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Daryl Monear – Washington Student Achievement Council, 2024
Science, technology, engineering, and math (STEM) are vital to Washington's economy. Because of this, it's essential for our state to align education and career training with workforce needs. The STEM Education Innovation Alliance advises the State of Washington's Governor on policies to align and advance STEM education. The STEM Alliance brings…
Descriptors: STEM Education, Educational Innovation, Educational Policy, Postsecondary Education
Williamson, Joanna; Vidal Rodeiro, Carmen – Cambridge University Press & Assessment, 2022
The transition from Key Stage 4 (KS4) to post-16 education marks a shift from a broad programme of study (around 8-10 subjects) to a narrower programme (usually 1-4 subjects). Within the constraints of course availability and entry criteria, students must make important choices. Students' post-16 pathways matter because different subjects as well…
Descriptors: Class Rank, Exit Examinations, Postsecondary Education, Foreign Countries
Shuqiong Lin; Megha Joshi; Kate Caton; Joseph Patrick Wilson – American Institutes for Research, 2024
The American Institutes for Research® (AIR®) partnered with Girls Who Code (GWC) to conduct an independent study evaluating the effectiveness of two GWC summer virtual programs, the Summer Immersion Program (SIP) and the Self-Paced Program (SPP), on promoting the pursuit of Computer Science (CS)-related postsecondary education for high school…
Descriptors: Females, Womens Education, Summer Programs, Program Effectiveness
Rotermund, Susan; Burke, Amy – National Science Foundation, 2021
Elementary and secondary science, technology, engineering, and mathematics (STEM) education is the foundation for students' entry into postsecondary STEM majors as well as a wide variety of STEM occupations. Proficiency in STEM fields is vital to economic growth and international competitiveness and important for all citizens in an increasingly…
Descriptors: Elementary Education, Secondary Education, STEM Education, Educational Indicators
Iowa Department of Education, 2021
The 2021 edition of the Annual Condition of Education Report (COE) marks the 32nd edition of the report. For over 30 years, the Department has published the COE in order to provide education stakeholders critical data about the status of Iowa's education system. The 2021 COE covers a wide variety of content including information about Iowa's…
Descriptors: College Entrance Examinations, National Competency Tests, Enrollment Trends, Early Childhood Education
Iowa Department of Education, 2020
For over 30 years, the Department has published the Annual Condition of Education (COE) report in order to provide education stakeholders quality information about the status of Iowa's education system. The 2020 COE covers a wide variety of content from information about Iowa's students, schools, educators, administrators, performance and school…
Descriptors: Enrollment Trends, Early Childhood Education, Teacher Characteristics, Academic Achievement
Chen, Xianglei; Ho, Phoebe – National Center for Education Statistics, 2012
Science, technology, engineering, and mathematics (STEM) fields are widely regarded as critical to the national economy. To provide a nationally representative portrait of undergraduate students' experiences in STEM education, these Web Tables summarize longitudinal data from a cohort of first-time, beginning students who started postsecondary…
Descriptors: STEM Education, Postsecondary Education, Undergraduate Students, Student Attrition
Office of Technology Policy (DOC), Washington, DC. – 1998
The Office of Technology has analyzed Bureau of Labor Statistics's (BLS's) growth projections for the three core occupational classifications of information technology (IT) workers--computer scientists and engineers, systems analysts, and computer programmers--to assess future United States demand. BLS projections indicate that between 1996-2006,…
Descriptors: Adult Education, Computer Science, Computer Science Education, Computers
Larkin, Paul – 1982
Industry's needs for students with high technology skills are increasing. Bureau of Labor Statistics forecasts project increases between 1980 and 1990 of 58% in the demand for computer professionals, 28% for engineers, and 24% for engineering technicians, compared with an increase of 17% for all workers. Industrial expansion and replacement of…
Descriptors: Computer Science Education, Employment Patterns, Engineering Education, Engineering Technicians
Howard, H. Philip; Rothstein, Debra E. – 1981
In 1980 1,455,000 persons worked in computer occupations. Two in five were systems analysts or programmers; one in five was a keypunch operator; one in 20 was a computer service technician; and more than one in three were computer and peripheral equipment operators. Employment was concentrated in major urban centers in four major industry…
Descriptors: Computer Science Education, Computers, Data Processing Occupations, Educational Needs
Hamblen, John W. – 1979
Based on a 1974 survey of over 1500 higher education institutions, data are presented that project professional computer manpower availability. Statistics for 1966 to 1979 are provided on associates, bachelors, masters, and doctoral degree programs in computer science, data processing, information science, etc.; majors enrolled; numbers of degree…
Descriptors: Associate Degrees, Bachelors Degrees, College Graduates, Computer Science Education
Kaufman, Phillip – 1990
Patterns of courses completed by high school students versus courses completed by college and postsecondary vocational/technical students were examined. Data were from the High School and Beyond Study, including the 1982 high school transcripte and 1987 postsecondary transcripts for 1980 high school sophomores. Students who graduated from high…
Descriptors: Black Students, College Students, Comparative Analysis, Computer Science Education