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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
Hemraj-Benny, Tirandai; Beckford, Ian – Journal of Chemical Education, 2014
It is an established fact that in the United States there is a great need to improve the scientific literacy of undergraduate students, especially those who are nonscience majors. Data presented herein suggest that using simple art concepts can assist nonscience majors in better appreciating scientific facts related to chemistry. However, it is…
Descriptors: Cooperative Learning, Inquiry, Chemistry, Science Instruction
Wagler, Ron – Science Scope, 2011
Middle school students can develop and enhance their observation skills by participating in teacher-guided scientific inquiry (NRC 1996) activities where they observe animals that tend to act in known, predictable ways. Madagascar hissing cockroaches ("Gromphadorhina portentosa") are one such animal. This article presents beginning, intermediate,…
Descriptors: Middle School Students, Observation, Foreign Countries, Language Acquisition
Treacy, Daniel J.; Sankaran, Saumya M.; Gordon-Messer, Susannah; Saly, Danielle; Miller, Rebecca; Isaac, R. Stefan; Kosinski-Collins, Melissa S. – CBE - Life Sciences Education, 2011
In introductory laboratory courses, many universities are turning from traditional laboratories with predictable outcomes to inquiry-inspired, project-based laboratory curricula. In these labs, students are allowed to design at least some portion of their own experiment and interpret new, undiscovered data. We have redesigned the introductory…
Descriptors: Science Laboratories, Molecular Biology, Science Instruction, Scientific Concepts
Cloonan, Carrie A.; Andrew, Julie A.; Nichol, Carolyn A.; Hutchinson, John S. – Journal of Chemical Education, 2011
This article describes an activity that can be used as an inquiry-based laboratory or demonstration for either high school or undergraduate chemistry students to provide a basis for understanding both vapor pressure and the concept of dynamic phase equilibrium. The activity includes a simple setup to create a closed system of only water liquid and…
Descriptors: Chemistry, Inquiry, Active Learning, Science Experiments
Boaventura, Diana; Faria, Claudia; Chagas, Isabel; Galvao, Cecilia – International Journal of Science Education, 2013
The purposes of the study were to analyse the promotion of scientific literacy through practical research activities and to identify children's conceptions about scientists and how they do science. Elementary school children were engaged in two scientific experiments in a marine biology research laboratory. A total of 136 students answered a…
Descriptors: Science Instruction, Outdoor Education, Science Activities, Elementary School Science
Mate, Karen; Sim, Alistair; Weidenhofer, Judith; Milward, Liz; Scott, Judith – Biochemistry and Molecular Biology Education, 2013
A blended approach encompassing problem-based learning (PBL) and structured inquiry was used in this laboratory exercise based on the congenital disease Osteogenesis imperfecta (OI), to introduce commonly used techniques in biomolecular analysis within a clinical context. During a series of PBL sessions students were presented with several…
Descriptors: Diseases, Molecular Biology, Science Instruction, Problem Based Learning
Kulczynska, Agnieszka; Johnson, Reed; Frost, Tony; Margerum, Lawrence D. – Journal of Chemical Education, 2011
An advanced undergraduate laboratory project is described that integrates inorganic, analytical, physical, and biochemical techniques to reveal differences in binding between cationic metal complexes and anionic DNA (herring testes). Students were guided to formulate testable hypotheses based on the title question and a list of different metal…
Descriptors: Chemistry, Genetics, Science Laboratories, Science Instruction
Cartrette, David P.; Miller, Matthew L. – Journal of Chemical Education, 2013
An innovative first- and second-year laboratory course sequence is described. The goal of the instructional model is to introduce chemistry and biochemistry majors to the process of research participation earlier in their academic training. To achieve that goal, the instructional model incorporates significant hands-on experiences with chemical…
Descriptors: Science Laboratories, College Science, Chemistry, Biochemistry
Fakayode, Sayo O.; King, Angela G.; Yakubu, Mamudu; Mohammed, Abdul K.; Pollard, David A. – Journal of Chemical Education, 2012
This article presents a guided-inquiry (GI) hands-on determination of Fe in food samples including plantains, spinach, lima beans, oatmeal, Frosted Flakes cereal (generic), tilapia fish, and chicken using flame atomic absorption spectroscopy (FAAS). The utility of the GI experiment, which is part of an instrumental analysis laboratory course,…
Descriptors: Chemistry, Minority Group Students, Spectroscopy, Science Laboratories
Keeratichamroen, Wasana; Dechsri, Precharn; Panijpan, Bhinyo; Ruenwongsa, Pintip – Teaching Science, 2010
In any demonstration to students, producing light and sound usually ensures interest and can enhance understanding and retention of the concepts involved. A guided inquiry (Predict, Observe, Explain: POE) approach was used to involve the students actively in their learning about the explosive combustion of fine flour particles in air in the…
Descriptors: Safety, Chemistry, Science Instruction, Inquiry
Maurer, Marta K.; Bukowski, Michael R.; Menachery, Mary D.; Zatorsky, Adam R. – Journal of Chemical Education, 2010
We have developed a two-week guided-inquiry laboratory in which first-semester general chemistry students investigate a suspected arson using gas chromatography--mass spectrometry and paper chromatography. In the process of evaluating evidence from the crime scene, students develop and test hypotheses and learn the fundamentals of chromatography,…
Descriptors: Investigations, Crime, Chemistry, Science Instruction
Llewellyn, Douglas; Rajesh, Hema – Science Scope, 2011
Elementary and middle school teachers often provide students with hands-on activities or even inquiry-based investigations that emphasize science process skills such as observing, classifying, identifying and controlling variables, hypothesizing, experimenting, and collecting and analyzing data. These activities and investigations are frequently…
Descriptors: Elementary School Teachers, Middle School Teachers, Inquiry, Scientific Methodology
Hugerat, Muhamad; Kortam, Naji – EURASIA Journal of Mathematics, Science & Technology Education, 2014
Twenty-eight freshmen majoring in biology and/or chemistry in an Arab college in Israel, were given a pre-test and a post-test in which they had to identify the control group and design a controlled experiment. During the course an intervention was used. Science was taught by inquiry while using strategies that promote higher-order thinking skills…
Descriptors: Thinking Skills, Inquiry, Science Instruction, Teaching Methods
Cords, Nina; Fischer, Robert; Euler, Manfred; Prasad, Amrita – Physics Education, 2012
In order to increase scientific literacy and the knowledge of science and technology of Europe's citizens, the European Commission suggests a more student-centred implementation of natural sciences in education systems. Inquiry-based learning (IBL) is not only an accepted method to promote students' interest and motivation, it also helps students…
Descriptors: Scientific Methodology, Multimedia Materials, Inquiry, Optics

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