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Herreid, Clyde Freeman – Journal of College Science Teaching, 2010
Remember the time when all you had to do was memorize these five steps: ask a question, formulate a hypothesis, perform experiment, collect data, and draw conclusions? And you received full credit for defining the scientific method. Well, those days are gone. This article discusses why the "scientific method ain't what it used to be." (Contains 2…
Descriptors: Scientific Methodology, Science Process Skills, Scientific Attitudes, Misconceptions
Vincent, Dan – Science Scope, 2010
Using "hands-on" instruction in the science classroom has obvious value for both teachers and students. However, just because a type of instruction does not allow students to physically interact with objects does not mean it is not worthwhile. One method the author has found to be productive and engaging for students uses examples of historical…
Descriptors: Investigations, Physics, Teaching Methods, Science Instruction
Keler, Cynthia; Balutis, Tabitha; Bergen, Kim; Laudenslager, Bryanna; Rubino, Deanna – American Biology Teacher, 2010
Serial dilution is often a difficult concept for students to understand. In this short dry lab exercise, students perform serial dilutions using seed beads. This exercise helps students gain skill at performing dilutions without using reagents, bacterial cultures, or viral cultures, while being able to visualize the process.
Descriptors: Science Instruction, Science Laboratories, Science Activities, Scientific Principles
Aultman, Terry; Curran, Mary Carla; Partridge, Michael – Science Scope, 2010
This lesson was developed for middle school students using actual research on grass shrimp ("Palaemonetes pugio") to illustrate the process of a scientific investigation. The research was conducted at Savannah State University and funded by the National Oceanic and Atmospheric Administration (NOAA) Office of Education through the Living Marine…
Descriptors: Curriculum Development, Middle School Students, Investigations, Science Curriculum
Martinez, C. C. M.; Madrid, R. E.; Felice, C. J. – IEEE Transactions on Education, 2009
A simple procedure to make an iridium oxide (IrO[subscript 2]) electrodeposited pH sensor, that can be used in a chemical, biomedical, or materials laboratory, is presented here. Some exercises, based on this sensor, that can be used to teach important concepts in the field of biomedical, biochemical, tissue, or materials engineering, are also…
Descriptors: Biomedicine, Biochemistry, Science Process Skills, Cost Effectiveness
Miranda, Rommel J.; Damico, Julie B. – Journal of Science Teacher Education, 2013
This study sought to determine the beliefs that tenured, in-service high school science teachers hold about how their participation in a large mid-Atlantic university's 6-week summer research experiences for teachers (RET) program might influence their pedagogical practices. The findings show a number of factors that teachers believed helped them…
Descriptors: Science Teachers, High Schools, Secondary School Teachers, Summer Programs
Ruiz-Martinez, A.; Pereniguez-Garcia, F.; Marin-Lopez, R.; Ruiz-Martinez, P. M.; Skarmeta-Gomez, A. F. – IEEE Transactions on Learning Technologies, 2013
In the teaching of computer networks the main problem that arises is the high price and limited number of network devices the students can work with in the laboratories. Nowadays, with virtualization we can overcome this limitation. In this paper, we present a methodology that allows students to learn advanced computer network concepts through…
Descriptors: Computer Networks, Concept Teaching, Science Process Skills, Teaching Methods
Milkova, Liliana; Crossman, Colette; Wiles, Stephanie; Allen, Taylor – CBE - Life Sciences Education, 2013
An activity involving analysis of art in biology courses was designed with the goals of piquing undergraduates' curiosity, broadening the ways in which college students meaningfully engage with course content and concepts, and developing aspects of students' higher-level thinking skills, such as analysis, synthesis, and evaluation. To meet these…
Descriptors: Skill Development, Biology, Science Activities, Learning Activities
Lachapelle, Cathy P.; Sargianis, Kristin; Cunningham, Christine M. – Science and Children, 2013
Engineering is prominently included in the "Next Generation Science Standards" (Achieve Inc. 2013), as it was in "A Framework for K-12 Science Education" (NRC 2012). The National Research Council, authors of the "Framework," write, "Engineering and technology are featured alongside the natural sciences (physical…
Descriptors: Science Instruction, Engineering Education, STEM Education, Elementary School Curriculum
Wolyniak, Michael J. – Biochemistry and Molecular Biology Education, 2013
A study of modern genetics requires students to successfully unite the principles of Mendelian genetics with the functions of DNA. Traditional means of teaching genetics are often successful in teaching Mendelian and molecular ideas but not in allowing students to see how the two subjects relate. The laboratory module presented here attempts to…
Descriptors: Science Instruction, College Science, Secondary School Science, High Schools
Fraleigh-Lohrfink, Kimberly J.; Schneider, M. Victoria; Whittington, Dawayne; Feinberg, Andrew P. – Roeper Review, 2013
Underrepresentation of ethnic minorities in science, technology, engineering, and mathematics (STEM) fields has been a growing concern. Efforts to ameliorate this have often been directed at college-level enrichment. However, mentoring in the sciences at a high-school age level may have a greater impact on career choices. The Center Scholars…
Descriptors: STEM Education, Minority Group Students, Academically Gifted, High School Students
Chan, Julia Y. K.; Bauer, Christopher F. – Journal of Chemical Education, 2014
The purpose of this study is to identify academically at-risk students in first-semester general chemistry using affective characteristics via cluster analysis. Through the clustering of six preselected affective variables, three distinct affective groups were identified: low (at-risk), medium, and high. Students in the low affective group…
Descriptors: At Risk Students, Chemistry, Science Instruction, Affective Behavior
Sun, Daner; Looi, Chee-Kit; Xie, Wenting – Educational Technology & Society, 2014
Though discussion of the teacher factor in ICT-enabled science learning abounds in the literature, the investigation of Teacher Enactments (TEs) of ICT-facilitated lessons through exploring teaching practices is still under-explored and under-recognized. Current studies are still lacking in evidence-based findings of TEs based on the investigation…
Descriptors: Web Based Instruction, Cooperative Learning, Computer Assisted Instruction, Science Instruction
Garik, Peter; Benétreau-Dupin, Yann – Science & Education, 2014
This is an editorial report on the outcomes of an international conference sponsored by a grant from the National Science Foundation (NSF) (REESE-1205273) to the School of Education at Boston University and the Center for Philosophy and History of Science at Boston University for a conference titled: "How Can the History and Philosophy of…
Descriptors: Conferences (Gatherings), International Programs, Science History, Philosophy
Garofalo, Joe; Trinter, Christine P. – Mathematics Teacher, 2012
By working through well-designed tasks, students can expand their thinking about mathematical ideas and their approaches to solving mathematical problems. They can come to see the value of looking at tasks from different perspectives and of using different representations. This article discusses four tasks that encourage high school students and…
Descriptors: Mathematics Instruction, Secondary School Mathematics, Mathematical Concepts, Preservice Teacher Education

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