Cracking the code

Cracking the code
Author: UNESCO
Publsiher: UNESCO Publishing
Total Pages: 82
Release: 2017-09-04
Genre: Electronic Book
ISBN: 9789231002335

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This report aims to 'crack the code' by deciphering the factors that hinder and facilitate girls' and women's participation, achievement and continuation in science, technology, engineering and mathematics (STEM) education and, in particular, what the education sector can do to promote girls' and women's interest in and engagement with STEM education and ultimately STEM careers.

Inquiry Based Learning for Science Technology Engineering and Math STEM Programs

Inquiry Based Learning for Science  Technology  Engineering  and Math  STEM  Programs
Author: Anonim
Publsiher: Emerald Group Publishing
Total Pages: 360
Release: 2015-10-20
Genre: Education
ISBN: 9781784418496

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This volume covers the many issues and concepts of how IBL can be applied to STEM programs and serves as a conceptual and practical resource and guide for educators and offers practical examples of IBL in action and diverse strategies on how to implement IBL in different contexts.

Promising Practices in Undergraduate Science Technology Engineering and Mathematics Education

Promising Practices in Undergraduate Science  Technology  Engineering  and Mathematics Education
Author: National Research Council,Division of Behavioral and Social Sciences and Education,Board on Science Education,Planning Committee on Evidence on Selected Innovations in Undergraduate STEM Education
Publsiher: National Academies Press
Total Pages: 96
Release: 2011-04-19
Genre: Education
ISBN: 9780309212946

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Numerous teaching, learning, assessment, and institutional innovations in undergraduate science, technology, engineering, and mathematics (STEM) education have emerged in the past decade. Because virtually all of these innovations have been developed independently of one another, their goals and purposes vary widely. Some focus on making science accessible and meaningful to the vast majority of students who will not pursue STEM majors or careers; others aim to increase the diversity of students who enroll and succeed in STEM courses and programs; still other efforts focus on reforming the overall curriculum in specific disciplines. In addition to this variation in focus, these innovations have been implemented at scales that range from individual classrooms to entire departments or institutions. By 2008, partly because of this wide variability, it was apparent that little was known about the feasibility of replicating individual innovations or about their potential for broader impact beyond the specific contexts in which they were created. The research base on innovations in undergraduate STEM education was expanding rapidly, but the process of synthesizing that knowledge base had not yet begun. If future investments were to be informed by the past, then the field clearly needed a retrospective look at the ways in which earlier innovations had influenced undergraduate STEM education. To address this need, the National Research Council (NRC) convened two public workshops to examine the impact and effectiveness of selected STEM undergraduate education innovations. This volume summarizes the workshops, which addressed such topics as the link between learning goals and evidence; promising practices at the individual faculty and institutional levels; classroom-based promising practices; and professional development for graduate students, new faculty, and veteran faculty. The workshops concluded with a broader examination of the barriers and opportunities associated with systemic change.

Higher Education in Science Technology Engineering and Mathematics STEM Subjects

Higher Education in Science  Technology  Engineering and Mathematics  STEM  Subjects
Author: Great Britain. Parliament. House of Lords. Science and Technology Committee
Publsiher: Unknown
Total Pages: 135
Release: 2012
Genre: Electronic Book
ISBN: OCLC:1052106981

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Higher education federal science technology engineering and mathematics programs and related trends report to the Chairman Committee on Rules House of Representatives

Higher education federal science  technology  engineering  and mathematics programs and related trends   report to the Chairman  Committee on Rules  House of Representatives
Author: Anonim
Publsiher: DIANE Publishing
Total Pages: 112
Release: 2005
Genre: Engineering
ISBN: 9781428933125

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Higher education in science technology engineering and mathematics STEM subjects

Higher education in science  technology  engineering and mathematics  STEM  subjects
Author: Great Britain: Parliament: House of Lords: Science and Technology Committee
Publsiher: The Stationery Office
Total Pages: 122
Release: 2012-07-24
Genre: Business & Economics
ISBN: 0108476111

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Higher Education in Science, Technology, Engineering and Mathematics (STEM) Subjects (HL 37) calls for immediate action to ensure enough young people study STEM subjects at both undergraduate and postgraduate level. Without this the Government risks failing to meet its objectives to drive economic growth through education and hi-tech industries as identified in its Plan for Growth. A high level of numeracy is of increasing importance to employers, particularly in hi-tech industries. The Committee were shocked to discover that many students starting STEM degrees, even those with A-Level maths qualifications, lack the maths skills required to undertake their studies. The Committee recommends: maths should be compulsory for all students after post-16; universities should toughen-up their maths requirements for entry in STEM courses; the Government should work with stakeholders to define STEM by producing a st

Handbook of STEM Faculty Development

Handbook of STEM Faculty Development
Author: Sandra M. Linder,Cindy M. Lee,Shannon K Stefl,Karen A. High
Publsiher: IAP
Total Pages: 416
Release: 2022-12-01
Genre: Education
ISBN: 9798887300474

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Faculty in the science, technology, engineering, and mathematics (STEM) disciplines face intensifying pressures in the 21st century, including multiple roles as educator, researcher, and entrepreneur. In addition to continuously increasing teaching and service expectations, faculty are engaged in substantive research that requires securing external funding, mentoring other faculty and graduate students, and disseminating this work in a broad range of scholarly outlets. Societal needs of their expertise include discovery, innovation, and workforce development. It is critical to provide STEM faculty with the professional development to support their complex roles and to base this development on evidence derived from research. This edited handbook provides STEM stakeholders with an opportunity to share studies and/or experiences that explore STEM faculty development (FD) in higher education settings. More specifically, we include work that examines faculty development planning, techniques/models, experiences, and outcomes focused on supporting the teaching, research, service, and leadership responsibilities of STEM faculty. The Handbook is suited for researchers and practitioners in STEM, STEM Education, Mathematics, Science, Technology, and Engineering disciplines. It is also suited towards faculty developers, higher education administrators, funding agencies, industry leaders, and the STEM community at large. This handbook is organized around three constructs (INPUTS, MECHANISMS, and OUTPUTS). The STEM faculty development inputs construct focuses on topics related to the characteristics of faculty members and institutions that serve as barriers or supports to the adoption and implementation of holistic STEM faculty development programs. Questions addressed in the handbook around this topic include: What barriers/supports exist for STEM faculty? How are these barriers/supports being addressed through STEM FD? How do contexts (e.g., economic, political, historical) influence faculty/administrative needs related to STEM FD? How do demographics (e.g., gender, ethnicity, age, family background) influence faculty/administrative needs related to STEM FD? The STEM faculty development mechanisms construct focuses on topics related to the actual implementation of STEM faculty development and we consider the potential models or structures of STEM faculty development that are currently in place or conceptualized in theory. Questions addressed in the handbook around this topic include: What are the processes for developing models of STEM FD? What are effective models of STEM FD? How is effectiveness determined? What roles do stakeholders (e.g., faculty, administration, consultants) play within STEM FD mechanisms? The STEM faculty development outputs construct focuses on how to best understand the influence of STEM faculty development on outcomes such as productivity, teacher quality, and identity in relation to faculty development. Questions addressed in the handbook around this topic include: How has STEM FD influenced higher education practices and settings? What are appropriate output measures and how are they used in practice? What collaborations emerge from STEM FD? How does STEM FD affect other STEM stakeholders (e.g. students, administration, business, community)? The aim for this handbook was to examine the multifaceted demands of faculty roles, and together with members of the STEM education community, envision pathways through which universities and individuals may support STEM colleagues, regardless of their experience or rank, to enjoy long and satisfying careers. Our hope is for these chapters to aid readers in deep reflection on challenges faculty face, to contemplate adaptations of models presented, and to draw inspiration for creating or engaging in new professional development programs. Chapters across this handbook highlight a variety of institutional contexts from 2-year technical colleges, to teaching-focused institutions, in addition to research-centric settings. Some chapters focus primarily on teaching and learning practices and offer models for improving STEM instruction. Others focus on barriers that emerge for STEM faculty when trying to engage in development experiences. There are chapters that examine tenure structures in relation to faculty development and how STEM FD efforts could support research endeavors. Mentorship and leadership models are also addressed along with a focus on equity issues that permeate higher education and impact STEM FD. It is our sincere hope that this Handbook sparks increased discourse and continued explorations related to STEM FD, and in particular, the intentional focus of faculty development initiatives to extend to the many facets of academic life.

STEM Project Based Learning

STEM Project Based Learning
Author: Robert M. Capraro,Mary Margaret Capraro,James R. Morgan
Publsiher: Springer Science & Business Media
Total Pages: 198
Release: 2013-04-20
Genre: Education
ISBN: 9789462091436

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This second edition of Project-Based Learning (PBL) presents an original approach to Science, Technology, Engineering and Mathematics (STEM) centric PBL. We define PBL as an “ill-defined task with a well-defined outcome,” which is consistent with our engineering design philosophy and the accountability highlighted in a standards-based environment. This model emphasizes a backward design that is initiated by well-defined outcomes, tied to local, state, or national standard that provide teachers with a framework guiding students’ design, solving, or completion of ill-defined tasks. This book was designed for middle and secondary teachers who want to improve engagement and provide contextualized learning for their students. However, the nature and scope of the content covered in the 14 chapters are appropriate for preservice teachers as well as for advanced graduate method courses. New to this edition is revised and expanded coverage of STEM PBL, including implementing STEM PBL with English Language Learners and the use of technology in PBL. The book also includes many new teacher-friendly forms, such as advanced organizers, team contracts for STEM PBL, and rubrics for assessing PBL in a larger format.