and Technology, 2024
Digital practical work (DPW) has emerged as a highly effective and indispensable component of science education, enhancing and extending traditional laboratory experiences. DPW aims to complement physical laboratory experiments, particularly those that teachers may find challenging to conduct or lack the confidence to perform. In this study, a…
Descriptors: Physical Sciences, Science Education, Technology Integration, Science Instruction
Thompson, Gregory Louis – ProQuest LLC, 2019
This study examined laboratory experiments and traditional lecturing as an introductory teaching method in physics. In this participatory action research study, a qualitative and quantitative method were used to examine the level of achievement and the levels of engagement of high school students in introductory physics. The qualitative data was…
Descriptors: Science Instruction, Laboratory Experiments, Lecture Method, Physics
Isik, Hakan; Alpaslan, Muhammet Mustafa – Science Activities: Projects and Curriculum Ideas in STEM Classrooms, 2018
Lab activities have been innovated and progressed to fulfill the purpose that students need to experience physics concepts through hands-on and minds-on interactions. However, student-centered and conceptual activities in physics labs are challenged with time and material constraints that degrades the merits of the learning environment. This study…
Descriptors: Thermodynamics, Laboratory Experiments, Scientific Concepts, Hands on Science
Sattar, Simeen – Journal of Chemical Education, 2011
Tris(1,10-phenanthroline)iron(II) is the basis of a suite of four experiments spanning 5 weeks. Students determine the rate law, activation energy, and equilibrium constant for the dissociation of the complex ion in acid solution and base dissociation constant for phenanthroline. The focus on one chemical system simplifies a daunting set of…
Descriptors: College Freshmen, College Science, Chemistry, Physics
Eichler, Jack F. – Journal of Chemical Education, 2009
A guided-inquiry exercise conducted in both the lecture and laboratory components of a college introductory chemistry course for non-science majors is described. The exercise gave students the opportunity to independently determine the relationship between the temperature of water in an aluminum soda can and the intensity of implosion upon placing…
Descriptors: Integrated Activities, Student Interests, Chemistry, Lecture Method
Brophy, Sean P.; Magana, Alejandra J.; Strachan, Alejandro – Advances in Engineering Education, 2013
We studied the use of online molecular dynamics simulations (MD) to enhance student abilities to understand the atomic processes governing plastic deformation in materials. The target population included a second-year undergraduate engineering course in the School of Materials Engineering at Purdue University. The objectives of the study were to…
Descriptors: Lecture Method, Undergraduate Study, Inquiry, Laboratories
Moran, Timothy – Physics Teacher, 2009
While electricity is central to our daily lives, it remains "black box" technology to most students. They know that electricity is produced somewhere and that it costs money, but they do not have personal experience with the operation and scale of the machines that provide it. Fortunately, electricity generation can be added to the more basic…
Descriptors: Hands on Science, Energy, Science Instruction, Experiential Learning

Sievers, Dennis; Wilson, Alan – Science Teacher, 1989
Describes a method for making a simple, inexpensive apparatus which can be used to determine Planck's constant. Provides illustrations of a circuit diagram using one or more light-emitting diodes and a BASIC computer program for simplifying calculations. (RT)
Descriptors: Computer Oriented Programs, Computer Uses in Education, Experiential Learning, Laboratory Equipment

Williams, Michael J. – Physics Education, 1990
Advocated is the use of interactive centers to supplement existing classroom laboratory experiences. Activities found in the center and modified classroom versions are described. The problems that arise when primary students meet sophisticated exhibits is discussed. (KR)
Descriptors: Discovery Learning, Elementary Secondary Education, Exhibits, Experiential Learning
Tyler, Vicki, Ed. – 1989
This book, addressed to students for their independent use as well as to teachers as a supplement to the standard texts, contains nearly 100 practical science experiments that cover a wide range of subjects at different grade and ability levels. It is designed to involve students in active scientific experimentation, demonstrations, and projects…
Descriptors: Astronomy, Biology, Botany, Chemistry

Garvin, M. R.; Ramsier, R. D. – Education + Training, 2003
A laboratory, project, and field experience matrix is used to identify achievement of learning outcomes in an engineering physics course that stresses teamwork and creativity in an interdisciplinary context. The interactive/experiential lab develops transferable skills for the technological workplace. (SK)
Descriptors: Case Studies, Engineering Education, Experiential Learning, Higher Education
Keister, Jonathan N. – 1990
The purpose of this study was to document and analyze teachers' and students' activities during physics practicals in order to gain critical insights into why students did not acquire the expected practical skills and how theory and practice interacted in the context of teaching for the practical examination in physics. The study involves three…
Descriptors: Classroom Observation Techniques, Cognitive Development, Cognitive Structures, Concept Formation
Oller, Anna R. – American Biology Teacher, 2006
Forensic science courses encompasses the disciplines of biology, chemistry, mathematics, and physics, which provides an opportunity for students to become engaged in all content areas within one course. The inquiry-based learning environment allows visualization of results almost immediately, facilitating student interest. The laboratory…
Descriptors: Hands on Science, Inquiry, Laboratory Experiments, Science Education
Previous Page | Next Page ยป
Pages: 1 | 2