This text includes 25 reading assignments for an introductory astronomy course. They …
This text includes 25 reading assignments for an introductory astronomy course. They have been modified from the OpenStax Astronomy 2e and College Physics 2e (linked in related resources below) textbooks to order the topics in a logical manner for a one semester course and provide shortened (~10-20 pages) readings intended for biweekly reading assignments. The text also features enhanced treatment of the Newton's Laws, Energy, and Optics content that go beyond the typical introductory astronomy course for non-majors.
Course connections: This content was built for an introductory survey of astronomy course (e.g., PHYS 103), including apparent motions of objects in the sky, light, telescopes, solar system objects, exoplanets, the sun, stars, galaxies, and cosmology. Basic math skills (arithmetic, powers, scientific notation, unit conversions) will be used frequently. This course is designed for students in all majors.
Build your own system of heavenly bodies and watch the gravitational ballet. …
Build your own system of heavenly bodies and watch the gravitational ballet. With this orbit simulator, you can set initial positions, velocities, and masses of 2, 3, or 4 bodies, and then see them orbit each other.
A topically arranged list of openly available Astronomy teaching resources, designed to …
A topically arranged list of openly available Astronomy teaching resources, designed to enrich classroom/lecture experiences or to provide to students for their own exploration. Each resource includes a link, baseline licensing/usage guidelines, and alignment to topics and OpenStax Astronomy textbook chapters. Compiled by Lauren Woolsey, Adam VanDyke, and Robert Wagner.
These data sets include astronomical constants, physical and orbital data for the …
These data sets include astronomical constants, physical and orbital data for the planets, selected moons, future total solar eclipses, and related data regarding nearby stars, chemical elements, and constellations.
Through a study of the moon, students will be guided through an …
Through a study of the moon, students will be guided through an inquiry process using primary sources to learn how we shape our understanding of the past (history). They will also learn how new discoveries and observations change our perceptions over time, as each succeeding generation creates knowledge and adds new technology. Students will then pose their own questions to wonder how future discoveries or new technology might change our understanding of the world and our universe.
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