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Morrel-Samuels, Susan; Zimmerman, Marc A.; Reischl, Thomas M. – Reclaiming Children and Youth, 2013
Youth are in the cross-fire of gun violence, and the highest rate in the nation is in Flint, Michigan. This article highlights six innovative strategies that prepare youth to solve problems at home and in their communities in peaceful ways. The Michigan Youth Violence Prevention Center (MI-YVPC) works with community groups to strengthen…
Descriptors: Youth Programs, Violence, Prevention, Problem Solving
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Wedlich, Richard C.; Libera, Agata E.; Pires, Amanda; Therrien, Matthew T. – Journal of Chemical Education, 2013
The Good Laboratory Practice (GLP) regulations were put into place in 1978. They establish a standard of practice to ensure that results from the nonclinical laboratory study reported to the U.S. Food and Drug Administration (FDA) are valid and that the study report accurately reflects the conduct of the study. While the GLP regulations promulgate…
Descriptors: Laboratory Procedures, Best Practices, Federal Regulation, Quality Assurance
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Richey, J. Elizabeth; Nokes-Malach, Timothy J. – Learning and Instruction, 2013
A central goal of the learning sciences is to discover principles that determine the optimal amount of instructional assistance to support robust learning (Koedinger & Aleven, 2007). We examined learning outcomes from providing and withholding stepwise instructional explanations as students studied worked examples and solved physics problems. We…
Descriptors: Demonstrations (Educational), Teaching Methods, Problem Solving, Learning Processes
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Hayes, David; Widanski, Bozena – Journal of Chemical Education, 2013
A laboratory experiment is described that introduces students to "real-world" hazardous waste management issues chemists face. The students are required to define an analytical problem, choose a laboratory analysis method, investigate cost factors, consider quality-control issues, interpret the meaning of results, and provide management…
Descriptors: Science Instruction, College Science, Secondary School Science, Undergraduate Study
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McGuire, Linda – PRIMUS, 2013
This article will describe a project designed for use in a liberal arts mathematics course that satisfies an institutional quantitative reasoning requirement. Students, working in groups of four, are responsible for introducing and explaining new material to the rest of their class. Their "reporting" of mathematical information is…
Descriptors: Student Projects, Liberal Arts, College Mathematics, Mathematics Instruction
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Stott, Debbie; Graven, Mellony – Pythagoras, 2013
In this article we describe the design process for an after-school Grade 3 mathematics club, based on our experiences running a pilot club in a 2011 research and development project. Working from a sociocultural perspective, we show the progression from an initial multifaceted design to a much simpler, more learner-centred design that speaks…
Descriptors: Correlation, Theory Practice Relationship, Mathematics Instruction, Clubs
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Stump, Sheryl L. – Teaching Children Mathematics, 2013
This is a story about teachers engaging in mathematics teacher leadership. The focus is on the teachers' learning, and the purpose is to illuminate the process. The setting is a semester-long graduate class called Teacher Leadership in Mathematics Education, and the characters are elementary and middle school teachers. Those in this group…
Descriptors: Mathematics Teachers, Teacher Leadership, Mathematics Instruction, Elementary School Teachers
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Kastberg, Signe E.; Frye, R. Scott – Teaching Children Mathematics, 2013
To challenge students' reasoning and to align with a physical fitness unit that students were studying, teachers and authors, Scott Frye and Signe Kastberg adapted a ratio comparison problem from Susan Lamon, "Ratio and Proportion: Connecting Content and Children's Thinking," (1994) to include athletes and doctors who share…
Descriptors: Mathematics Instruction, Mathematical Logic, Grade 6, Physical Fitness
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Hefty, Lukas J. – Teaching Children Mathematics, 2015
The National Council of Teachers of Mathematics' (NCTM's) "Principles and Standards for School Mathematics" (2000) outlines fi ve Process Standards that are essential for developing deep understanding of mathematics: (1) Problem Solving; (2) Reasoning and Proof; (3) Communication; (4) Connections; and (5) Representation. The Common Core…
Descriptors: Mathematics Instruction, Problem Solving, Mathematical Logic, Validity
Mueller, Dan – Wilder Research, 2015
STEM Pathways aims to increase youths' long-term interest, learning, and achievement in STEM through a deliberate and interconnected system of STEM learning opportunities. In fall 2014 and spring 2015, a survey was administered to fourth- and fifth-grade students at the six STEM Pathways schools in Minneapolis Public Schools (MPS). Most of the…
Descriptors: STEM Education, Grade 4, Grade 5, Elementary School Students
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Wendell, Kristen B. – Science and Children, 2012
Structural engineering can be a rich and exciting context for exploring and learning about the properties of materials. Even a structure as commonplace as a house requires careful consideration of important properties such as strength, stability, and insulation. As a former engineer and current elementary science teacher educator, the author has…
Descriptors: Engineering, Science Teachers, Elementary School Science, Grade 5
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Myers, Perla L.; Pelak, Colleen N. – Teaching Children Mathematics, 2012
As partners in a professional development project, the authors jumped at the opportunity to use a real-life problem to engage elementary and middle school teachers in a one-day exploration of the concept of area. "Length times width"--a common response to the question, "What is area?"--is a rote formulaic expression that applies only to certain…
Descriptors: Professional Development, Problem Solving, Misconceptions, Middle School Teachers
Treffinger, Donald J.; Schoonover, Patricia F.; Selby, Edwin C. – Prufrock Press Inc, 2012
Today, more than ever before, we must all be able to think creatively, manage change, and solve complex, open-ended problems. Education today is different in its structure and practice than it was in any previous generation, not just because of the impact of technology and the Internet, but also because, across the lifespan, every person studies,…
Descriptors: Innovation, Thinking Skills, Labor Force Development, Creativity
Didion, Catherine Jay; Guenther, Rita S.; Gunderson, Victoria – National Academies Press, 2012
Scientists, engineers, and medical professionals play a vital role in building the 21st- century science and technology enterprises that will create solutions and jobs critical to solving the large, complex, and interdisciplinary problems faced by society: problems in energy, sustainability, the environment, water, food, disease, and healthcare.…
Descriptors: Leadership, Engineering, Entrepreneurship, Graduate Students
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Galbraith, Peter – Australian Senior Mathematics Journal, 2012
This paper is presented in two parts. Through an example the first part takes up the issue of applying mathematics to situations that form part of the life context of students--the priority expressed in three curriculum statements presented. Then, noting the particular point in time--development of a National Curriculum for Mathematics--the second…
Descriptors: Foreign Countries, Team Sports, Problem Solving, National Curriculum
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