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Krajcik, Joseph; Merritt, Joi – Science Scope, 2012
The Next Generation Science Standards (NGSS)--now in development--will be based on "A Framework for K-12 Science Education" released by the National Research Council last summer. The "Framework" identifies seven scientific and engineering practices that should be used in science classrooms. These practices reflect the multiple ways in which…
Descriptors: Evidence, Engineering, Classrooms, Elementary Secondary Education
Gooding, Julia; Metz, Bill – Science Scope, 2011
Having students design their own methods regarding data collection during a lab may help them formulate appropriate investigative procedures. The authors use a modified gallery walk to develop science skills. (Contains 3 figures.)
Descriptors: Science Process Skills, Science Activities, Scientific Methodology, Science Education
Fiero, Alan – Science Scope, 2012
"Science for all" is not just a theme that befits the democratic society. It also exemplifies the best methodology for teaching science to children at the middle school level. For many years, teachers have grappled with trying to determine what type of grouping would most benefit their students. This article presents a strategy that highlights why…
Descriptors: Heterogeneous Grouping, Middle Schools, Science Course Improvement Projects, Science Curriculum
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
Gregerson, Jessica – Science Scope, 2011
In this inquiry-based project, student-generated questions became the basis for student-directed individual and group projects that provided practice with problem solving, critical thinking, and research skills while digging deeper into the Earth science curriculum. The author used her students' high-level questions to provide relevance,…
Descriptors: Learner Engagement, Student Motivation, Earth Science, Research Skills
Paysnick, Rebecca – Science Scope, 2010
If we want our students to become capable practitioners of scientific inquiry, we should not stop at providing opportunities to do inquiry. We need to be intentional about assessing and teaching the competencies necessary for inquiry. However, the ability to conduct scientific inquiry can be difficult to assess. Therefore, the author created The…
Descriptors: Science Education, Science Curriculum, Inquiry, Science Instruction
Sampson, Victor; Grooms, Jonathon – Science Scope, 2009
This article describes an instructional model that science teachers can use to promote and support student engagement in scientific argumentation. This model is called the evaluate-alternatives instructional model and it is grounded in current research on argumentation in science education (e.g., Berland and Reiser 2009; McNeill and Krajcik 2006;…
Descriptors: Persuasive Discourse, Science Teachers, Science Curriculum, Teaching Models
Poon, Chew-Leng; Tan, Doris; Tan, Aik-Ling – Science Scope, 2009
Inquiry practices often involve more student-centered activities where students interact more intensively with materials and with other students during investigations. In addition to monitoring the learning taking place, teachers in an inquiry classroom have to manage more movements of materials and equipment and the social dynamics among…
Descriptors: Classroom Techniques, Teaching Methods, Inquiry, Active Learning

Colburn, Alan – Science Scope, 2000
Defines inquiry and inquiry-based instruction. Indicates the importance of inquiry in science education. (YDS)
Descriptors: Classroom Techniques, Elementary Education, Inquiry, Science Curriculum
Kemp, Andrew – Science Scope, 2005
Everything moves. Even apparently stationary objects such as houses, roads, or mountains are moving because they sit on a spinning planet orbiting the Sun. Not surprisingly, the concepts of motion and the forces that affect moving objects are an integral part of the middle school science curriculum. However, middle school students are often taught…
Descriptors: Motion, Science Curriculum, Middle School Students, Secondary School Science

Vogt, Karen – Science Scope, 1997
Presents a unit on motion that allows students to apply what they learn from doing hands-on, minds-on activities, a key component of the National Science Education Standards. Also includes examples of the assessment instrument. (DDR)
Descriptors: Elementary Secondary Education, General Science, Hands on Science, Inquiry

Pyle, Eric J.; Matthews, Robert W.; Matthews, Jan; Koballa, Thomas R., Jr.; Flage, Lynda – Science Scope, 1998
Presents an activity that focuses on insects and the choices they make in response to sensory input. Involves students and teachers in inquiry-oriented investigations and presents details of preparation, a discussion of the teacher's role, and a materials list. (DDR)
Descriptors: Biology, Elementary Secondary Education, Entomology, Hands on Science

Grambo, Gregory – Science Scope, 1998
Presents activities on persistence of vision that involve students in a hands-on approach to the study of early methods of creating motion pictures. Students construct flip books, a Zoetrope, and an early movie machine. (DDR)
Descriptors: Elementary Secondary Education, Films, Hands on Science, Inquiry

Farenga, Stephen J.; Joyce, Beverly A.; Dowling, Thomas W. – Science Scope, 2002
Defines adaptive inquiry and argues for employing this method which allows lessons to be shaped in response to student needs. Illustrates this idea by detailing an activity in which teams of students build rockets. (DDR)
Descriptors: Discovery Learning, Educational Strategies, Elementary Secondary Education, Grouping (Instructional Purposes)

Cummo, Evelyn; Matthews, Catherine E. – Science Scope, 2002
Presents an activity designed to provide students with opportunities to practice drawing atomic models and discover the logical pairings of whole families on the periodic table. Follows the format of a television game show. (DDR)
Descriptors: Atomic Structure, Atomic Theory, Chemistry, Educational Strategies
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