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Megan Beckam – ProQuest LLC, 2022
Community driven science has emerged as a way to engage participants in learning about science while giving them a deeper understanding of what it means to do science and identify as one who does science. This multi-method case study investigated how secondary science preservice teachers experienced a community driven science project within the…
Descriptors: Preservice Teachers, Science Teachers, Secondary School Science, School Community Relationship
Kundariat, Maisuna; Maghfiroh, Lailatul; Indriwat, Sri Endah; Rohman, Fatchur; Priambodo, Bagus – Journal of Biological Education Indonesia (Jurnal Pendidikan Biologi Indonesia), 2022
Scientific reasoning, argumentation, and problem-solving are essential skills in 21st century. They help people solve problems in daily life. This study aimed to investigate the effect of local-based teaching materials on student's argumentation, scientific reasoning, and problemsolving skills using Science Project-based Learning (SPjBL).…
Descriptors: Instructional Materials, Science Process Skills, Persuasive Discourse, Problem Solving
Zudaire, Isabel; Buil, Raquel; Uriz, Irantzu; Napal, María – International Journal of Early Childhood, 2022
Inquiry-based science education has become one of the most effective methodologies to learn science; however, proposals in preschool are scarce. Different factors are responsible for this situation, such as the low self-confidence of teachers to teach science and the belief that young children are unable to develop certain reasoning skills. This…
Descriptors: Preservice Teachers, Preschool Education, Active Learning, Inquiry
Horn, Ivo R.; Verleg, Peter A.; Ibrahim, Nafiesa Z.; Soeleman, Khadiedjah; Kampen, Floris; Ruesen, Mia O.; Reulen, Naïsha M.; Breij, Henk; Bakker, Roderick J.; Gravendeel, Barbara – Biochemistry and Molecular Biology Education, 2020
DNA barcoding is an important molecular methodology for species identification that was developed over the last two decades and it should be covered in the biology bachelor curriculum. Here, we present an example of DNA barcoding by sequencing a segment of the 28S nuclear ribosomal large subunit rRNA gene of wild mushrooms and framing the…
Descriptors: Genetics, Molecular Biology, Plants (Botany), Identification
Brown, James A. L. – Journal of Biological Education, 2020
To succeed, undergraduate science students need to both acquire knowledge, and learn to apply it effectively. Here a novel 1st year undergraduate module (incorporating blended learning, applied bioinformatic skills and scientific posters) is described and its effectiveness evaluated (quantitatively and qualitatively). The aims were to engage…
Descriptors: Foreign Countries, Undergraduate Students, Science Process Skills, Hands on Science
Cianfrani, Christina; Hews, Sarah; DeJong, Christene – Journal of College Science Teaching, 2020
We designed the Integrated Sciences First-Year Program (ISFP) to introduce students to the nature and process of science early in their academic career, help them develop skills and competencies, and create an intellectual community of learners to foster belonging within science. Using their inherent curiosity, we designed active learning…
Descriptors: College Freshmen, Student Research, Scientific Research, Science Process Skills
Cianfrani, Christina; Hews, Sarah – Journal of College Science Teaching, 2020
Undergraduate students are increasingly aware of complex global challenges and have a strong desire to take action and create change. Course-based undergraduate research experiences can offer a wide range of students the opportunity to gain skills needed to address these challenges. At a small liberal arts college in New England, we developed the…
Descriptors: College Freshmen, Student Research, Inquiry, Science Education
Robinson, Rosanna L.; McDonald, James E. – Bioscience Education, 2014
Development of skills in bioscience undergraduates is seen as desirable by academic staff, students and employers, and this is reflected across most degree programmes. However, providing the opportunity for students to practise skills may alone be insufficient for their development. With an evident discrepancy between the skills expected of…
Descriptors: Skill Development, Biological Sciences, Science Process Skills, Learning Modules
Benyahia, Farid – Chemical Engineering Education, 2005
A long experience in undergraduate vinyl chloride monomer (VCM) process design projects is shared in this paper. The VCM process design is shown to be fully compliant with ABET 2000 criteria by virtue of its abundance in chemical engineering principles, integration of interpersonal and interdisciplinary skills in design, safety, economics, and…
Descriptors: Undergraduate Students, Design, Engineering Technology, Engineering Education
Dolph, Darrel A. – Tech Directions, 2004
Students in the Electronics Engineering Technology program at Pennsylvania College of Technology designed and built a computerized dynamometer platform for testing dc brushless motors. As the capstone experience for EET-320, Measurement and Tests course, students were divided into teams of four and were given three weeks to complete the project.…
Descriptors: Engineering Technology, Problem Based Learning, Science Process Skills, Science Projects
Brewer, Sharon E.; Cinel, Bruno; Harrison, Michelle; Mohr, Christina L. – International Review of Research in Open and Distance Learning, 2013
In delivering chemistry courses by distance, a key challenge is to offer the learner an authentic and meaningful laboratory experience that still provides the rigour required to continue on in science. To satisfy this need, two distance general chemistry laboratory courses appropriate for Bachelor of Science (B.Sc.) students, including chemistry…
Descriptors: Distance Education, College Freshmen, Laboratory Training, Chemistry
Rockstraw, David A. – Chemical Engineering Education, 2005
An established methodology involving the sequential presentation of five skills on ASPEN Plus to undergraduate seniors majoring in ChE is presented in this document: (1) specifying unit operations; (2) manipulating physical properties; (3) accessing variables; (4) specifying nonstandard components; and (5) applying advanced features. This…
Descriptors: Chemical Engineering, Teaching Methods, College Seniors, Science Process Skills