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Creating Engineering Design Challenges: - Paperback, by Meyer Helen - Good

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eBay item number:404556163670
Last updated on Jun 17, 2025 08:27:58 MYTView all revisionsView all revisions

Item specifics

Condition
Good: A book that has been read but is in good condition. Very minimal damage to the cover including ...
Book Title
Creating Engineering Design Challenges: Success Stories From Teac
ISBN
9781681406985

About this product

Product Identifiers

Publisher
National Science Teacher's Association
ISBN-10
1681406985
ISBN-13
9781681406985
eBay Product ID (ePID)
20038637853

Product Key Features

Number of Pages
310 Pages
Publication Name
Creating Engineering Design Challenges : Success Stories from Teachers
Language
English
Subject
Leadership, Secondary, Industrial Design / General, Teaching Methods & Materials / Science & Technology
Publication Year
2019
Type
Textbook
Subject Area
Technology & Engineering, Education
Author
Anant Kukreti, Debora Liberi
Format
Trade Paperback

Dimensions

Item Height
0.5 in
Item Weight
0.4 Oz
Item Length
11 in
Item Width
8.5 in

Additional Product Features

Intended Audience
Scholarly & Professional
LCCN
2019-034932
Dewey Edition
23
Illustrated
Yes
Dewey Decimal
620.00420712
Synopsis
If you've ever wished for advice you can trust on how to make science and math more relevant to your middle or high school students, Creating Engineering Design Challenges is the book for you. At its core are 13 units grounded in challenge-based learning and the engineering design process. You can be sure the units are classroom-ready because they were contributed by teachers who developed, used, and revised them during the Cincinnati Engineering Enhanced Math and Science (CEEMS) program, a project funded by the National Science Foundation. Detailed and practical, the book is divided into three sections: 1. The rationale for making engineering an effective part of math and science instruction. 2. Thirteen engineering-related units, including the teacher-contributors' detailed accounts, lesson plans, and handouts. Content areas include biology, chemistry, physical science, Earth science, and environmental science. Topics range from developing a recipe for cement to implementing geocaching to calculating accurate aim with slingshots and water balloons. 3. Guidance on how to develop, support, and grow your engineering practice. This section offers useful templates and frameworks for you as well as professional development guidance for your school. The contributors' goal is to help you benefit from their hard-won experience. They write, " During our time with the CEEMS project, we learned a great deal from our mistakes and our successes, and we felt it would be important to share what we learned with the hope that you can build on your own success." Working from their advice, you can develop a more student-centered classroom culture and nurture learners who are engaged in real-life engineering challenges., If you've ever wished for advice you can trust on how to make science and math more relevant to your middle or high school students, Creating Engineering Design Challenges is the book for you. At its core are 13 units grounded in challenge-based learning and the engineering design process., If you've ever wished for advice you can trust on how to make science and math more relevant to your middle or high school students, Creating Engineering Design Challenges is the book for you. At its core are 13 units grounded in challenge-based learning and the engineering design process. You can be sure the units are classroom-ready because they were contributed by teachers who developed, used, and revised them during the Cincinnati Engineering Enhanced Math and Science (CEEMS) program, a project funded by the National Science Foundation. Detailed and practical, the book is divided into three sections: 1. The rationale for making engineering an effective part of math and science instruction. 2. Thirteen engineering-related units, including the teacher-contributors' detailed accounts, lesson plans, and handouts. Content areas include biology, chemistry, physical science, Earth science, and environmental science. Topics range from developing a recipe for cement to implementing geocaching to calculating accurate aim with slingshots and water balloons. 3. Guidance on how to develop, support, and grow your engineering practice. This section offers useful templates and frameworks for you as well as professional development guidance for your school. The contributors' goal is to help you benefit from their hard-won experience. They write, "During our time with the CEEMS project, we learned a great deal from our mistakes and our successes, and we felt it would be important to share what we learned with the hope that you can build on your own success." Working from their advice, you can develop a more student-centered classroom culture and nurture learners who are engaged in real-life engineering challenges.
LC Classification Number
TA174.M456 2019

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