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Liu, Pei Pei; McKinney, David; Lee, Alexandra A.; Schmidt, Jennifer A.; Marchand, Gwen C.; Linnenbrink-Garcia, Lisa – Cognition and Instruction, 2023
Mastery goal structures, which communicate value for developing deeper understanding, are an important classroom support for student motivation and engagement, especially in the context of science learning aligned with the Next Generation Science Standards. Prior research has identified key dimensions of goal structures, but a more nuanced…
Descriptors: Mastery Learning, Grade 7, Self Efficacy, Goal Orientation
Gintaras K. Duda; Mary Ann Danielson – International Journal for Students as Partners, 2018
The Collaborative Curricular (re)Construction, or C3, was an initiative at Creighton University that paired faculty (academics) and students in a process of backward course design, in two cohorts, in the 2013/14 and 2014/15 academic years. Faculty/student pairs worked over the span of a year to redesign a course within their discipline; courses…
Descriptors: Curriculum Development, Partnerships in Education, College Students, College Faculty
Brooks, Jacqueline Grennon – Teachers College Press, 2011
Strong evidence from recent brain research shows that the intentional teaching of science is crucial in early childhood. "Big Science for Growing Minds" describes a groundbreaking curriculum that invites readers to rethink science education through a set of unifying concepts or "big ideas." Using an integrated learning approach, the author shows…
Descriptors: Educational Strategies, Constructivism (Learning), Class Activities, Learning Activities
Tolentino, Lisa; Birchfield, David; Megowan-Romanowicz, Colleen; Johnson-Glenberg, Mina C.; Kelliher, Aisling; Martinez, Christopher – Journal of Science Education and Technology, 2009
As emerging technologies become increasingly inexpensive and robust, there is an exciting opportunity to move beyond general purpose computing platforms to realize a new generation of K-12 technology-based learning environments. Mixed-reality technologies integrate real world components with interactive digital media to offer new potential to…
Descriptors: Elementary Secondary Education, Chemistry, Learning Laboratories, Statistical Analysis

Marble, Richard A. – Physics Teacher, 1980
A physics teacher describes the learning environment of an independent day school in Oklahoma. Emphasis is directed towards the science and mathematics curriculum and the teacher's responsibilities in teaching and advising the young people. (SA)
Descriptors: Chemistry, Course Descriptions, Educational Environment, Mathematics Education

Ege, Seyhan N.; And Others – Journal of Chemical Education, 1997
Describes an undergraduate chemistry curriculum, designed to capitalize on the strengths of mechanistic organic chemistry, that enables students to grasp the powerful conceptual unity that allows professional chemists to understand unfamiliar results according to a few well-defined principles. Discusses the philosophy, curriculum, and the nature…
Descriptors: Chemistry, Constructivism (Learning), Educational Change, Educational Environment
Rosier, Malcolm J.; Long, Michael G. – 1991
This report sets out results for Australia arising from its participation in the Second International Science Study (SISS). The focus is on Year 12 students, including those studying science and those not currently studying science. Most of the results for the science students are presented separately for those specializing in biology, chemistry,…
Descriptors: Biology, Chemistry, Educational Environment, Foreign Countries

Menis, Joseph – Research in Science and Technological Education, 1991
Information on the content of the intended science curriculum, what science was actually taught by the teachers, and how that science was taught is presented. Student achievement and attitudes were assessed using tests and questionnaires. Data were obtained from teachers regarding whether the content had been taught to the students (n=657) who…
Descriptors: Biology, Chemistry, Course Content, Earth Science