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Jing Cheng; Xian Li; Enming Hu; Yuanyuan Ran; Yingchun Li – Journal of Chemical Education, 2024
Molecular imprinting technology holds significant potential for applications in chemical analysis and detection. In order to integrate the fundamental knowledge of polymer chemistry, electrochemistry, and analytical chemistry with practical applications and cutting-edge research, we proposed a comprehensive experiment of the preparation,…
Descriptors: Chemistry, Experiential Learning, Science Experiments, Science Education
Dean J. Campbell; Thomas S. Kuntzleman; Kayla Lippincott; Abe Yassin; Khitab Dar; Q. Ott – Journal of Chemical Education, 2023
The relationship between surface area and dynamics of processes can be demonstrated by adding iron at room temperature to liquid nitrogen. The rate at which the liquid nitrogen boils to produce gas is related to the surface area of the iron. Adding iron in the form of consistent units that have measurable sizes can be readily connected to…
Descriptors: Metallurgy, Mathematical Concepts, Science Education, Scientific Concepts
Ronghui Que; Hongbo Wu; Yalan Zhao; Shasha Han; Min Han; Yan-Lin Xiong; Shanheng Ma; Houxiong Wang – Journal of Chemical Education, 2023
The classic silver mirror reaction at room temperature in textbooks usually used glucose to react with silver nitrate and ammonium nitrate with the presence of caustic alkalis. But the aldehydes such as acetaldehyde and propionaldehyde were difficult to react under the same condition. In this paper, Na[subscript 2]CO[subscript 3] was used to…
Descriptors: Climate, Scientific Concepts, Science Education, Chemistry
Antonia Fruntke; Mira Behnke; Leanne M. Stafast; Tom Träder; Elisabeth Dietel; Antje Vollrath; Christine Weber; Ulrich S. Schubert; Timm Wilke – Journal of Chemical Education, 2023
This publication presents a series of experiments in the field of nanomedicine for high school chemistry education and student laboratories, developed as a collaborative project between chemistry didactics and chemical research. In this context, polymeric nanocarriers represent a promising approach for drug delivery, acting as "smart…
Descriptors: Chemistry, Science Education, Synthesis, Science Experiments
Yu-Cin Jian; Leo Yuk Ting Cheung; Yi-Jye Wu; Fang-Ying Yang; Guo-Li Chiou – Instructional Science: An International Journal of the Learning Sciences, 2024
Computer-simulated experiments have been gaining popularity over hands-on experiments in science education, given the availability of technology and the trend of distance learning. Past studies have focused primarily on comparing the learning outcomes and user experiences of the two experiment modes. In this study, we used an eye tracker to…
Descriptors: Eye Movements, Experiential Learning, Computer Simulation, Science Experiments
Michael J. James; George E. Clarke; Charlotte Lee; Ian J. S. Fairlamb – Journal of Chemical Education, 2022
A laboratory experiment has been devised to train new graduate trainees in the safe and controlled handling of air-sensitive organometallic reagents using Schlenk lines, high vacuum pumps, liquid nitrogen traps, and cannula transfers. The reaction involves the formation of air-, moisture-, and thermally sensitive 2-pyridyllithium, generated in…
Descriptors: Graduate Study, Scientific Concepts, College Science, Science Education
Nausheen W. Sadiq; Tabussom Qureshi – Papers on Postsecondary Learning and Teaching, 2024
The scope of this preliminary study revolves around investigating the effectiveness of experiential learning in upper-year science laboratory courses in a post-pandemic era. In this study we have explored two key questions: 1. Can experiential learning facilitate independent inquiry in an upper-year undergraduate laboratory in a post-pandemic era?…
Descriptors: Science Education, Science Laboratories, Undergraduate Students, College Science
Morales, Hector – Techniques: Connecting Education and Careers (J1), 2010
Incorporating business skills such as problem-solving, public presentations, collaboration, and self-direction into STEM (science, technology, engineering and mathematics) subjects is an excellent way to build students' enthusiasm for these disciplines. When educators add workplace internships to the learning experience, they are well on their way…
Descriptors: Careers, Experiential Learning, Engineering, High School Seniors
Ryswyk, Hal Van; Hall, Eric W.; Petesch, Steven J.; Wiedeman, Alice E. – Journal of Chemical Education, 2007
The traditional range of marine microcosm laboratory experiments is presented as an ideal environment to teach the entire analysis process. The microcosm lab provides student-centered approach with opportunities for collaborative learning and to develop critical communication skills.
Descriptors: Laboratory Experiments, Communication Skills, Experiential Learning, Science Laboratories
DiCecco, J.; Wu, J.; Kuwasawa, K.; Sun, Y. – Advances in Physiology Education, 2007
It is challenging for biomedical engineering programs to incorporate an indepth study of the systemic interdependence of cells, tissues, and organs into the rigorous mathematical curriculum that is the cornerstone of engineering education. To be sure, many biomedical engineering programs require their students to enroll in anatomy and physiology…
Descriptors: Physiology, Science Education, College Students, Engineering Education
Fort, Deborah C. – Phi Delta Kappan, 1990
Although all students need more and better science classes to face the next century's challenges, students gifted in science also need access to dedicated teachers willing to assist their learning progress and encourage their production of original research projects. Integrating the science curriculum would also benefit gifted and other students.…
Descriptors: Elementary Secondary Education, Experiential Learning, Gifted, Mentors
Goldsworthy, Anne – Primary Science Review, 2005
Start at the end; that's the way to improve children's plans for investigations. Strange as it may seem, there are times when beginning at the beginning of an investigation is not the best way to start things off. To give children the opportunity to ask questions and plan what to do, sometimes it is best to get them first to consider others' data…
Descriptors: Investigations, Experiential Learning, Young Children, Science Experiments

Science Teacher, 1978
Science activities or experiments described are: (1) plant cloning, (2) determining the cost-effectiveness of gas and electric heating, and (3) a physics project competition. (MDR)
Descriptors: Biological Sciences, Experiential Learning, Heating, Physical Sciences

Woods, Robin K. – Educational Leadership, 1994
Students use their preschool experiences to form personal theories about the world and rarely correct misconceptions even when new information is presented. This article describes an elementary science teacher's efforts to help fifth and sixth graders revise personal electricity theories, based on experimentation. There is no simple way to…
Descriptors: Electricity, Elementary Education, Experiential Learning, Learning Processes
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