Technology

STEM-focused high schools as a strategy for enhancing readiness for postsecondary STEM programs

Means, B., Wang, H., Young, V., Peters, V. & Lynch, S. J. (2016). STEM-focused high schools as a strategy for enhancing readiness for postsecondary STEM programs. Journal of Research in Science Teaching. DOI: 10.1002/tea.21313

Author/Presenter

Barbara Means

Haiwen Wang

Viki Young

Vanessa L. Peters

Sharon J. Lynch

Year
2016
Short Description

The logic underlying inclusive STEM high schools (ISHSs) posits that requiring all students to take advanced college preparatory STEM courses while providing student-centered, reform-oriented instruction, ample student supports, and real-world STEM experiences and role models will prepare and inspire students admitted on the basis of STEM interest rather than prior achievement for postsecondary STEM. This study tests that logic model by comparing the high school experiences and achievement of students in ISHSs and comparison schools in North Carolina. After identifying ISHS and non-STEM comparison high schools serving students who were similar in terms of socioeconomic status and academic achievement prior to high school entry, we employed propensity-score weighting and HLM modeling to estimate the impact of attending an ISHS on a set of outcome measures obtained from student surveys and from the state's longitudinal student data system. Analyses of student survey data found that attending an ISHS raises the likelihood that a student will complete pre-calculus or calculus and chemistry in high school, leads to increased involvement in STEM extracurricular and out-of-class activities, and enhances interest in science careers and aspirations to earn a master's or higher degree. Analyses of student outcome data from state administrative records revealed a positive impact of inclusive STEM high school attendance on grade point average (GPA) but not on ACT scores.

American Sociological Association 2016 Annual Meeting

Event Date
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Sponsoring Organization

To learn more, visit: http://www.asanet.org/AM2016/AM_2016.cfm

DR K-12 Presenters:

  • Shelia Cotten, Christopher Ball, and Kuo-Ting Huang, Michigan State University (Project: Integrating Computing Across the Curriculum (ICAC): Incorporating Technology into STEM Education Using XO Laptops)
Discipline/Topic
Event Type

Invaluable values: an expectancy-value theory analysis of youths’ academic motivations and intentions

Ball, C., Huang, K., Cotten, S. R., Rikard, R. V., & Coleman, L. O. (2016). Invaluable values: an expectancy-value theory analysis of youths’ academic motivations and intentions. Information, Communication & Society, 19(5), 1-21.

Author/Presenter

Christopher Ball

Kuo-Ting Huang

Shelia R. Cotten

R.V. Rikard

LaToya O. Coleman

Lead Organization(s)
Year
2016
Short Description

While Science, Technology, Engineering, and Math (STEM) fields have increased in importance over the past decade, minorities have remained traditionally underrepresented in these fields. In this study we seek to better understand some of the factors that might contribute to or potentially mitigate early STEM pipeline leaks, specifically, high school graduation and college entrance leaks. Student interest formed in the early school years has an impact on future course selections and persistence in school. These choices can have long-term repercussions on the future career options and the financial security of students. We apply expectancy-value theory (EVT) in order to examine the factors that may influence students’ motivations and intentions to complete high school and attend college. Specifically, we investigate if EVT can help to explain change in students’ academic intentions and motivations after a computing intervention. We hypothesize that changes in students’ expectancies for success and subjective task values will be positively associated with changes in students’ intentions and motivations to persist in academia. Data were gathered from a sample of elementary students within an urban, high poverty, and predominately minority school district located in the southeastern USA. Changes in students’ expectancies for success and subjective task values over the course of the intervention played an important role in students’ academic motivations and intentions to both finish high school and attend college. These findings demonstrate that EVT is useful in explaining general academic motivations in young children, which could potentially increase the structural integrity of the STEM pipeline.

Integrating Computing Across the Curriculum: The Impact of Internal Barriers and Training Intensity on Computer Integration in the Elementary School Classroom

Coleman, L. O., Gibson, P., Cotten, S. R., Howell-Moroney, M., & Stringer, K. (2015). Integrating Computing Across the Curriculum: The Impact of Internal Barriers and Training Intensity on Computer Integration in the Elementary School Classroom. Journal of Educational Computing Research.

Author/Presenter

LaToya O. Coleman

Philip Gibson

Shelia R. Cotten

Michael Howell-Moroney

Kristi Stringer

Lead Organization(s)
Year
2015
Short Description

This study examines the relationship between internal barriers, professional development, and computer integration outcomes among a sample of fourth- and fifth-grade teachers in an urban, low-income school district in the Southeastern United States. Specifically, we examine the impact of teachers’ computer attitudes, computer anxiety, and computer training on the quality of computer integration in their classrooms. Using data from the Integrating Computing Across the Curriculum project, we utilize a mixed-methods approach to explore these relationships. Our results indicate that teacher attitudes and participation in an intensive computer-based training have a positive effect on computer integration practices. Findings from this study support providing teachers with more computer-based training which aims to improve the quality of classroom integration. This may lead to improvements in teacher attitudes toward computing and an increase in levels of computer integration in the elementary school classroom.

Why a Digital Teacher Guide?

Inquiry-based educative curricula and teachers who use these curricula as intended are major factors in achieving successful student learning outcomes in science. Educative curricula can also bring about significant change in teacher practice. Educative curricula are generally accompanied by carefully designed print teacher guides that facilitate the implementation of curricula, encourage new instructional strategies, and accommodate curriculum modifications while retaining fidelity to the developers’ content sequencing and pedagogy.

Author/Presenter

Jacqueline S. Miller

Katherine F. Paget

Year
2016
Short Description

An electronic teacher guide (eTG) was developed to determine whether a digital guide could better support teachers in implementing an inquiry-based curriculum and in enhancing their practice. Developed as a proof-of-concept exemplar, features of the eTG support high school teachers in planning, implementing, and modifying innovative instructional materials and in developing more ambitious teaching practices.

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