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Gifted Education

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Full-Text Articles in Education

Engineering Education For High-Ability Students, Branson Lawrence, Diane Hinterlong, Laurie S. Sutherland Jan 2015

Engineering Education For High-Ability Students, Branson Lawrence, Diane Hinterlong, Laurie S. Sutherland

Publications & Research

Over the course of their careers, engineers command a breadth and depth of knowledge from science, mathematics, society, politics, and economics that is needed for continuously updating their knowledge of the latest discoveries and advances. Driven by curiosity and enabled by rapid information technology, engineers are kept abreast of the latest advancements almost instantaneously. Today’s scientific knowledge is fluid and complex, yet these traits of engineering remain constant: the ability to define structure, plan, repeatedly evaluate, and align results to the initial objective. Engineering teachers need to facilitate their students’ ability to access information effectively and to apply it appropriately, …


Technology Education For High-Ability Students, Carl Heine, James Gerry, Laurie S. Sutherland Jan 2015

Technology Education For High-Ability Students, Carl Heine, James Gerry, Laurie S. Sutherland

Publications & Research

Technologically adept teens not only consume technology voraciously; they create it. Gifted and talented students are attracted to technology for its capacity to transform learners from “receptacles of knowledge to active producers who direct their own learning” (Siegle, n.d.). Beyond the capacity to produce or innovate with technology is the opportunity to conceive and produce innovative technologies, a distinct type of tech giftedness (Siegle, n.d.) and the focus of the present chapter.

Technologically skilled teens have been doing this for some time, typically unassisted. It’s not hard to locate the connections between Facebook, Google, and YouTube and their gifted creators. …


Field Trip Partnerships: Student-To-Student Mentoring, Aziza Darwish, Robyn Lee-Diaz Oct 2014

Field Trip Partnerships: Student-To-Student Mentoring, Aziza Darwish, Robyn Lee-Diaz

Publications & Research

Children running wild enjoying a day of freedom, exhausted chaperones, budget-conscious, hand-wringing administrators back at school -- all of these conjure troubling images for educators about field trips. These are far from the enjoyable, state-of-the-art, educational experiences that field trips could be for today's teachers and students.

For several years, the Illinois Mathematics and Science Academy® (IMSA) has had longstanding partnerships with school districts throughout the state which have involved designing STEM field trip experiences that serve middle school educators and students. These field trips to the Academy are led by IMSA high school students who are enrolled in the …


Increasing Interest Of Young Women In Engineering, Diane Hinterlong, Branson Lawrence, Purva Devol Apr 2014

Increasing Interest Of Young Women In Engineering, Diane Hinterlong, Branson Lawrence, Purva Devol

Publications & Research

The internationally recognized Illinois Mathematics and Science Academy (IMSA) develops creative, ethical leaders in science, technology, engineering and mathematics. As a teaching and learning laboratory created by the State of Illinois, IMSA enrolls academically talented Illinois students in grades 10 through 12 in its advanced, residential college preparatory program. IMSA also serves thousands of educators and students in Illinois and beyond through innovative instructional programs that foster imagination and inquiry. IMSA also advances education through research, groundbreaking ventures and strategic partnerships.


The Value Of Creating An Innovation Talent Pipeline, Britta Mckenna Apr 2014

The Value Of Creating An Innovation Talent Pipeline, Britta Mckenna

Publications & Research

Investing in the innovation pipeline today translates to Illinois business tomorrow. Somewhere between the rise of “STEM” and “staying globally competitive” in a time after Millennials is Generation Z. Gen Z digital natives are now making their way to and through primary and secondary education and we need to be ready to nurture the emerging talents of these and other future innovators. This is particularly important in Illinois where developing – and retaining – top talent will be a key driver of the state’s knowledge-based economy. There is hard work ahead reimagining what education should look like to support this …


The Imsa© Promise: Diverse Perspectives Do Enrich Understanding!, Barb J. Miller, Adrienne Coleman Jan 2014

The Imsa© Promise: Diverse Perspectives Do Enrich Understanding!, Barb J. Miller, Adrienne Coleman

Publications & Research

For years we have grappled with the effects of the Achievement Gap, which has been defined by: (a) the National Assessment of Educational Progress (2011) as the “observed, persistent disparity of educational measures between the performance of groups of students, especially groups defined by socioeconomic status (SES), race/ethnicity and gender; (b) The National Education Association (2013) as differences between the scores of students with different backgrounds (ethnic, racial, gender, disability, and income) are evident on large-scale standardized tests, adding that test score gaps often lead to longer-term gaps, including high school and college completion and the kinds of jobs students …


Preparing Students For Careers That Do Not Yet Exist, Glenn W. "Max" Mcgee Jan 2012

Preparing Students For Careers That Do Not Yet Exist, Glenn W. "Max" Mcgee

Publications & Research

The Illinois Mathematics and Science Academy (IMSA), as a self-described "teaching and learning laboratory for imagination and inquiry," has a history of pursuing innovations closely aligned with the vision and framework of the National Science Education Standards. Innovations include both methods and materials for inquiry-based student instruction as well as for delivering professional development for pre-service and practicing teachers. Instructional innovations described include yearlong student inquiry and research projects (SIR), self-paced physics instruction, student-driven energy and engineering projects, instruction in innovation and entrepreneurialism, and a host of student-led outreach activities to "ignite and nurture creative, ethical, scientific minds of students …


Re-Imagining Specialized Stem Academies: Igniting And Nurturing ‘Decidedly Different Minds,’ By Design, Stephanie Pace Marshall Jan 2010

Re-Imagining Specialized Stem Academies: Igniting And Nurturing ‘Decidedly Different Minds,’ By Design, Stephanie Pace Marshall

Publications & Research

This article offers a personal vision and conceptual design for reimagining specialized science, technology, engineering, and mathematics (STEM) academies designed to nurture decidedly different STEM minds and ignite a new generation of global STEM talent, innovation, and entrepreneurial leadership. This design enables students to engage actively in the authentic work, modes of inquiry, and practices that distinguish four STEM learning cultures, environments, and communities: (a) Inquiry and Research Laboratory and Interdisciplinary Learning Center—develops disciplinary, interdisciplinary, and inquiry-based thinking; (b) Innovation Incubator and Design Studio—ignites innovative and design-based thinking; (c) Global Leadership and Social Entrepreneurship Institute—nurtures change leadership and systems-based thinking; …


Stem Talent: Moving Beyond Traditional Boundaries, Stephanie Pace Marshall Jan 2010

Stem Talent: Moving Beyond Traditional Boundaries, Stephanie Pace Marshall

Publications & Research

The future well-being, prosperity and sustainability of our nation, the global community and our planet resides in igniting and nurturing decidedly different STEM minds that can advance both the new STEM frontier and the human future.


Igniting And Nurturing The Next Generation Of Stem Talent, Innovation And Leadership, By Design, Stephanie Pace Marshall Jan 2009

Igniting And Nurturing The Next Generation Of Stem Talent, Innovation And Leadership, By Design, Stephanie Pace Marshall

Publications & Research

Regrettably, most American students experience STEM learning as an exclusive, individual, theoretical and “formulaic” enterprise. By decoupling STEM education from the human experience, we have distorted the essential nature of the scientific enterprise and advanced instrumentalist and utilitarian rationales for pursuing STEM careers—global economic superiority and technological competition.


Thailand Ties, Raymond J. Dagenais Jan 2007

Thailand Ties, Raymond J. Dagenais

Publications & Research

One of the resolutions I witnessed moving forward at the Summer 2006 National Congress on Science Education in Toronto, Canada involved expanding our learning through international collaborations. The Congress encouraged National Science Teacher Association affiliates to make an effort to connect with educators in other countries in order to both learn and share ideas and issues facing the science education community. With the already large numbers of students from other cultures in many school systems in the United States and the increasing quality of students coming out of science programs in other countries, it has become imperative that we better …


Creating Conditions For Developing And Nurturing Talent: The Work Of School Leaders, Stephanie Pace Marshall, Martin Ramirez, Kathy Plinske, Catherine C. Veal Jan 1998

Creating Conditions For Developing And Nurturing Talent: The Work Of School Leaders, Stephanie Pace Marshall, Martin Ramirez, Kathy Plinske, Catherine C. Veal

Publications & Research

In 1993, two decades after the 1972 U.S. Office of Education Report on the status of gifted and talented programs (the Marland Report), U. S. Secretary of Education Richard Riley issued a report stating that gifted education is essential to our nation’s future and documenting the “quiet risk” faced by gifted children and gifted education programs in the United States.