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geometer's sketchpad tutorial: The Geometer's Sketchpad , 1995 |
geometer's sketchpad tutorial: Active Learning in the Digital Age Classroom Ann Heide, Dale Henderson, 2001 This exciting new book shows you how to harness the amazing power of technology to enable and enhance active learning. Whether you are a technophobe or experienced tech user, you'll discover firsthand how information and communication technology (ICT) can help you empower learners, improve learning, and prepare students for the future.Whenever we as teachers undertake change in curriculum delivery or teaching methods, it is not a decision we make lightly. Heide and Henderson ensure that your transition is as smooth as possible and that every student will benefit. Their book addresses the many practical issues that accompany the use of ICT and provides answers to the most frequently asked questions, including: How do I get started?What equipment do I need?How can I arrange my classroom to facilitate student use?How can ICT and educational technologies make my classroom more student centered?How do I set up and control workstations?How can I individualize my program?What about assessment and evaluation?What is my role in this environment?Because the authors believe that effective classroom practices derive from carefully researched theories, they provide practical strategies based on both research and experience. These suggestions are meant to be motivators and starting points that you can adapt to your specific needs. |
geometer's sketchpad tutorial: Resources in Education , 2000-10 |
geometer's sketchpad tutorial: Mathematics for Elementary Teachers Gary L. Musser, Blake E. Peterson, William F. Burger, 2013-09-16 Mathematics for Elementary Teachers, 10th Edition establishes a solid math foundation for future teachers. Thoroughly revised with a clean, engaging design, the new 10th Edition of Musser, Peterson, and Burgers best-selling textbook focuses on one primary goal: helping students develop a deep understanding of mathematical concepts so they can teach with knowledge and confidence. The components in this complete learning program--from the textbook, to the e-Manipulative activities, to the Childrens Videos, to the online problem-solving tools, resource-rich website and Enhanced WileyPLUS--work in harmony to help achieve this goal. WileyPLUS sold separately from text. |
geometer's sketchpad tutorial: Web-Teaching David W. Brooks, Diane E. Nolan, Susan M. Gallagher, 2006-04-11 This book delves into a review of current research, active learning strategies, Web courseware, metacognition, strategies for Web discussions, promoting student self-regulation, building interactive Web pages, basic HTML coding, managing Web sites, using databases, automated testing, and security and legal issues. It helps readers pick and choose what aspects of the Web to employ to achieve the greatest student learning gains. |
geometer's sketchpad tutorial: Michael Allen's 2008 e-Learning Annual Michael W. Allen, 2008-02-13 The field of e-learning has experienced dramatic, and at times chaotic, growth. Over time, as technology has improved and its advantages have become clear, e-learning has gained widespread acceptance. It is now the fastest growing sector of corporate learning. Michael Allen’s 2008 e-Learning Annual presents a wide range of perspectives from some of the earliest and most renowned leaders in field. This important resource will help both educators and trainers create, purchase, and apply quality e-learning programs more effectively. It provides a wealth of applicable history and guidance for all persons contemplating e-learning, from the student to the organizational leader. It frankly and objectively presents lessons learned and the critical steps to success. Michael Allen’s 2008 e-Learning Annual is part of the Pfeiffer Annual series, first published in 1972. |
geometer's sketchpad tutorial: Teaching Secondary Mathematics Douglas K. Brumbaugh, David Rock, 2006 Grounded in research and theory, this text for secondary mathematics methods courses provides useful models of how concepts typically found in a secondary mathematics curriculum can be delivered, so that students develop a positive attitude about learning and using mathematics in their daily lives. |
geometer's sketchpad tutorial: Differentiation for the Adolescent Learner Glenda Beamon Crawford, 2008-05-22 There is something for everyone here. A valuable resource for experienced teachers starting on the road to curriculum integration or switching to teaching adolescents. Preservice teachers would also benefit, because the book emphasizes the nature of the learner. —Mark A. Springer, Teacher Radnor Middle School, Wayne, PA Activate learning with practical techniques that put brain research and technology into practice! The changes and complexities of the adolescent mind bring unique challenges as well as opportunities to the classroom. This valuable resource for student-centered teaching provides keys to curriculum design, instruction, and assessment within the context of a developmentally appropriate, differentiated approach. Translating the latest brain research into practical classroom strategies, the author focuses on the adolescent learner and outlines brain-compatible instructional strategies applicable to all students, including English Language Learners, gifted populations, and others with special needs. Readers will encounter a six-point differentiated model based on adolescents′ need for personal connection, appropriate intellectual challenge, emotional engagement, guided social interaction, metacognitive development, and a supportive learning environment. The guide also equips teachers with ready-to-use tips, tools, and resources, including: Ways to capitalize on technology to enhance differentiated instruction Brain-friendly strategies grounded in current neuroscience research and universal design for learning (UDL) Straightforward explanations on how changes in adolescent brain structure impact learning Techniques to create and manage a classroom environment aligned with adolescents′ specific developmental needs Focusing on learners′ intellectual, social, and emotional development, Differentiation for the Adolescent Learner offers a proven plan for teachers to create meaningful learning experiences that inspire students to take control of their own learning. |
geometer's sketchpad tutorial: LEARNING AND TEACHING MANGAL, S. K., MANGAL, SHUBHRA, 2019-07-01 The book thoroughly explains various theories and concepts applied in the field of learning and teaching. It orderly describes effective techniques and methods by using descriptive analytical approach and methodology. It covers in the intelligible form a wide spectrum of information inclusive of that required for the compulsory paper “Learning and Teaching” incorporated in the curriculum of B.Ed. courses of various Indian universities in accordance with the guidelines of National Council for Teacher Education (NCTE). The book discusses the nature and importance of learning theories propagated by behaviourists, cognitivists and humanists. It also focuses on pedagogy, andragogy, models of teaching, tasks and process of learning, strategies of teaching, learning styles, concepts of e-learning and m-learning in the applications of ICT. KEY FEATURES : • Full coverage of syllabi of all the Indian universities • Diligently arranged chapters for the sequential learning • Comprehensive explanation with illustrative examples and case studies • Explicit figures, tables and diagrams for easy interpretation • Summary at each chapter-end for quick review The book is primarily intended to B.Ed. students. Besides, the text is also of immense value to the students of B. EL Ed., M.Ed., MA (Ed.), M.Phil., and teachers, training professionals and counsellors. |
geometer's sketchpad tutorial: Computer Education for Teachers Vicki F. Sharp, 2002 Designed to meet the needs of the student unfamiliar with the use of the computer in the classroom, this text is written for undergraduate and graduate education students who want an up-to-date, readable, practical, and concise introduction to computers for teachers. Included in the text are a wealth of classroom lessons that integrate technology into the classroom. |
geometer's sketchpad tutorial: Everyday Mathematics for Parents The University of Chicago School Mathematics Project, 2017-07-10 The Everyday Mathematics (EM) program was developed by the University of Chicago School Mathematics Project (UCSMP) and is now used in more than 185,000 classrooms by almost three million students. Its research-based learning delivers the kinds of results that all school districts aspire to. Yet despite that tremendous success, EMoften leaves parents perplexed. Learning is accomplished not through rote memorization, but by actually engaging in real-life math tasks. The curriculum isn’t linear, but rather spirals back and forth, weaving concepts in and out of lessons that build overall understanding and long-term retention. It’s no wonder that many parents have difficulty navigating this innovative mathematical and pedagogic terrain. Now help is here. Inspired by UCSMP’s firsthand experiences with parents and teachers, Everyday Mathematics for Parents will equip parents with an understanding of EM and enable them to help their children with homework—the heart of the great parental adventure of ensuring that children become mathematically proficient. Featuring accessible explanations of the research-based philosophy and design of the program, and insights into the strengths of EM, this little book provides the big-picture information that parents need. Clear descriptions of how and why this approach is different are paired with illustrative tables that underscore the unique attributes of EM. Detailed guidance for assisting students with homework includes explanations of the key EM concepts that underlie each assignment. Resources for helping students practice math more at home also provide an understanding of the long-term utility of EM. Easy to use, yet jam-packed with knowledge and helpful tips, Everyday Mathematics for Parents will become a pocket mentor to parents and teachers new to EM who are ready to step up and help children succeed. With this book in hand, you’ll finally understand that while this may not be the way that you learned math, it’s actually much better. |
geometer's sketchpad tutorial: Handbook of Research on TPACK in the Digital Age Niess, Margaret L., Gillow-Wiles, Henry, Angeli, Charoula, 2018-11-02 This title is an IGI Global Core Reference for 2019 as it was co-edited by a leading education scholar, this title provides the latest research on the enhancement of Technological Pedagogical Content Knowledge (TPACK). Building upon her previous studies conducted through multiple Mathematics and Science Partnership (MSP) grants from the U.S. Department of Education, this comprehensive publication brings together over 45 educational experts, from the U.S., South America, and Europe, to provide online learning, digital technologies, and pedagogical strategies. The Handbook of Research on TPACK in the Digital Age provides innovative insights into teacher preparation for the effective integration of digital technologies into the classroom. The content within this publication represents the work of online learning, digital technologies, and pedagogical strategies. It is designed for teachers, educational designers, instructional technology faculty, administrators, academicians, and education graduate students, and covers topics centered on classroom technology integration and teacher knowledge and support. |
geometer's sketchpad tutorial: Technology in Mathematics Education: Contemporary Issues Dragana Martinovic, Douglas McDougall, Zerkeriya Karadag, 2012 |
geometer's sketchpad tutorial: Creating Life-Long Learners Todd Stanley, 2015-07-30 Wanted for the global workforce: thinkers (and those who can teach them) Where K-12 instruction once centered on content and memorization, today’s educators want, most of all, to teach their students to think critically and perceptively. What better way than with project-based learning (PBL)? Author Todd Stanley provides a teacher-friendly, step-by-step approach to implementing PBL, showing readers how to: Use project and classroom management skills to create a positive, productive learning environment Develop curriculum around ten different project types Link projects with today’s standards Teach students how to effectively collaborate and bring out the best in each other |
geometer's sketchpad tutorial: Using Information Technology in Mathematics Education James Tooke, Norma Henderson, 2024-11-15 Computers have changed the ways that mathematics are taught and learned. Is your institution taking advantage of what today's technology offers?With contributions from researchers and practitioners alike, Using Information Technology in Mathematics Education explores the impact of the computer on the curriculum, the teaching and learning of mathematics, and the professional development of teachers, both pre-service and in-service.As editor James Tooke states: “The connection between mathematics and the computer is obvious. Elementary notions of mathematics gave rise to the computer; advanced notions gave it a more powerful state. As the computer advanced, it expanded mathematics, allowing the creation of further branches of the field; for instance, fractal geometry had no reality until the advent of high-speed computers.”In its look at the relationship between mathematics, the computer, and mathematics education, Using Information Technology in Mathematics Education: addresses the computer as a vehicle for teaching calculus at Texas A&M includes reports from several programs that have utilized the computer when teaching mathematics at lower levels of content than calculus such as intermediate algebra and geometry examines the computer's role in student learning probability discusses the use of computers in the professional development of teachers explores ways to use computers to reduce mathematics anxietyUsing Information Technology in Mathematics Education examines the history and impact of computers in mathematics and mathematics education--from the early, crude computer-assisted instruction efforts through LOGO software for elementary schools, through MAPLE for the university, to the Web-based calculus courses now being offered by outstanding universities. Use it to facilitate learning and teacher growth in your institution! |
geometer's sketchpad tutorial: Development of Computer Instructional Software for Mathematics Problem Solving Approaches in the Subject of Mathematics Dr. Rajashekhar Shirvalkar, |
geometer's sketchpad tutorial: Geometry Turned On James King, Doris Schattschneider, 1997-10-30 Articles about the uses of active, exploratory geometry carried out with interactive computer software. |
geometer's sketchpad tutorial: Teaching for Understanding with Technology Martha Stone Wiske, Lisa Breit, 2013-12-23 Teaching for Understanding with Technology shows how teachers can maximize the potential of new technologies to advance student learning and achievement. It uses the popular Teaching for Understanding framework that guides learners to think, analyze, solve problems, and make meaning of what they've learned. The book offers advice on tapping into a rich array of new technologies such as web information, online curricular information, and professional networks to research teaching topics, set learning goals, create innovative lesson plans, assess student understanding, and develop communities of learners. |
geometer's sketchpad tutorial: The Digital Pencil Jing Lei, Paul F. Conway, Yong Zhao, 2008 This book takes a serious historical and international look at the digital pencil movement to equip every student with a computing device with wireless connection. Using an ecological perspective as an overarching framework, and drawing on their own studies and available literature that illuminate the issues related to one-to-one computing, the authors present well-reasoned discussions about a set of complex and critical issue facing policy makers, educators, students, parents, and the general public. The Digital Pencil addresses four key questions: Is the digital pencil a good idea? The authors analyze the costs and benefits of one-to-one computing programs through consideration of multiple indicators and examine the evaluation reports of various projects within their analytical framework to present a comprehensive summary of outcomes of one-to-one computing projects. What happens when each child has a networked computer? The authors analyze existing data with the goal of gaining insights and making suggestions and recommendations for policy makers, teachers, and parents. What should schools purchase or lease - is there an ideal device? These authors examine the relative advantages and disadvantages of different devices and implementation schemes. How do we know if one-to-one computing is making a difference? The authors review the evaluation plans of the various projects and propose a framework for comprehensive evaluation and research on one-to-one computing. This book is intended for researchers, school administrators, educational technology professionals, and policy makers in the U.S. and around the world, and as a supplemental text for advanced courses in education, technology, and technological innovation. |
geometer's sketchpad tutorial: Adaptive Hypermedia and Adaptive Web-Based Systems Vincent Wade, Helen Ashman, Barry Smyth, 2006-06-16 Here are the refereed proceedings of the 4th International Conference on Adaptive Hypermedia and Adaptive Web-Based Systems, AH 2006, held in Dublin, Ireland, June 2006. The book presents 22 revised full papers and 19 revised short papers together with abstracts of 3 keynotes, 12 poster papers, and 14 doctoral consortium posters. Topics include pioneering theories, techniques, and innovative technologies to provide dynamic personalization, adaptation, and contextualization of hypermedia resources and services. |
geometer's sketchpad tutorial: The Geometer's Sketchpad Dan Bennett, Nicholas Jackiw, 1995 |
geometer's sketchpad tutorial: Integrating Educational Technology Into Teaching M. D. Roblyer, 2006 Side A of this DVD contains the navigation structure for accessing the contents on this DVD and side B contains video files for the clips from the classroom section. |
geometer's sketchpad tutorial: Didactics of Mathematics as a Scientific Discipline Rolf Biehler, Roland W. Scholz, Rudolf Sträßer, Bernard Winkelmann, 2006-04-11 Didactics of Mathematics as a Scientific Discipline describes the state of the art in a new branch of science. Starting from a general perspective on the didactics of mathematics, the 30 original contributions to the book, drawn from 10 different countries, go on to identify certain subdisciplines and suggest an overall structure or `topology' of the field. The book is divided into eight sections: (1) Preparing Mathematics for Students; (2) Teacher Education and Research on Teaching; (3) Interaction in the Classroom; (4) Technology and Mathematics Education; (5) Psychology of Mathematical Thinking; (6) Differential Didactics; (7) History and Epistemology of Mathematics and Mathematics Education; (8) Cultural Framing of Teaching and Learning Mathematics. Didactics of Mathematics as a Scientific Discipline is required reading for all researchers into the didactics of mathematics, and contains surveys and a variety of stimulating reflections which make it extremely useful for mathematics educators and teacher trainers interested in the theory of their practice. Future and practising teachers of mathematics will find much to interest them in relation to their daily work, especially as it relates to the teaching of different age groups and ability ranges. The book is also recommended to researchers in neighbouring disciplines, such as mathematics itself, general education, educational psychology and cognitive science. |
geometer's sketchpad tutorial: Culturally Specific Pedagogy in the Mathematics Classroom Jacqueline Leonard, 2017-10-03 Culturally Specific Pedagogy in the Mathematic Classroom offers a wide variety of conceptual and curricular resources for teachers interested in teaching mathematics in a way that challenges stratification based upon race, class, gender and other forms of oppression that students face in todays world. With the publication of this book, all teachers will have available to them instructional strategies in mathematics for meeting the academic needs of culturally diverse students. They will have an explanation of the linkage between culture and students mathematical cognition and problem solving. The ease in which Leonard brings the reader along, and the caring way she tells a story about making mathematics a fun and social justice experience makes for an exciting learning opportunity for all students and teachers. Carl A. Grant, University Wisconsin-Madison, United States, From the Foreword Mathematics educators are in a period of deep concern about our ability to educate all students in mathematics. Most students of color do not have the opportunities to fully learn mathematics. Nothing more important can be done for these students and their teachers than to publish this book addressing the miseducation of these students and offering a way to change what we are doing. Carol E. Malloy, University of North Carolina-Chapel Hill, United States This compelling text advocates the use of culturally specific pedagogy to enhance the mathematics instruction of diverse students. It accomplishes this by making clear the link between research and practice and offering lesson templates that teachers can use with ethnically and culturally diverse students and with females. Specifically, the text draws on sociocultural theory and research on culture and mathematics cognition to focus on three goals: using qualitative research to extend the literature on culturally based education to African American and Latina/o c |
geometer's sketchpad tutorial: CD-ROMs in Print , 2003 |
geometer's sketchpad tutorial: The Software Encyclopedia , 1988 |
geometer's sketchpad tutorial: Christian Home Educators' Curriculum Manual Cathy Duffy, 1997-11 |
geometer's sketchpad tutorial: Abstracts of Papers Presented to the American Mathematical Society American Mathematical Society, 2006 |
geometer's sketchpad tutorial: Those who Can, Teach Kevin Ryan, James Michael Cooper, 2004 This dynamic, reader-friendly text helps students make informed decisions about entering teacher education programs. The authors use multiple sources, including biographies and dialogues, to increase student interest and involvement with the material, and encourage students to regard becoming a teacher a positive challenge. |
geometer's sketchpad tutorial: Transforming Schools with Technology Andrew A. Zucker, 2008 In this timely and thoughtful book, Andrew Zucker argues that technology can and will play a central role in efforts to achieve crucial education goals, and that it will be an essential component of further improvement and transformation of schools. The book is marked not only by Zucker's cutting-edge sophistication about digital technologies, but also by his longstanding engagement with and commitment to K-12 education. It is destined to be recognized as the crucial volume on digital technology and education, and it will be essential reading for school leaders and teachers, policymakers, and those members of the general public--among them parents and engaged citizens--for whom the fate of education is a vital concern. |
geometer's sketchpad tutorial: The Australian Mathematics Teacher , 2001 |
geometer's sketchpad tutorial: Teaching Secondary School Mathematics Alfred S. Posamentier, Jay Stepelman, 1999 Resource for inservice and pre-service mathematics teachers. The text discusses methods of teaching the subject and provides a collection of enrichment units to enhance the curriculum. |
geometer's sketchpad tutorial: Handbook of Research on Digital Content, Mobile Learning, and Technology Integration Models in Teacher Education Keengwe, Jared, 2017-07-13 While many facets of our lives are rapidly becoming more digital, educational institutions are now faced with the task of finding new and innovative ways to incorporate technology into the classroom. Examining the latest trends in digital tools provides a more effective learning environment for future generations. The Handbook of Research on Digital Content, Mobile Learning, and Technology Integration Models in Teacher Education is a pivotal scholarly reference source that outlines the most efficient ways for educators to employ technology-enhanced lesson plans in their classroom. Featuring pertinent topics that include blended learning environments, student engagement, artificial intelligence, and learner-centered pedagogy, this is an ideal resource for educators, aspiring teachers, and researchers that are interested in discovering recent trends and techniques related to digital learning environments and technology-enhanced classrooms. |
geometer's sketchpad tutorial: Elementary School Mathematics John A. Van de Walle, 1994 Elementary School Mathematics: Teaching Developmentally, Second Edition, provides detailed, comprehensive coverage of the teaching of mathematics in grades K-8. Firmly grounded in the NCTM Standards, the text develops a constructivist/developmental approach to learning mathematics that focuses on the nature of mathematical concepts and the manner in which children construct mathematical ideas. It aims to help teachers reconceptualize mathematics as a problem-solving endeavor not as a mastery of rules and procedures. An accessible synthesis of viewpoints and current research, this highly praised text includes topics ranging from the development of basic fact mastery to the important development of number sense--All the while encouraging teachers to consider the construction of mathematics from the child's perspective. In-depth treatment of curriculum content teaching, combined with hundreds of teaching activities aimed at conceptual development, makes Elementary School Mathematics a practical teacher's resource as well as a college text. Elementary School Mathematics: Teaching Developmentally, Second Edition, features: greater emphasis on the NCTM Curriculum Standards and the Professional Teaching Standards as the leading forces in mathematics education; a new chapter on mathematics as a science of pattern and order; a completely rewritten chapter on alternative assessment; expanded and improved problem-solving examples; enhanced coverage of grades 7 and 8; even more black-line masters with directions for making other useful materials; and an Instructor's Manual with instructional suggestions, activities for group homework, practicum ideas, and essay questions. |
geometer's sketchpad tutorial: Intelligent Learning Environments: The Case of Geometry Jean-Marie Laborde, 2012-12-06 This book is a thoroughly revised result, updated to mid-1995, of the NATO Advanced Research Workshop on Intelligent Learning Environments: the case of geometry, held in Grenoble, France, November 13-16, 1989. The main aim of the workshop was to foster exchanges among researchers who were concerned with the design of intelligent learning environments for geometry. The problem of student modelling was chosen as a central theme of the workshop, insofar as geometry cannot be reduced to procedural knowledge and because the significance of its complexity makes it of interest for intelligent tutoring system (ITS) development. The workshop centred around the following themes: modelling the knowledge domain, modelling student knowledge, design ing didactic interaction, and learner control. This book contains revised versions of the papers presented at the workshop. All of the chapters that follow have been written by participants at the workshop. Each formed the basis for a scheduled presentation and discussion. Many are suggestive of research directions that will be carried out in the future. There are four main issues running through the papers presented in this book: • knowledge about geometry is not knowledge about the real world, and materialization of geometrical objects implies a reification of geometry which is amplified in the case of its implementation in a computer, since objects can be manipulated directly and relations are the results of actions (Laborde, Schumann). This aspect is well exemplified by research projects focusing on the design of geometric microworlds (Guin, Laborde). |
geometer's sketchpad tutorial: Hands on History Amy Shell-Gellasch, 2007 In an increasingly electronic society, these exercises are designed to help school and collegiate educators use historical devices of mathematics to balance the digital side of mathematics. |
geometer's sketchpad tutorial: MAA Notes , 1983 |
geometer's sketchpad tutorial: Multimedia for Learning Stephen M. Alessi, Stanley R. Trollip, 2001 Most chapters begin with Introduction and conclude with Conclusion, References and Bibliography, and Summary. Preface. I. GENERAL PRINCIPLES. Introduction. A Short History of Educational Computing. When to Use the Computer to Facilitate Learning. The Process of Instruction. Methodologies for Facilitating Learning. Two Foundations of Interactive Multimedia. Developing Interactive Multimedia. Learning Principles and Approaches. Behavioral Psychology Principles. Cognitive Psychology Principles. Constructivist Psychology Principles. The Constructivist - Objectivist Debate. General Features of Software for Learning. Learner Control of a Program. Presentation of Information. Providing Help. Ending a Program. II. METHODOLOGIES. Tutorials. Questions and Responses. Judgement of Responses. Feedback about Responses. Remediation. Organization and Sequence of Program Segments. Learner Control in Tutorials. Hypermedia. Structure of Hypermedia. Hypermedia Formats. The Hypermedia Database. Navigation and Orientation. Support for Learning and Learning Strategies. Drills. Basic Drill Procedure. The Introduction of a Drill. Item Characteristics. Item Selection and Queuing Procedures. Feedback. Item Grouping Procedures. Motivating the Learner. Data Storage and Program Termination. Advantages of Multimedia Drills. Simulations. Types of Simulations. Advantages of Simulations. Factors in Simulations. Simulation Design and Development. Educational Games. Examples of Educational Games. General Factors in Games. Factors in the Introduction of a Game. Factors in the Body of the Game. Factors in the Conclusion of a Game. Pitfalls Associated with Creating and Using Games. Tools and Open-Ended Learning Environments. Construction Sets. Electronic Performance Support Systems. Microworlds. Learning Tools. Expert System Shells. Modeling and Simulation Tools. Multimedia Construction Tools. Open-Ended Learning Environments. Tests. Computerized Test Construction. Computerized Test Administration. Factors in Tests. Other Testing Approaches in the Computer Environment. Security. Web-Based Learning. What Is the Web in Web-Based Learning? Uses of the Web for Learning. Factors in Web-Based Learning. Concerns with Web-Based Learning. Advantages of Web-Based Learning. The Future of Web-Based Learning. III. DESIGN & DEVELOPMENT. Overview of a Model for Design and Development. Standards. Ongoing Evaluation. Project Management. Phase 1. Planning. Phase 2. Design. Phase 3. Development. Establishing Expectations. The Evaluation Form. Planning. Define the Scope of the Content. Identity Characteristics of Learners and Other Users. Establish Constraints. Cost the Project. Produce a Planning Document. Produce a Style Manual. Determine and Collect Resources. Conduct Initial Brainstorming. Define the Look and Feel of the Project. Obtain Client Sign-Off. Design. The Purpose of Design. The Audiences for Design Documents. Develop Initial Content Ideas. Task and Concept Analyses. Preliminary Program Description. Detailing and Communicating the Design. Prototypes. Flowcharts. Storyboards. Scripts. The Importance of Ongoing Evaluation. Client Sign Off. Development. Project Management. Prepare the Text Components. Write the Program Code. Create the Graphics. Produce Video. Record the Audio. Assemble the Pieces. Prepare Support Materials. Alpha Testing. Making Revisions. Beta Testing. Final Revisions. Obtaining Client Sign-Off. Validating the Program. |
geometer's sketchpad tutorial: Framing Research on Technology and Student Learning in the Content Areas Ann D. Thompson, Lynn Bell, Lynne Schrum, 2008-11-01 This book is a result of collaboration between NTLS and SITTE. Framing Research is targeted at individuals or small teams of educational researchers who are interested in conducting high quality research addressing the effects of technology-enhanced instruction on student learning. The book summarizes and unpacks the methodologies of a variety of research studies, each situated in the context of school subject areas, such as science, mathematics, social studies, and English/language arts, as well as in the contexts of reading education, special education, and early childhood learning. Taken together, the analyses provide guidance on the design of future technology research grounded in student learning of K-12 curriculum. The conclusions also serve as a tool for teacher educators seeking to prepare teachers to integrate technology effectively in their instruction and to motivate reluctant teachers to overcome perceived inconveniences connected with technology use. |
geometer's sketchpad tutorial: The ERIC Review , 1991 Provides information on programs, research, publications, and services of ERIC, as well as critical and current education information. |
Geometry - GeoGebra
Interactive, free online geometry tool from GeoGebra: create triangles, circles, angles, transformations and much more!
GeoGebra - the world’s favorite, free math tools used by over 100 ...
Free digital tools for class activities, graphing, geometry, collaborative whiteboard and more
GeoGebra Calculators and Apps - Free Downloads
Explore our free calculators and learning apps for Math and Science, available for all devices and operating systems
geometer – Resources – GeoGebra
geometer – Resources. Resources Calculators. Join Lesson Sign in. Search. Resources. Number Sense. Understanding numbers, their relationships and numerical reasoning. Algebra. Using …
Geometría - GeoGebra
Constructor geométrico en línea, gratis e interactivo, de GeoGebra: crea triángulos, círculos, ángulos, transformaciones, ¡y mucho más!
A Geometer – Resources – GeoGebra
A Geometer – Resources. Resources Calculators. Join Lesson Sign in. Search. Resources. Number Sense. Understanding numbers, their relationships and numerical reasoning. Algebra. …
Modern Geometry of the Triangle – GeoGebra
This GeoGebraBook is inspired by the work of the same name by the late Triangle Geometer Steve Sigur Cevians and the Cevian Triangle Collinearities and Concurrencies: Sides of …
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Kite and Diagonals – GeoGebra
Author: PCMI Geometer. Topic: Kite. Drag points to see examples of various kite shapes, including non-convex kites. Then click the button to view the two diagonals in various …
Geometry - GeoGebra
Interactive, free online geometry tool from GeoGebra: create triangles, circles, angles, transformations and much more!
GeoGebra - the world’s favorite, free math tools used by over 100 ...
Free digital tools for class activities, graphing, geometry, collaborative whiteboard and more
GeoGebra Calculators and Apps - Free Downloads
Explore our free calculators and learning apps for Math and Science, available for all devices and operating systems
geometer – Resources – GeoGebra
geometer – Resources. Resources Calculators. Join Lesson Sign in. Search. Resources. Number Sense. Understanding numbers, their relationships and numerical reasoning. Algebra. Using …
Geometría - GeoGebra
Constructor geométrico en línea, gratis e interactivo, de GeoGebra: crea triángulos, círculos, ángulos, transformaciones, ¡y mucho más!
A Geometer – Resources – GeoGebra
A Geometer – Resources. Resources Calculators. Join Lesson Sign in. Search. Resources. Number Sense. Understanding numbers, their relationships and numerical reasoning. Algebra. …
Modern Geometry of the Triangle – GeoGebra
This GeoGebraBook is inspired by the work of the same name by the late Triangle Geometer Steve Sigur Cevians and the Cevian Triangle Collinearities and Concurrencies: Sides of …
Geometrie - GeoGebra
Interaktives, gratis online Geometrie Werkzeug von GeoGebra: erstelle Dreiecke, Kreise, Winkel, Transformationen und viel mehr!
Graphing Calculator - GeoGebra
Interactive, free online graphing calculator from GeoGebra: graph functions, plot data, drag sliders, and much more!
Kite and Diagonals – GeoGebra
Author: PCMI Geometer. Topic: Kite. Drag points to see examples of various kite shapes, including non-convex kites. Then click the button to view the two diagonals in various …