The Need for a Light and Spectroscopy Concept Inventory for Assessing Innovations in Introductory Astronomy Survey Courses

Необходимость создания концептуального теста по свету и спектроскопии для оценки инноваций в обзорных курсах вводной астрономии
Timothy F. Slater, Edward E. Prather, Erin Bardar, K. Brecher
2005-10-01

Light and Spectroscopy Concept Inventoryblackbody radiationconceptual understandingelectromagnetic spectrumintroductory astronomy
In this era of dramatically increased astronomy education research efforts, there is a growing need for standardized evaluation protocols and a strategy to assess both student comprehension of fundamental concepts and the success of innovative instructional interventions. Of the many topics that could be taught in an introductory astronomy course, the nature of light and the electromagnetic spectrum is by far the most universally covered topic. Yet, to the surprise and disappointment of instructors, many students struggle to understand underlying fundamental concepts related to light, such as blackbody radiation, Wien’s law, the Stefan-Boltzmann law, and the nature and causes of emission and absorption line spectra. Motivated by predecessor instruments such as the Force Concept Inventory (FCI), the Astronomy Diagnostic Test (ADT), and the Lunar Phases Concept Inventory (LPCI), we call for, and are working on, the development and validation of a Light and Spectroscopy Concept Inventory. This assessment instrument should measure students’ conceptual understanding of light and spectroscopy and gauge the effectiveness of classroom instruction in promoting student learning in the introductory astronomy survey course.
1
Because light and the electromagnetic spectrum are nearly universal course topics, they provide a suitable focus for standardized assessment in introductory astronomy.
2
Introductory astronomy students commonly struggle with fundamental concepts of light, including blackbody radiation, Wien’s law, and the Stefan–Boltzmann law.
3
Students also have difficulty understanding the nature and causes of emission and absorption line spectra.
4
The paper calls for developing and validating a Light and Spectroscopy Concept Inventory modeled on established concept inventories.
5
The proposed instrument is intended to measure conceptual understanding and evaluate the effectiveness of innovative classroom instruction.

students in introductory astronomy survey courses

conceptual understanding of light and spectroscopy, including blackbody radiation, Wien’s law, the Stefan–Boltzmann law, and emission and absorption line spectra, and its change due to classroom instruction

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2005-10-01
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Authors
Timothy F. Slater
Edward E. Prather
Erin Bardar
K. Brecher
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