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Waterman, Sheryn Spencer – Eye on Education, 2010
For middle and high school teachers of social studies and English, this book is filled with examples of instructional strategies that address students' readiness levels, interests, and learning preferences. It shows teachers how to formatively assess their students by addressing differentiated learning targets. Included are detailed examples of…
Descriptors: Educational Strategies, Student Evaluation, Formative Evaluation, Secondary School Teachers
Hodges, Thomas E. – Mathematics Teacher, 2007
This article describes an alternate way to utilize a circular model to represent thirds by incorporating areas of circular segments, trigonometric functions, and geometric transformations. This method is appropriate for students studying geometry and trigonometry at the high shool level. This task provides valuable learning experiences that…
Descriptors: Geometric Concepts, Trigonometry, Mathematics Activities, Mathematical Models
Clarke, Suzanne – Educational Research Service, 2009
Project-Based Learning (PBL) connects standards-based content to real-world scenarios through the use of projects to improve student achievement. By engaging students in authentic problems that do not have a predetermined solution, students learn both subject matter and critical 21st-century skills. This "Focus On" addresses what…
Descriptors: Student Projects, Problem Based Learning, Active Learning, Student Motivation
Peer reviewedDas, Nibhriti; Sinha, Subrata – Biochemical Education, 2000
Describes an experiment on the use of problem-based learning. (Author/YDS)
Descriptors: Biochemistry, Higher Education, Laboratory Experiments, Medical Education
Peer reviewedHarris, Kimberly; Marcus, Robin; McLaren, Karen; Fey, James – School Science and Mathematics, 2001
Discusses the implications of the National Council of Teachers of Mathematics (NCTM) standards for mathematics curricula and instruction and provides three examples of lessons from problem-based curricula for various grades. (Author/MM)
Descriptors: Elementary Secondary Education, Mathematics Instruction, National Standards, Problem Based Learning
Peer reviewedMiller, Andrew P.; Schwartz, Peter L.; Loten, Ernest G. – Medical Teacher, 2000
Discusses a new systems integrated course format that offers an attractive alternative to teachers at traditional medical schools that wish to obtain many of the benefits of problem-based learning without adopting a full problem-based learning curriculum. (Author/CCM)
Descriptors: Course Descriptions, Higher Education, Medical Education, Problem Based Learning
Peer reviewedTobias, Shoshana – Journal of College Science Teaching, 2000
Presents a scenario about a planet that uses problem based learning to teach evolution and ecology to freshman biology students. (YDS)
Descriptors: Biology, Ecology, Evolution, Geology
Peer reviewedWhite, H. B. – Biochemistry and Molecular Biology Education, 2000
Suggests that if students are to study enzyme kinetics they should do more than just gloss over the surface. Adequate time should be given for the student to thoroughly study the mechanisms to development a complete understanding. (MVL)
Descriptors: Biochemistry, Course Content, Enzymes, Higher Education
Peer reviewedTanner, C. Kenneth; And Others – Clearing House, 1995
Describes a problem-based learning strategy which helps train principals for an increasingly demanding job. Conceptualizes problem-based learning; provides a rationale for this strategy; and uses a real example from a course in problem-based learning taught at the University of Georgia. (RS)
Descriptors: Administrator Education, Postsecondary Education, Principals, Problem Based Learning
Peer reviewedErickson, Dianne K. – Mathematics Teacher, 1999
Describes preparation for instruction using a problem-based approach as part of a teaching-strategy repertoire. Describes classes that use the approach successfully, and identifies pitfalls. Suggests ways that mathematics teachers can get assistance in successfully implementing a problem-based teaching approach. Presents research results that…
Descriptors: Mathematics Instruction, Problem Based Learning, Secondary Education, Secondary School Mathematics
Peer reviewedOzsvath, David L. – Journal of College Science Teaching, 2000
Presents a case study to teach about the relationship between sinkhole development and groundwater levels in Orlando, Florida. Discusses the relationship between groundwater levels and sinkhole formation in a karst terrane. Includes discussion questions. (YDS)
Descriptors: Earth Science, Environment, Geology, Groundwater
Peer reviewedLovitt, Charles – Australian Primary Mathematics Classroom, 2000
Discusses reasons why problem solving has failed. Offers an alternative approach--the use of investigations in mathematics instruction. Lists the characteristics of an idealized classroom. (ASK)
Descriptors: Elementary Education, Investigations, Mathematics Instruction, Problem Based Learning
Fulton, Penny – Clearing, 2001
Describes a project in which students write about their experiences and cover all the aspects of book publishing during their visits to a selected outdoor site. (YDS)
Descriptors: High Schools, Outdoor Education, Problem Based Learning, Publications
Peer reviewedRompelman, Otto – European Journal of Engineering Education, 2000
Explains the evolution of the objectives of engineering education from knowledge to skills which is referred to as a 'paradigm shift'. Reviews the relationship between the demands and the educational objectives, and discusses the implications for assessment and the relationship between educational methods and assessment. (Author/YDS)
Descriptors: Educational Change, Engineering Education, Evaluation, Higher Education
Peer reviewedClark, Lisa J. – Science and Children, 2002
Introduces a project for elementary school students in which students build a robot by following instructions and then write a computer program to run their robot by using LabView graphical development software. Uses ROBOLAB curriculum which is designed for grade levels K-12. (YDS)
Descriptors: Educational Technology, Elementary Education, Hands on Science, Problem Based Learning

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