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Hadi D. Arman; Tu M. Ho; Kaitlyn Varela; Cynthia S. Veliz; Richard B. Zanni; Armando Rodriguez; Zhiwei Wang; Francis K. Yoshimoto – Journal of Chemical Education, 2023
Eleven different laboratory experiments were designed and executed throughout a semester to provide a meaningful research experience for 23 undergraduate biochemistry majors at UTSA. The topic of the semester was based on the idea of exploring new aspects to enhance our understanding of how the human body uses cytochrome P450 enzymes to metabolize…
Descriptors: Biochemistry, Science Laboratories, Undergraduate Students, Undergraduate Study
Simon D. Weaver; G. Alex Ambrose; Rebecca J. Whelan – Journal of Chemical Education, 2022
Students completing undergraduate majors in chemistry are not typically required to undergo formal training in computer programming or coding. As a result, many chemistry students are graduating without skills in understanding, writing, or manipulating computer code. This skills gap places students at a disadvantage, considering the widespread and…
Descriptors: Coding, Undergraduate Students, Majors (Students), Chemistry
Butterfield, Anthony E.; Branch, Kyle; Trujillo, Edward – Chemical Engineering Education, 2015
To incorporate active and collaborative teaching methods early in our curriculum, we have developed a freshman design laboratory. The course introduces numerous core concepts and lab skills, by way of seven teaching modules, including spectrometer construction and a collaborative project with seniors. Survey data show students enjoyed and learned…
Descriptors: College Freshmen, Design, Teaching Methods, Scientific Concepts
Ghirardi, Marco; Marchetti, Fabio; Pettinari, Claudio; Regis, Alberto; Roletto, Ezio – Journal of Chemical Education, 2015
A didactic sequence is proposed for the teaching of chemical equilibrium law. In this approach, we have avoided the kinetic derivation and the thermodynamic justification of the equilibrium constant. The equilibrium constant expression is established empirically by a trial-and-error approach. Additionally, students learn to use the criterion of…
Descriptors: Secondary School Students, Sequential Approach, Chemistry, Curriculum Implementation
Concannon, James; Brown, Patrick L. – Science Activities: Classroom Projects and Curriculum Ideas, 2017
The "Next Generation Science Standards" (NGSS) challenges science teachers to think beyond specific content standards when considering how to design and implement curriculum. This lesson, "Windmills by Design," is an insightful lesson in how science teachers can create and implement a cross-cutting lesson to teach the concepts…
Descriptors: Secondary School Science, Science Curriculum, Curriculum Design, High School Students
Zhang, Liangliang; Lei, Yinzhao – IEEE Transactions on Education, 2014
Synchrophasors, widely used in the monitoring and analysis of power systems, evolved from the phasor method presented by Charles Proteus Steinmetz in 1893. The phasor method is a mathematical method for solving linear sinusoidal steady-state circuits and time-varying electromagnetic fields. This paper traces the history and diffusion of the phasor…
Descriptors: Foreign Countries, Engineering Education, Science Education History, Scientific Methodology
Implementing an Inexpensive and Accurate Introductory Gas Density Activity with High School Students
Cunningham, W. Patrick; Joseph, Christopher; Morey, Samantha; Santos Romo, Ana; Shope, Cullen; Strang, Jonathan; Yang, Kevin – Journal of Chemical Education, 2015
A simplified activity examined gas density while employing cost-efficient syringes in place of traditional glass bulbs. The exercise measured the density of methane, with very good accuracy and precision, in both first-year high school and AP chemistry settings. The participating students were tasked with finding the density of a gas. The…
Descriptors: Introductory Courses, High School Students, Secondary School Science, Cost Effectiveness
Charles J. Eick; Michael Dias – International Journal of Designs for Learning, 2016
The first author re-entered the middle grades classroom to teach a new National Science Foundation (NSF) physical science curriculum that was designed to foster conceptual change through a scientific approach. The curriculum design met the need and call for reform in science education through its focus on inquiry, evidence-based reasoning, peer…
Descriptors: Educational Change, Science Instruction, Evidence Based Practice, Curriculum Design
National Academies Press, 2012
Science, engineering, and technology permeate nearly every facet of modern life and hold the key to solving many of humanity's most pressing current and future challenges. The United States' position in the global economy is declining, in part because U.S. workers lack fundamental knowledge in these fields. To address the critical issues of U.S.…
Descriptors: Science Education, Science Instruction, Elementary Secondary Education, Alignment (Education)
Caudill, Lester; Hill, April; Hoke, Kathy; Lipan, Ovidiu – CBE - Life Sciences Education, 2010
Funded by innovative programs at the National Science Foundation and the Howard Hughes Medical Institute, University of Richmond faculty in biology, chemistry, mathematics, physics, and computer science teamed up to offer first- and second-year students the opportunity to contribute to vibrant, interdisciplinary research projects. The result was…
Descriptors: Research Projects, Physics, Chemistry, Biology
Heck, Andre; Kedzierska, Ewa; Ellermeijer, Ton – Journal of Computers in Mathematics and Science Teaching, 2009
In this paper we report on the sustained research and development work at the AMSTEL Institute of the University of Amsterdam to improve mathematics and science education at primary and secondary school level, which has lead amongst other things to the development of the integrated computer working environment Coach 6. This environment consists of…
Descriptors: Research and Development, Elementary Secondary Education, Interdisciplinary Approach, Inquiry
Hjalmarson, Margret; Diefes-Dux, Heidi A.; Bowman, Keith; Zawojewski, Judith S. – Journal of STEM Education: Innovations and Research, 2006
We have designed model-development sequences using a common context to provide authentic problem-solving experiences for first-year students. The model-development sequence takes a model-eliciting activity a step further by engaging students in the exploration and adaptation of a mathematical model (e.g., procedure, algorithm, method) for solving…
Descriptors: Problem Solving, Learning Experience, College Freshmen, Mathematical Models