3 research outputs found

    Understanding The Lived Experiences of Elementary Teachers Who Teach Students With Dyslexia How to Read: A Transcendental Phenomenology

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    This transcendental phenomenology sought to understand the lived experiences of elementary teachers who teach students with dyslexia how to read. The central question guiding this study was: “What are the lived experiences of elementary teachers who teach students with dyslexia how to read?” Three sub-questions looked more deeply into the phenomenon. The first sub-question asked: “What internal influences shape elementary teachers’ experiences when teaching students with dyslexia how to read?” The second sub-question asked: “What external influences shape elementary teachers’ experiences when teaching students with dyslexia how to read?” Finally, the third sub-question asked: “How do internal and external influences shape elementary teachers’ experiences when teaching students with dyslexia how to read?” Bandura’s social cognitive theory (SCT) guided this study, as its model of triadic reciprocal causation provided a framework for understanding the internal and external influences that shaped elementary teachers’ experiences when teaching reading to students with dyslexia. A total of 14 teachers were purposefully selected either from public and private elementary teacher Facebook groups across the United States or snowball sampling. Participants were K-4 classroom teachers, special education teachers, and reading specialists. Data were collected from individual interviews, document analysis, and participant journaling. Moustakas’ (1994) data analysis procedures were used to reveal the essence of participants’ lived experiences of the phenomenon. Thus, the science of reading, barriers to teaching students with dyslexia, and the pandemic and dyslexia strongly shaped elementary teachers’ instruction when teaching students with dyslexia how to read

    The James Webb Space Telescope Mission

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    Twenty-six years ago a small committee report, building on earlier studies, expounded a compelling and poetic vision for the future of astronomy, calling for an infrared-optimized space telescope with an aperture of at least 4m4m. With the support of their governments in the US, Europe, and Canada, 20,000 people realized that vision as the 6.5m6.5m James Webb Space Telescope. A generation of astronomers will celebrate their accomplishments for the life of the mission, potentially as long as 20 years, and beyond. This report and the scientific discoveries that follow are extended thank-you notes to the 20,000 team members. The telescope is working perfectly, with much better image quality than expected. In this and accompanying papers, we give a brief history, describe the observatory, outline its objectives and current observing program, and discuss the inventions and people who made it possible. We cite detailed reports on the design and the measured performance on orbit.Comment: Accepted by PASP for the special issue on The James Webb Space Telescope Overview, 29 pages, 4 figure

    The James Webb Space Telescope Mission

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    Twenty-six years ago a small committee report, building on earlier studies, expounded a compelling and poetic vision for the future of astronomy, calling for an infrared-optimized space telescope with an aperture of at least 4 m. With the support of their governments in the US, Europe, and Canada, 20,000 people realized that vision as the 6.5 m James Webb Space Telescope. A generation of astronomers will celebrate their accomplishments for the life of the mission, potentially as long as 20 yr, and beyond. This report and the scientific discoveries that follow are extended thank-you notes to the 20,000 team members. The telescope is working perfectly, with much better image quality than expected. In this and accompanying papers, we give a brief history, describe the observatory, outline its objectives and current observing program, and discuss the inventions and people who made it possible. We cite detailed reports on the design and the measured performance on orbit
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