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Max, Jeffrey; Glazerman, Steven – National Center for Education Evaluation and Regional Assistance, 2014
This document represents the technical appendix intended to accompany "Do Disadvantaged Students Get Less Effective Teaching? Key Findings from Recent Institute of Education Sciences Studies. NCEE Evaluation Brief. NCEE 2014-4010." Contents include: (1) Summary of Related, Non-Peer-Reviewed Studies; (2) Methods for Comparing Findings…
Descriptors: Disadvantaged Youth, At Risk Students, Teacher Competencies, Poverty
Hudson, Siobhan; Kadan, Sarah; Lavin, Karen; Vasquez, Tylita – Online Submission, 2010
The students of the targeted fourth, fifth, sixth, and ninth grade classes exhibited difficulties with number sense that interfered with understanding and recall of basic math facts. Evidence for the existences of the problem included teacher observation, test scores, and student and teacher surveys. The research participants included 42 children…
Descriptors: Intervention, Grades (Scholastic), Action Research, Observation
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Meyen, Edward L.; Greer, Diana L. – Journal of Special Education Technology, 2010
This article discusses the theoretical framework, instructional design, formative assessment results, capacity for national distribution, and generalization of the Blending Assessment with Instruction Program (BAIP) model to other content areas such as science. The BAIP, developed and validated at the University of Kansas, employs technology to…
Descriptors: STEM Education, Assistive Technology, Disabilities, Mathematics Instruction
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Thompson, Carla J. – Research in Education, 2009
For almost two decades proponents of educational reform have advocated the use of standards-based education in maths and science classrooms for improving teacher practices, increasing student learning, and raising the quality of maths and science instruction. This study empirically examined the impact of specific standards-based teacher…
Descriptors: Science Achievement, Program Effectiveness, Multiple Regression Analysis, Educational Change
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What Works Clearinghouse, 2009
The I CAN Learn[R] Education System is an interactive, self-paced, mastery-based software system that includes the I CAN Learn[R] Fundamentals of Math (5th-6th grade math) curriculum, the I CAN Learn[R] Pre-Algebra curriculum, and the I CAN Learn[R] Algebra curriculum. College algebra credit is also available to students in participating schools…
Descriptors: Computer Software Evaluation, Man Machine Systems, Algebra, Mathematics Curriculum