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Engineering in Pre-College Settings

Engineering in Pre-College Settings PDF Author: Şenay Purzer
Publisher: Purdue University Press
ISBN: 1557536910
Category : Education
Languages : en
Pages : 457

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Book Description
In science, technology, engineering, and mathematics (STEM) education in pre-college, engineering is not the silent “e” anymore. There is an accelerated interest in teaching engineering in all grade levels. Structured engineering programs are emerging in schools as well as in out-of-school settings. Over the last ten years, the number of states in the US including engineering in their K–12 standards has tripled, and this trend will continue to grow with the adoption of the Next Generation Science Standards. The interest in pre-college engineering education stems from three different motivations. Designed to be a source of background and inspiration for researchers and practitioners alike, this volume includes contributions on policy, synthesis studies, and research studies to catalyze and inform current efforts to improve pre-college engineering education. The book explores teacher learning and practices, as well as how student learning occurs in both formal settings, such as classrooms, and informal settings, such as homes and museums. This volume also includes chapters on assessing design and creativity.

Engineering in Pre-College Settings

Engineering in Pre-College Settings PDF Author: Şenay Purzer
Publisher: Purdue University Press
ISBN: 1557536910
Category : Education
Languages : en
Pages : 457

View

Book Description
In science, technology, engineering, and mathematics (STEM) education in pre-college, engineering is not the silent “e” anymore. There is an accelerated interest in teaching engineering in all grade levels. Structured engineering programs are emerging in schools as well as in out-of-school settings. Over the last ten years, the number of states in the US including engineering in their K–12 standards has tripled, and this trend will continue to grow with the adoption of the Next Generation Science Standards. The interest in pre-college engineering education stems from three different motivations. Designed to be a source of background and inspiration for researchers and practitioners alike, this volume includes contributions on policy, synthesis studies, and research studies to catalyze and inform current efforts to improve pre-college engineering education. The book explores teacher learning and practices, as well as how student learning occurs in both formal settings, such as classrooms, and informal settings, such as homes and museums. This volume also includes chapters on assessing design and creativity.

Pre-university Engineering Education

Pre-university Engineering Education PDF Author: Marc J. de Vries
Publisher: Springer
ISBN: 9463006214
Category : Education
Languages : en
Pages : 260

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Book Description
Pre-university engineering education has become the topic of increasing interest in technology education circles. It can provide content for the E in STEM (Science, Technology, Engineering and Mathematics) education, which is in the interest of technology educators at different educational levels as it builds the bridge between them and the science and mathematics educators. In this book goals for pre-university engineering education are explored as well as existing practices from a variety of countries. The coming years will show if pre-university engineering education will catch on. The trend towards STEM integrated education that today can be seen in many countries will certainly create a further need and stimulus for that to happen. Hopefully this book can contribute to such a development of both formal and informal K-12 engineering education. Not only for preparing the next generation of engineers, but also for the technological literacy of future citizens.

Early Engineering Learning

Early Engineering Learning PDF Author: Lyn English
Publisher: Springer
ISBN: 9811086214
Category : Education
Languages : en
Pages : 287

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Book Description
This book addresses engineering learning in early childhood, spanning ages 3 to 8 years. It explores why engineering experiences are important in young children's overall development and how engineering is a core component of early STEM learning, including how engineering education links and supports children's existing experiences in science, mathematics, and design and technology, both before school and in the early school years. Promoting STEM education across the school years is a key goal of many nations, with the realization that building STEM skills required by societies takes time and needs to begin as early as possible. Despite calls from national and international organisations, the inclusion of engineering-based learning within elementary and primary school programs remains limited in many countries. Engineering experiences for young children in the pre-school or early school years has received almost no attention, even though young children can be considered natural engineers. This book addresses this void by exposing what we know about engineering for young learners, including their capabilities for solving engineering-based problems and the (few) existing programs that are capitalising on their potential.

Building Capacity for Teaching Engineering in K-12 Education

Building Capacity for Teaching Engineering in K-12 Education PDF Author: National Academies of Sciences, Engineering, and Medicine
Publisher: National Academies Press
ISBN: 0309499453
Category : Education
Languages : en
Pages : 260

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Book Description
Engineering education is emerging as an important component of US K-12 education. Across the country, students in classrooms and after- and out-of-school programs are participating in hands-on, problem-focused learning activities using the engineering design process. These experiences can be engaging; support learning in other areas, such as science and mathematics; and provide a window into the important role of engineering in society. As the landscape of K-12 engineering education continues to grow and evolve, educators, administrators, and policy makers should consider the capacity of the US education system to meet current and anticipated needs for K-12 teachers of engineering. Building Capacity for Teaching Engineering in K-12 Education reviews existing curricula and programs as well as related research to understand current and anticipated future needs for engineering-literate K-12 educators in the United States and determine how these needs might be addressed. Key topics in this report include the preparation of K-12 engineering educators, professional pathways for K-12 engineering educators, and the role of higher education in preparing engineering educators. This report proposes steps that stakeholders - including professional development providers, postsecondary preservice education programs, postsecondary engineering and engineering technology programs, formal and informal educator credentialing organizations, and the education and learning sciences research communities - might take to increase the number, skill level, and confidence of K-12 teachers of engineering in the United States.

Investigating the Impact of Informal Engineering Education on Middle School Girls' Engineering Identity Development

Investigating the Impact of Informal Engineering Education on Middle School Girls' Engineering Identity Development PDF Author: Abigail M. Clark
Publisher:
ISBN:
Category : Engineering
Languages : en
Pages :

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Book Description
As the world grows increasingly more reliant on technology, there have been repeated calls for more, and more diverse, engineers, along with other science, technology, engineering, and math (STEM) professionals. From these calls has risen an increased focus on engineering in pre-college education, both in formal and informal learning settings. Along with this increased focus came a corresponding increase in research regarding pre-college engineering education. However, informal engineering experiences are under-studied when compared to formal engineering experiences. This manuscript-style dissertation seeks to provide insight into the literature available about pre-college engineering education and the impact and implications for practice of one informal engineering experience, a Girl Scout engineering badge, on middle schoolers’ engineering identity development. To begin my work, I conducted a systematic literature review. Following established systematic literature review methods, I gathered and synthesized a small body of literature regarding the impact of informal engineering experiences on pre-college students’ engineering identity development. The synthesis revealed that informal experiences appear to have a positive impact on participant’s engineering identity, however, little is known about how the impact may vary by program or participant characteristics. Using these results, directions and recommendations for future research was proposed. For the informal engineering experience, two Girl Scout troops, one which met completely online and one which met in a hybrid setting, completed a Girl Scout engineering badge. Fifteen participants completed pre- and post-interviews, and observations of participants were conducted during the badge activities. In addition, participants completed the Draw-an-Engineer Test before the pre-interview and a modified version of the Draw-an-Engineer Test before the post-interview. Data analysis indicated that there was some growth in both engineering identity and engineering knowledge following the engineering badge experience. However, the impact on engineering identity varied between the two settings (hybrid and online), with participants in the online troop slightly more likely to indicate engineering identity growth. Finally, based on participant outcomes and my experiences with transitioning the in-person badge material into a virtual environment, I generated four concrete recommendations for practitioners who wish to conduct virtual informal engineering experiences. Those recommendations are: 1.) Craft your learning environment to reduce participant barriers, 2.) Be flexible and adapt activities as needed, 3.) Cultivate an environment where struggle and failure are okay, and 4.) Leverage your network and build relationships with the organizations you wish to partner with. Additionally, future work to further develop these recommendations was proposed. These three manuscripts come together to provide insight into engineering identity development through an under-studied area of pre-college engineering education: informal experiences. Through my work, I identified gaps in the literature and opportunities for future work, provided insight into the impact that a Girl Scout engineering badge had on participants, and developed recommendations for practice. Particularly, my work informs how the engineering education field may be able to support engineering identity development in girls, which may ultimately influence women’s participation in the engineering field.

The National Engineer

The National Engineer PDF Author:
Publisher:
ISBN:
Category : Steam engineering
Languages : en
Pages :

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Book Description
Vols. 34- contain official N.A.P.E. directory.

Organizational Responses to Diversity

Organizational Responses to Diversity PDF Author: David J. Siegel
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Final Report : the 1991 National Survey of Women in Engineering Programs

Final Report : the 1991 National Survey of Women in Engineering Programs PDF Author: Emily M. Wadsworth
Publisher:
ISBN:
Category : Engineering
Languages : en
Pages : 35

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Financial Aid for Hispanic Americans, 2006-2008

Financial Aid for Hispanic Americans, 2006-2008 PDF Author: Gail Ann Schlachter
Publisher:
ISBN: 9781588411358
Category : Reference
Languages : en
Pages : 496

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Mechanical Engineering

Mechanical Engineering PDF Author:
Publisher:
ISBN:
Category : Mechanical engineering
Languages : en
Pages :

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