Active Assessment For Active Science
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Author | : George E. Hein |
Publisher | : Heinemann Educational Books |
Total Pages | : 180 |
Release | : 1994 |
Genre | : Education |
ISBN | : |
Active Assessment for Active Science meets the needs of teachers faced with the task of assessing hands-on science.
Author | : Stuart Naylor |
Publisher | : David Fulton Pub |
Total Pages | : 152 |
Release | : 2004 |
Genre | : Education |
ISBN | : 9781843121459 |
Describes assessment techniques and ways to integrate them into science lessons.
Author | : David I. Hanauer |
Publisher | : Springer Science & Business Media |
Total Pages | : 144 |
Release | : 2009-04-21 |
Genre | : Science |
ISBN | : 038789649X |
The term scienti?c inquiry as manifest in different educational settings covers a wide range of diverse activities. The differences in types of scienti?c inquiry can be organized along a continuum according to the degree of teacher control and intellectual sophistication involved in each type of inquiry. Types of scienti?c inquiry can also be de?ned according to whether they produce cultural knowledge or personal knowledge. Authentic scienti?c inquiry is de?ned according to ?ve characteristics: devel- ment of personal and cultural knowledge; contextualized scienti?c knowledge; the progression toward high-order problem solving; social interaction for s- enti?c goals; and scienti?c inquiry as a multi-stage and multi-representational process. The de?nition of scienti?c inquiry that forms the basis for the development of an assessment program consists of a two-part analytical frame: the de?nition of knowledge types relevant to scienti?c inquiry and the de?nition of an organi- tional frame for these knowledge types. Four types of knowledge are signi?cant for the de?nition of a speci?c s- enti?c inquiry program: cognitive knowledge, physical knowledge, represen- tional knowledge, and presentational knowledge. All four of these knowledge types are considered signi?cant. These four types of knowledge are organized in a framework that consists of two intersecting axes: the axis of knowledge types and the axis of stages of a s- ci?c scienti?c inquiry. This framework describes scienti?c inquiry as multi-stage process that involves the development of a series of in-lab outcomes (represen- tions) over an extended period of time.
Author | : Stuart Naylor |
Publisher | : Routledge |
Total Pages | : 163 |
Release | : 2013-08-21 |
Genre | : Education |
ISBN | : 1136803750 |
Using a highly creative approach, this book explains in detail how assessment, thinking and learning can be integrated in science lessons.
Author | : Stuart Naylor |
Publisher | : Routledge |
Total Pages | : 217 |
Release | : 2013-08-21 |
Genre | : Education |
ISBN | : 1136803742 |
Everybody seems to be talking about assessment for learning. This book shows how to do it. Using a highly creative approach it explains in detail how assessment, thinking and learning can be integrated in science lessons. More than 30 different assessment techniques are described, with each one illustrated for two different age ranges.Concise teachers' notes for each technique explain:what the approach ishow you use it for assessmenthow you can manage it in the classroomhow it helps with learning.Electronic versions of the activities are provided on the accompanying downloadable resources.
Author | : Jack Hassard |
Publisher | : Good Year Books |
Total Pages | : 276 |
Release | : 2011-03 |
Genre | : Education |
ISBN | : 1596473843 |
"Aligns to Common Core state standards"--Cover.
Author | : |
Publisher | : |
Total Pages | : 128 |
Release | : 1992 |
Genre | : |
ISBN | : |
Author | : Meryem Nur Aydede Yalçin |
Publisher | : Tudás Alapítvány |
Total Pages | : 194 |
Release | : 2020-01-20 |
Genre | : Juvenile Nonfiction |
ISBN | : |
In modern education approach, development in the modern science and technology is directly related with the getting a success on the science education is accepted. So, all societies should be able to develop, understand and use the technology, and each person in the society should be literate of the science in today’s world. Therefore, learners of educational institutions / organizations should be grown having specific features like problem solving skills, critical thinking, creativity, independence, self confidence abilities. As a result having these skills and abilities depend on to have a learning process which have developed perfectly. In science education, instead of teacher-centered methodologies, learner centered ones should be included. This idea refers to active learning. The idea is to bring together the international group to share experiences and work together in the field of effective use of active learning applications in science education arose Life Long Learning programme Leonardo da Vinci Project. During the project, the contact pearson of each institution, Meryem Nur AYDEDE YALÇIN from Nigde University (Turkey), Elena Anghel from Training cons. 2005 (Romania), Giuseppe DOTI from Associazione Antares (Italy), Vida DRĄSUTĖ, VšĮ eMundus (Lithuania), Pedro José LEIVA PADILLA, Leiva Formacion (Spain), Christos NICOLAIDES, Dekaplus Business Services LTD (Cyprus), János PALOTÁS, Foundation of Knowledge (Hungary), Oana Cristina TURTOI, Repere Association Bacau Branch (Romania), Danutė VIZMANAITĖ, Trakų švietimo centras (Lithuania) discussed the lots of situations in effectiveness of active learning in different European Regions. This book brings some new views to active learning approach with the selection of the outputs of this project. You can find different usage of active learning applications of seven different countries (Turkey, Romania, Spain, Italy, Hungary, Lithuania and Cyprus) in this book.
Author | : Richard J. Rezba |
Publisher | : Kendall Hunt |
Total Pages | : 322 |
Release | : 2003 |
Genre | : Education |
ISBN | : 9780787277796 |
Author | : National Science Resources Center of the National Academy of Sciences and the Smithsonian Institution |
Publisher | : National Academies Press |
Total Pages | : 313 |
Release | : 1996-04-28 |
Genre | : Education |
ISBN | : 0309052939 |
What activities might a teacher use to help children explore the life cycle of butterflies? What does a science teacher need to conduct a "leaf safari" for students? Where can children safely enjoy hands-on experience with life in an estuary? Selecting resources to teach elementary school science can be confusing and difficult, but few decisions have greater impact on the effectiveness of science teaching. Educators will find a wealth of information and expert guidance to meet this need in Resources for Teaching Elementary School Science. A completely revised edition of the best-selling resource guide Science for Children: Resources for Teachers, this new book is an annotated guide to hands-on, inquiry-centered curriculum materials and sources of help in teaching science from kindergarten through sixth grade. (Companion volumes for middle and high school are planned.) The guide annotates about 350 curriculum packages, describing the activities involved and what students learn. Each annotation lists recommended grade levels, accompanying materials and kits or suggested equipment, and ordering information. These 400 entries were reviewed by both educators and scientists to ensure that they are accurate and current and offer students the opportunity to: Ask questions and find their own answers. Experiment productively. Develop patience, persistence, and confidence in their own ability to solve real problems. The entries in the curriculum section are grouped by scientific areaâ€"Life Science, Earth Science, Physical Science, and Multidisciplinary and Applied Scienceâ€"and by typeâ€"core materials, supplementary materials, and science activity books. Additionally, a section of references for teachers provides annotated listings of books about science and teaching, directories and guides to science trade books, and magazines that will help teachers enhance their students' science education. Resources for Teaching Elementary School Science also lists by region and state about 600 science centers, museums, and zoos where teachers can take students for interactive science experiences. Annotations highlight almost 300 facilities that make significant efforts to help teachers. Another section describes more than 100 organizations from which teachers can obtain more resources. And a section on publishers and suppliers give names and addresses of sources for materials. The guide will be invaluable to teachers, principals, administrators, teacher trainers, science curriculum specialists, and advocates of hands-on science teaching, and it will be of interest to parent-teacher organizations and parents.