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Cizmas, Emily – Science Teacher, 2021
Ecosystems, interacting systems of biotic and abiotic factors, are a fascinating topic in life science. The "Next Generation Science Standards" (NGSS Lead States 2013) recognize "Ecosystems: Interactions, Energy, and Dynamics" (HS-LS2) as one of four overarching ideas in life science that students should understand. Student…
Descriptors: Ecology, Biological Sciences, Scientific Concepts, Biodiversity
Keeley, Page – NSTA Press, 2021
"Leave no alternative science idea unchallenged!" could be the slogan of this second edition of "Uncovering Student Ideas in Science, Volume 2." Like the others in the bestselling series, this book is loaded with classroom-friendly features to pinpoint what your students know (or think they know) so you can adjust your teaching…
Descriptors: Student Evaluation, Knowledge Level, Formative Evaluation, Scientific Literacy
Pease, Randy; Vuke, Mary; June Maker, C.; Muammar, Omar M. – Journal of Advanced Academics, 2020
Developing students' strengths while teaching the content required by national and state standards in science, technology, engineering, and mathematics (STEM) is challenging for classroom teachers. In the Cultivating Diverse Talent in STEM (CDTIS) project, the assessment results found in strength-based reports gave teachers the tools needed to…
Descriptors: STEM Education, Learner Engagement, Problem Solving, Ability
Hawkins, Amy J.; Stark, Louisa A. – CBE - Life Sciences Education, 2016
Climate change is at the forefront of our cultural conversation about science, influencing everything from presidential debates to Leonardo DiCaprio's 2016 Oscar acceptance speech. The topic is becoming increasingly socially and scientifically relevant but is no closer to being resolved. Most high school students take a life science course but…
Descriptors: Climate, Science Instruction, Biological Sciences, Misconceptions
Garimella, Umadevi I.; Robertson, Belinda M. – Mathematics Teaching in the Middle School, 2015
A solid understanding of the structure and function of cells can help establish the foundation for learning advanced concepts in the biological sciences. The concept of the cell is introduced in middle school life science courses and is continued at the undergraduate level in college (NRC 2012; Reece et al. 2014). Cells are introduced to students…
Descriptors: Biological Sciences, Cytology, Mathematical Models, Scientific Concepts
Grooms, Jonathon; Enderle, Patrick J.; Hutner, Todd; Murphy, Ashley; Sampson, Victor – NSTA Press, 2016
Are you interested in using argument-driven inquiry for middle school lab instruction but just are not sure how to do it? "Argument-Driven Inquiry in Physical Science" will provide you with both the information and instructional materials you need to start using this method right away. The book is a one-stop source of expertise, advice,…
Descriptors: Biological Sciences, Science Instruction, Persuasive Discourse, Inquiry
Romesburg, H. Charles – American Biology Teacher, 2014
This article explains four kinds of inquiry exercises, different in purpose, for teaching advanced-level high school and college students the hypothetico-deductive (H-D) method. The first uses a picture of a river system to convey the H-D method's logic. The second has teams of students use the H-D method: their teacher poses a hypothesis…
Descriptors: Logical Thinking, Abstract Reasoning, Inquiry, Hypothesis Testing
Child, Paula – School Science Review, 2013
In the UK, at key stage 4, students aged 14-15 studying GCSE Core Science or Unit 1 of the GCSE Biology course are required to be able to describe the process of genetic engineering to produce bacteria that can produce insulin. The simple interactive introduction described in this article allows students to consider the problem, devise a model and…
Descriptors: Secondary School Science, Secondary School Students, Student Projects, Student Research
National Assessment Governing Board, 2015
This is an abridged version of the "Science Framework for the 2015 National Assessment of Educational Progress." The National Assessment of Educational Progress (NAEP) and its reports are a key measure in informing the nation on how well the goal of scientific literacy for all students is being met. The framework reflects the nature and…
Descriptors: National Competency Tests, Scientific Literacy, Elementary Secondary Education, Student Evaluation
O'Dell, Gary; Gonzalez-Espada, Wilson – Science Teacher, 2011
Students learn science best with activities that mirror the way scientists work. This article describes how geologists investigate groundwater flow systems in areas of karst topography--geologic formations shaped by dissolving bedrock--and provides a way for students to replicate this research. Students also use electric current to model water…
Descriptors: Water, Topography, Geology, Investigations
National Assessment Governing Board, 2014
The National Assessment of Educational Progress (NAEP) and its reports are a key measure in informing the nation on how well the goal of scientific literacy for all students is being met. The "Science Framework for the 2015 National Assessment of Educational Progress" sets forth the design of the NAEP Science Assessment. This document is…
Descriptors: National Competency Tests, Scientific Literacy, Elementary Secondary Education, Student Evaluation
Carnevale, Anthony P.; Smith, Nicole; Melton, Michelle – Georgetown University Center on Education and the Workforce, 2011
The science, technology, engineering, and mathematics (STEM) state-level analysis provides policymakers, educators, state government officials, and others with details on the projections of STEM jobs through 2018. This report delivers a state-by-state snapshot of the demand for STEM jobs, including: (1) The number of forecast net new and…
Descriptors: Demand Occupations, Technical Occupations, Mathematics, Professional Occupations
Wefer, Stephen H.; Anderson, O. Roger – Journal of Science Teacher Education, 2008
Bioinformatics, merging biological data with computer science, is increasingly incorporated into school curricula at all levels. This case study of 10 secondary school students highlights student individual differences (especially the way they processed information and integrated procedural and analytical thought) and summarizes a variety of…
Descriptors: Curriculum Design, Student Attitudes, Units of Study, Computer Science
Leege, Lissa M.; Schriver, Martha; Chassereau, Karen D. – Science Teacher, 2008
The "Under the Mistletoe" project was developed to capitalize on student curiosity about the American Christmas Mistletoe plant and draw learners into an engaging, inquiry-based exercise that incorporates numerous life science standards and collaborative research. By collecting data on host and nonhost tree size, location, and number of mistletoe…
Descriptors: Inquiry, Science Instruction, Plants (Botany), Scientific Research
Ray, Andrew M.; Beardsley, Paul M. – Science Activities: Classroom Projects and Curriculum Ideas, 2008
Even though photosynthesis is an obligatory part of the science curriculum, research has shown that students often have a poor understanding of it. The authors advocate that classroom coverage of the topic of photosynthesis should include not only its biochemical properties but also the role of photosynthesis or photosynthetic organisms in matter…
Descriptors: Teaching Styles, Environmental Education, Hypothesis Testing, Plants (Botany)
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