Innovative Teaching Methods in Introductory College Mathematics

Innovative Teaching Methods in Introductory College Mathematics PDF Author: Dr Thomas Sherman
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Innovative Teaching Methods in Introductory College Mathematics

Innovative Teaching Methods in Introductory College Mathematics PDF Author: Dr Thomas Sherman
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description


Innovative Teaching Methods in introductory college mathematics

Innovative Teaching Methods in introductory college mathematics PDF Author: T. L. Sherman
Publisher:
ISBN:
Category :
Languages : en
Pages : 154

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Innovative Teaching Methods in Introductory College Mathematics

Innovative Teaching Methods in Introductory College Mathematics PDF Author:
Publisher:
ISBN:
Category : Mathematics
Languages : en
Pages : 180

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Innovative Teaching Strategies for Mathematics Mastery

Innovative Teaching Strategies for Mathematics Mastery PDF Author: Nigel Doherty
Publisher: Independently Published
ISBN:
Category :
Languages : en
Pages : 0

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Book Description
'Innovative Teaching Strategies for Mathematics Mastery' by Nigel Doherty is a blueprint for modern mathematics teaching that will revolutionize your approach and outcomes. This Special Report is an infusion of innovative, tried and tested strategies that engage students in the adventurous world of numbers and equations. The book invites you to understand the challenges in teaching mathematics, and guides you through the power of innovative teaching strategies. It shows you how to shift from the traditional memorization technique to fostering a deeper understanding in your students. You will discover the advantages of visual learning, using digital tools and incorporating project-based learning to demonstrate practical applications of mathematics. The book also explores collaborative teaching methods and transforms the way we think of assessments. A special focus has been placed on strategies to cater to diverse learning capabilities. Nigel has penned this report with a fervent desire to facilitate continual growth in mathematics mastery. With no reliance on official titles or academic jargon, his approach is refreshingly straightforward yet profoundly effective. Suitable for education professionals, tutors, parents, or anyone who engages in the teaching or learning of mathematics, this report is your ticket to a transformative experience. Embark on this exciting journey with Nigel as he reveals strategies to make math engaging, attainable, and downright fun! Dive in, and unlock your potential to inspire a love for numbers like never before!

The New Art and Science of Teaching Mathematics

The New Art and Science of Teaching Mathematics PDF Author: Nathan D. Lang
Publisher: Solution Tree
ISBN: 9781945349652
Category : Education
Languages : en
Pages : 0

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Book Description
"In The New Art and Science of Teaching Mathematics, authors Nathan D. Lang-Raad and Robert J. Marzano describe, in detail, how the New Art and Science of Teaching model should be used in the mathematics classroom. Recognizing that the New Art system was originally created as a general model of instruction, the authors adapt the model to the instruction of mathematics in order to address how instruction changes in a particular subject area. Thus, the authors explain each of the ten design areas and the forty-three elements of instruction within those design areas originally laid out in Robert Marzano's The New Art and Science of Teaching, as well as how they should be addressed in the mathematics classroom. In addition to explanation of the design areas, the authors also provide numerous strategies and methods for implementation that mathematics instructors will find invaluable in their own use of the New Art model in the classroom. In this book, readers will find a detailed and well-researched guide to the implementation of the New Art model of instruction that will allow them to pursue implementation of improved student outcomes"--

Educating Teachers of Science, Mathematics, and Technology

Educating Teachers of Science, Mathematics, and Technology PDF Author: National Research Council
Publisher: National Academies Press
ISBN: 0309171989
Category : Education
Languages : en
Pages : 232

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Book Description
Each new headline about American students' poor performance in math and science leads to new calls for reform in teaching. Education Teachers of Science, Mathematics, and Technology puts the whole picture together by synthesizing what we know about the quality of math and science teaching, drawing conclusions about why teacher preparation needs reform, and then outlining recommendations for accomplishing the most important goals before us. As a framework for addressing the task, the book advocates partnerships among school districts, colleges, and universities, with contributions from scientists, mathematicians, teacher educators, and teachers. It then looks carefully at the status of the education reform movement and explores the motives for raising the bar for how well teachers teach and how well students learn. Also examined are important issues in teacher professionalism: what teachers should be taught about their subjects, the utility of in-service education, the challenge of program funding, and the merits of credentialing. Professional Development Schools are reviewed and vignettes presented that describe exemplary teacher development practices.

Effective Instruction for STEM Disciplines

Effective Instruction for STEM Disciplines PDF Author: Edward J. Mastascusa
Publisher: John Wiley & Sons
ISBN: 1118025946
Category : Education
Languages : en
Pages : 288

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Book Description
Praise for Effective Instruction for STEM Disciplines "The world of today's learners is a multimode, information-intensive universe of interactive bursts and virtual exchanges, yet our teaching methods retain the outdated characteristics of last generation's study-and-drill approach. New pedagogical methods, detailed and justified in this groundbreaking work, are essential to prepare students to confront the concerns of the future. The book challenges our traditional assumptions and informs the science, technology, engineering, and mathematics (STEM) community of the latest research on how the brain learns and retains information, how enhanced student engagement with subject material and its context is essential to deep learning, and how to use this knowledge to structure STEM education approaches that work."—David V. Kerns, Jr., Franklin and Mary Olin Distinguished Professor of Electrical and Computer Engineering, and founding provost, Olin College "Every STEM faculty member should have this book. It provides a handy introduction to the 'why and how' of engaging students in the learning process."—David Voltmer, professor emeritus, Rose-Hulman Institute of Technology, and American Society for Engineering Education Fellow "The poor quality of math and science education and the shortage of well-qualified graduates are acknowledged almost daily in the U.S. press. Here the authors provide much-needed insights for educators seeking to improve the quality of STEM education as well as to better prepare students to solve the problems they will confront in our increasingly technology-driven world."—Keith Buffinton, interim dean of engineering, Bucknell University

Building Thinking Classrooms in Mathematics, Grades K-12

Building Thinking Classrooms in Mathematics, Grades K-12 PDF Author: Peter Liljedahl
Publisher: Corwin Press
ISBN: 1544374844
Category : Education
Languages : en
Pages : 454

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Book Description
A thinking student is an engaged student Teachers often find it difficult to implement lessons that help students go beyond rote memorization and repetitive calculations. In fact, institutional norms and habits that permeate all classrooms can actually be enabling "non-thinking" student behavior. Sparked by observing teachers struggle to implement rich mathematics tasks to engage students in deep thinking, Peter Liljedahl has translated his 15 years of research into this practical guide on how to move toward a thinking classroom. Building Thinking Classrooms in Mathematics, Grades K–12 helps teachers implement 14 optimal practices for thinking that create an ideal setting for deep mathematics learning to occur. This guide Provides the what, why, and how of each practice and answers teachers’ most frequently asked questions Includes firsthand accounts of how these practices foster thinking through teacher and student interviews and student work samples Offers a plethora of macro moves, micro moves, and rich tasks to get started Organizes the 14 practices into four toolkits that can be implemented in order and built on throughout the year When combined, these unique research-based practices create the optimal conditions for learner-centered, student-owned deep mathematical thinking and learning, and have the power to transform mathematics classrooms like never before.

国立国会図書館所蔵科学技術関係欧文会議錄目錄

国立国会図書館所蔵科学技術関係欧文会議錄目錄 PDF Author: 国立国会図書館 (Japan)
Publisher:
ISBN:
Category : Science
Languages : en
Pages : 672

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Improving How Universities Teach Science

Improving How Universities Teach Science PDF Author: Carl Wieman
Publisher: Harvard University Press
ISBN: 0674978927
Category : Science
Languages : en
Pages : 179

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Book Description
Too many universities remain wedded to outmoded ways of teaching science in spite of extensive research showing that there are much more effective methods. Too few departments ask whether what happens in their lecture halls is effective at helping students to learn and how they can encourage their faculty to teach better. But real change is possible, and Carl Wieman shows us how it can be brought about. Improving How Universities Teach Science draws on Wieman’s unparalleled experience to provide a blueprint for educators seeking sustainable improvements in science teaching. Wieman created the Science Education Initiative (SEI), a program implemented across thirteen science departments at the universities of Colorado and British Columbia, to support the widespread adoption of the best research-based approaches to science teaching. The program’s data show that in the most successful departments 90 percent of faculty adopted better methods. Wieman identifies what factors helped and hindered the adoption of good teaching methods. He also gives detailed, effective, and tested strategies for departments and institutions to measure and improve the quality of their teaching while limiting the demands on faculty time. Among all of the commentary addressing shortcomings in higher education, Wieman’s lessons on improving teaching and learning stand out. His analysis and solutions are not limited to just one lecture hall or course but deal with changing entire departments and universities. For those who want to improve how universities teach science to the next generation, Wieman’s work is a critical first step.