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Incorporating Coding into the Classroom: An Important Component of Modern Bioinformatics Instruction
Nichole Orench-Rivera; April Bednarski; Paul Craig; Austin Talbot – Journal of College Science Teaching, 2025
Advancements in computation and machine learning have revolutionized science, enabling researchers to address once insurmountable challenges. Bioinformatics, a field that heavily relies on computer-driven analysis of biological data, has greatly benefited from these developments. However, traditional bioinformatics instruction frequently lacks the…
Descriptors: Coding, Computer Science Education, Integrated Curriculum, Programming
Jingjing Qiu; Anneke Moeller; Janet Zhen; Hansen Yang; Lily Din; Nicole Adelstein – Journal of Chemical Education, 2023
An integrated inorganic chemistry laboratory experience focusing on heterogeneous electrocatalysis with nickel (Ni)- and cobalt (Co)-based electrocatalysts is designed for upper-division, major-level chemistry students. In this laboratory, students will be guided through the fabrication of an indium tin oxide (ITO)-coated glass working electrode,…
Descriptors: Programming Languages, Computer Software, Computer Simulation, Educational Technology
Elizabeth S. Thrall; Fernando Martinez Lopez; Thomas J. Egg; Seung Eun Lee; Joshua Schrier; Yijun Zhao – Journal of Chemical Education, 2023
Given the growing prevalence of computational methods in chemistry, it is essential that undergraduate curricula introduce students to these approaches. One such area is the application of machine learning (ML) techniques to chemistry. Here we describe a new activity that applies ML regression analysis to the common physical chemistry laboratory…
Descriptors: Chemistry, Physics, Science Laboratories, Scientific Concepts
Phayphung, Wissarut; Rakkapao, Suttida; Prasitpong, Singha – Physics Education, 2022
The article introduces a low-cost Arduino sensor into the Young's modulus determination laboratory for physics university students. A stainless steel ruler is used as a cantilever beam. Its free end attached a mass is slightly bent and released to make it oscillate as a simple harmonic motion. The Arduino sensor detects the moving mass's frequency…
Descriptors: Laboratory Equipment, Science Laboratories, Physics, College Science
Preisler, Vanessa; Shume, Esayas; Talbot, Jean – Physics Teacher, 2022
Due to the COVID-19 pandemic, in the spring of 2020 many physics programs were forced to quickly transition all of their classes and laboratories to a completely online learning environment. The need for simple and engaging remote physics laboratories became apparent. One relatively low-cost remote lab system is Macmillan's iOLab device. This…
Descriptors: COVID-19, Pandemics, Science Instruction, Physics
Chowdhury, Pinaki – Online Submission, 2021
Collecting data on learners' performance in different chemistry contents and analysing them to identify their knowledge and understanding in related content areas is a major task of Chemistry Education Research. The data collection process on the learners' content knowledge and understanding of content knowledge requires a standard measuring tool.…
Descriptors: Data Collection, Standards, Chemistry, Scientific Concepts
Ronald Soong; Katelyn Downey; Arvin Moser; Pablo Monje; Amy Jenne; Rajshree Ghosh Biswas; Monica Bastawrous; Rudraksha Majumdar; Daniel Henryk Lysak; Antonio Adamo; Benjamin Goerling; Venita Decker; Falko Busse; Santiago Dominguez; Effiette Sauer; Svetlana Mikhaylichenko; Vivienne Luk; Andre´ J. Simpson – Journal of Chemical Education, 2022
The recent popularity of benchtop (BT) NMR systems has prompted its applications in undergraduate laboratories around the world. Owing to their low maintenance cost, due to the lack of a superconducting magnetic core, and simple operation, these BT NMR systems can fulfill many of the learning objectives outlined in the undergraduate organic…
Descriptors: Undergraduate Study, College Science, Science Laboratories, Computer Assisted Instruction
Duffy, Andrew G. – Physics Teacher, 2021
In the teaching and learning of physics, simulations have many applications. Simulations can help to illuminate concepts (such as the motion of electrons in electric or magnetic fields) that cannot usually be seen with the unaided eye, or to slow down things that happen over short time periods or at high speeds. They can also be used to help…
Descriptors: Physics, Introductory Courses, Computer Software, Scientific Concepts
Pebralia, Jesi; Amri, Iful; Rifa'i, Ahmad Imam – Physics Education, 2022
This study has proposed a simple method to show the convective heat transfer. The object in this study is an air conditioner (AC) as a simple case of convection. In addition, AC is also easy to find in the class because most classrooms in Indonesia installed AC. Usually, a visualization needs special software (i.e. MatLab or others) and good…
Descriptors: Science Instruction, Heat, Thermodynamics, Climate Control
Dumar, John – Physics Teacher, 2021
When our school implemented AP Physics 1, I wanted to include a project that would extend over time, use more advanced data analysis, and teach students about handling experimental error. Using a donated 5-inch Newtonian telescope and an entry-level digital camera, the students gathered data from digital images of the four Galilean moons, Io,…
Descriptors: Science Instruction, Physics, Advanced Placement Programs, Laboratory Equipment
Vater, Ashley; Mayoral, Jaime; Nunez-Castilla, Janelle; Labonte, Jason W.; Briggs, Laura A.; Gray, Jeffrey J.; Makarevitch, Irina; Rumjahn, Sharif M.; Siegel, Justin B. – Journal of Chemical Education, 2021
Including undergraduate research in STEM education is a well-supported and growing high-impact practice that has been made much more scalable through integrating these experiences into the classroom. Here we describe a new biochemistry Course-based Undergraduate Research Experience (CURE) that follows a design-to-data workflow with a strong…
Descriptors: Science Instruction, College Science, Undergraduate Study, Student Research
Šafranko, Silvija; Živkovic, Pavo; Stankovic, Anamarija; Medvidovic-Kosanovic, Martina; Széchenyi, Aleksandar; Jokic, Stela – Journal of Chemical Education, 2019
This work combines laboratory quantitative analysis of colored solutions and common devices for digital imaging (digital or web cameras or mobile phones, i.e., smartphones). ColorX software, specially designed for this study, was used for data collection and analysis in order to calculate concentrations of colored solutions from measured RGB…
Descriptors: Computer Graphics, Science Laboratories, Laboratory Experiments, Color
Gelir, Ali; Kocaman, Merve; Pekacar, Ilgim – Physics Education, 2019
In conventional e/m experiments performed in undergraduate laboratories, generally a simple mechanical ruler is used to measure the radius of the circular trajectory of the electrons. But, the measurement error in this technique is mostly big and varies from one student to another. As an alternative to a mechanical ruler, we proposed a more…
Descriptors: Undergraduate Students, College Science, Science Laboratories, Science Experiments
Jin, Hao; Qin, Yiheng; Pan, Si; Alam, Arif U.; Dong, Shurong; Ghosh, Raja; Deen, M. Jamal – Journal of Chemical Education, 2018
pH determination is an essential experiment in many chemistry laboratories. It requires a potentiometric instrument with extremely low input bias current to accurately measure the voltage between a pH sensing electrode and a reference electrode. In this technology report, we propose an open-source potentiometric instrument for pH determination…
Descriptors: Science Experiments, Science Laboratories, Laboratory Experiments, Chemistry
Obada, David O.; Bako, Raymond B.; Ahmed, Abdulkarim S.; Anafi, Fatai O.; Eberemu, Adrian O.; Dodoo-Arhin, David; Oyedeji, Ayodeji N.; Salami, Kazeem A.; Samuel, Bassey O.; Samuel, Emmanuel T.; Obada, Israel B. – Education and Information Technologies, 2023
Research and academia have been recently affected by the Coronavirus (COVID-19), and physical classrooms and laboratory experiments have been affected significantly due to the recent laboratory closures. This has led to innovative approaches to curb this problem. To address these difficulties in teaching bioengineering related courses that is of…
Descriptors: Engineering Education, Teaching Methods, Distance Education, Active Learning