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Qu, Andrew; Nicolas, Madeleine; Leung, Eric Minshing; Jones, Serena Monique; Katyal, Priya; Punia, Kamia; Maxfield, Macrae; Montclare, Jin Kim – Journal of Chemical Education, 2022
Virtual chemistry laboratory modules were investigated as a potential learning resource that complements traditional in-person experiments. In collaboration with a high school instructor, we designed two interactive modules, "Rates of Reaction" and "Models of Organic Molecules," which became part of a previously reported online…
Descriptors: Electronic Learning, Science Experiments, Chemistry, High School Students
Jinglin Fu; Anthony Monte Carlo; Doris Zheng – Journal of Chemical Education, 2025
The COVID-19 pandemic has accelerated the shift from traditional in-person teaching to remote and online learning, necessitating a more adaptable educational platform to serve the diverse needs of students. Transforming hands-on "wet lab" activities into virtual "dry lab" exercises can promote a more accessible and flexible…
Descriptors: Undergraduate Students, College Science, Science Education, Biochemistry
Kardaras, Ioannis; Kallery, Maria – Physics Education, 2020
Teaching blackbody radiation within the framework of astrophysics can motivate students to learn and obtain a more profound and qualitative understanding of the subject. In this paper we present a teaching module that intertwines teaching blackbody radiation via the continuous spectrum of hot objects, especially the stars. The module's approach…
Descriptors: Learning Modules, Radiation, Physics, Student Motivation
Yang, Xinmiao; Hartman, Mark R.; Harrington, Kristin T.; Etson, Candice M.; Fierman, Matthew B.; Slonim, Donna K.; Walt, David R. – CBE - Life Sciences Education, 2017
With the development of new sequencing and bioinformatics technologies, concepts relating to personal genomics play an increasingly important role in our society. To promote interest and understanding of sequencing and bioinformatics in the high school classroom, we developed and implemented a laboratory-based teaching module called "The…
Descriptors: Science Instruction, Secondary School Science, High School Students, Genetics
Gryczka, Patrick; Klementowicz, Edward; Sharrock, Chappel; Maxfield, MacRae; Montclare, Jin Kim – Journal of Chemical Education, 2016
Lab instructors, for both high school and undergraduate college level courses, face issues of constricted time within the lab period and limited student engagement with prelab materials. To address these issues, an online prelab delivery system named LabLessons is developed and tested out in a high school chemistry classroom. The system…
Descriptors: Online Courses, Undergraduate Students, High Schools, Student Motivation
Schultz, Kelly M.; Snyder, Mark A. – Chemical Engineering Education, 2019
A hands-on educational module was created to illustrate the scope of chemical engineering. Students are taught fundamental concepts that they integrate in a laboratory experience designing and fabricating a 'plant-on-a-chip' microfluidic device capable of continuous processing of reactive flows. Students gain insight into chemical engineering…
Descriptors: Chemical Engineering, STEM Education, Outreach Programs, Student Recruitment
Chien, Sen-I; Su, Chaochin; Chou, Chin-Cheng; Li, Wen-Ren – Journal of Chemical Education, 2018
The present study describes the design of a simple teaching module for each student to fabricate a dye-sensitized solar cell (DSSC) that could power a small fan motor. The significance of this laboratory exercise is to stimulate students' motivation by visualizing the light being converted into electricity, which is then switched over to kinetic…
Descriptors: Science Instruction, Energy, Kinetics, High School Students
Pilarz, Matthew – ProQuest LLC, 2013
For this study, a research-based lab module was implemented in two high school chemistry classes for the purpose of examining classroom dynamics throughout the process of students completing the module. A research-based lab module developed for use in undergraduate laboratories by the Center for Authentic Science Practice in Education (CASPiE) was…
Descriptors: Science Instruction, Chemistry, High School Students, Secondary School Science
Scharfenberg, Franz-Josef; Bogner, Franz X. – Research in Science Education, 2013
This study classified students into different cognitive load (CL) groups by means of cluster analysis based on their experienced CL in a gene technology outreach lab which has instructionally been designed with regard to CL theory. The relationships of the identified student CL clusters to learner characteristics, laboratory variables, and…
Descriptors: Laboratories, Laboratory Experiments, Theory Practice Relationship, Pretests Posttests
Lisotti, Annamaria; De Renzi, Valentina; Rozzi, Carlo Andrea; Villa, Elena; Albertini, Franca; Goldoni, Guido – Physics Education, 2013
We developed an educational path based on nitinol, a shape memory alloy which conveniently exemplifies the smart material concept, i.e., a material that performs a predetermined, reversible action in response to a change in the environment. Nitinol recovers a given shape, changes its resistivity drastically and modifies its elastic properties if…
Descriptors: Science Instruction, Scientific Concepts, Secondary School Science, Educational Technology
Doherty, David – Journal of Political Science Education, 2011
Experiments provide a simple and engaging framework for familiarizing students with the process of quantitative social research. In this article, I illustrate how experiments can be used in the classroom environment by describing a module that was implemented in four high school classrooms. The module familiarized students with how the scientific…
Descriptors: Research Design, Scientific Methodology, Statistical Analysis, Teaching Methods
Asay, Loretta Johnson – ProQuest LLC, 2013
Analogies are ubiquitous during instruction in science classrooms, yet research about the effectiveness of using analogies has produced mixed results. An aspect seldom studied is a model of instruction when using analogies. The few existing models for instruction with analogies have not often been examined quantitatively. The Teaching With…
Descriptors: Science Education, Logical Thinking, Concept Mapping, Science Instruction
Lorenzini, Robert G.; Lewis, Maurica S.; Montclare, Jin Kim – Journal of Chemical Education, 2011
Polymers are materials with vast environmental and economic ramifications, yet are generally not discussed in secondary education science curricula. We describe a program in which college mentors develop and implement hands-on, polymer-related experiments to supplement a standard, state regents-prescribed high school chemistry course, as well as a…
Descriptors: Feedback (Response), Chemistry, College Students, Plastics
Marquard, Robert D.; Steinback, Rebecca – American Biology Teacher, 2009
Major advances in fundamental science are developed using model systems. Classic examples of model systems include Mendel's work with the common garden pea ("Pisium sativa"), classic inheritance work by Morgan with the fruit fly ("Drosophila"), developmental studies with the nematode ("C. elegans"), and transposable elements in maize ("Zea…
Descriptors: Biology, Biochemistry, Science Curriculum, Plants (Botany)
McLaughlin, Jacqueline – Science Teacher, 2006
In this article, the author discusses the CHANCE (Connecting Humans and Nature in the Costa Rican Environment) program, a coordinated effort between The Pennsylvania State University (PSU) and the Pennsylvania Department of Education that trains 9th- through 12th-grade teachers to be more like scientists and develop a unique, pedagogical tool for…
Descriptors: Scientists, High School Students, Teacher Improvement, Foreign Countries
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