Chabot College
- Page ID
- 148968
\( \newcommand{\vecs}[1]{\overset { \scriptstyle \rightharpoonup} {\mathbf{#1}} } \)
\( \newcommand{\vecd}[1]{\overset{-\!-\!\rightharpoonup}{\vphantom{a}\smash {#1}}} \)
\( \newcommand{\dsum}{\displaystyle\sum\limits} \)
\( \newcommand{\dint}{\displaystyle\int\limits} \)
\( \newcommand{\dlim}{\displaystyle\lim\limits} \)
\( \newcommand{\id}{\mathrm{id}}\) \( \newcommand{\Span}{\mathrm{span}}\)
( \newcommand{\kernel}{\mathrm{null}\,}\) \( \newcommand{\range}{\mathrm{range}\,}\)
\( \newcommand{\RealPart}{\mathrm{Re}}\) \( \newcommand{\ImaginaryPart}{\mathrm{Im}}\)
\( \newcommand{\Argument}{\mathrm{Arg}}\) \( \newcommand{\norm}[1]{\| #1 \|}\)
\( \newcommand{\inner}[2]{\langle #1, #2 \rangle}\)
\( \newcommand{\Span}{\mathrm{span}}\)
\( \newcommand{\id}{\mathrm{id}}\)
\( \newcommand{\Span}{\mathrm{span}}\)
\( \newcommand{\kernel}{\mathrm{null}\,}\)
\( \newcommand{\range}{\mathrm{range}\,}\)
\( \newcommand{\RealPart}{\mathrm{Re}}\)
\( \newcommand{\ImaginaryPart}{\mathrm{Im}}\)
\( \newcommand{\Argument}{\mathrm{Arg}}\)
\( \newcommand{\norm}[1]{\| #1 \|}\)
\( \newcommand{\inner}[2]{\langle #1, #2 \rangle}\)
\( \newcommand{\Span}{\mathrm{span}}\) \( \newcommand{\AA}{\unicode[.8,0]{x212B}}\)
\( \newcommand{\vectorA}[1]{\vec{#1}} % arrow\)
\( \newcommand{\vectorAt}[1]{\vec{\text{#1}}} % arrow\)
\( \newcommand{\vectorB}[1]{\overset { \scriptstyle \rightharpoonup} {\mathbf{#1}} } \)
\( \newcommand{\vectorC}[1]{\textbf{#1}} \)
\( \newcommand{\vectorD}[1]{\overrightarrow{#1}} \)
\( \newcommand{\vectorDt}[1]{\overrightarrow{\text{#1}}} \)
\( \newcommand{\vectE}[1]{\overset{-\!-\!\rightharpoonup}{\vphantom{a}\smash{\mathbf {#1}}}} \)
\( \newcommand{\vecs}[1]{\overset { \scriptstyle \rightharpoonup} {\mathbf{#1}} } \)
\(\newcommand{\longvect}{\overrightarrow}\)
\( \newcommand{\vecd}[1]{\overset{-\!-\!\rightharpoonup}{\vphantom{a}\smash {#1}}} \)
\(\newcommand{\ket}[1]{\left| #1 \right>}\)
\(\newcommand{\bra}[1]{\left< #1 \right|}\)
\(\newcommand{\braket}[2]{\left< #1 \vphantom{#2} \right| \left. #2 \vphantom{#1} \right>}\)
\(\newcommand{\braopket}[3]{\left< #1 \vphantom{#2}\vphantom{#3} \right| #2 \vphantom{#1}\vphantom{#3} \left| #3 \vphantom{#1}\vphantom{#2} \right>}\)
\(\newcommand{\qmvec}[1]{\mathbf{\vec{#1}}}\)
\(\newcommand{\op}[1]{\hat{\mathbf{#1}}}\)
\(\newcommand{\expect}[1]{\langle #1 \rangle}\)
\(\newcommand{\dfn}[1]{\emph{\textbf{#1}}}\)
- Astronomy 10: The Solar System (Totah-McCarty)
- This textbook is organized to support a broad model-based way of teaching astronomy that focuses on big ideas rather than detailed planet/space facts. Introduction to history and physical principles of astronomy, focusing on our Solar System.
- Astronomy 10: The Solar System (Workbook)
- This is a student-led astronomy workbook that is designed for an introductory, college-level astronomy class that focuses on the solar system and planetary science. Celestial observation concepts are included but stars, galaxies, and cosmology are not. The activities are designed to be completed in groups prior to any formal lecture or introduction of material. Lecture summaries (not included) can review, synthesize, and expand on these ideas.
- Astronomy Lab Manual
- This is a student-led astronomy workbook that is designed for an introductory, college-level astronomy class. These lab are designed for a course that does not have access to observational equipment or meets at a time (eg, day time) that does not allow for night-time viewing. There are 12 labs, so courses have room to add their own experiences, such as observational labs.
- Front Matter
- 1: Mapping the Night Sky
- 2: Apparent Motion
- 3: Celestial Sphere Model
- 4: Sun Path
- 5: Discovering Kepler's Laws
- 6: Kepler Models
- 7: Optics and Telescopes
- 8: Spectroscopy
- 9: Exoplanet Detection - Doppler Method
- 10: Exoplanet Detection - Transit Method
- 11: HR Diagram and Stellar Evolution
- 12: Planetary Evolution
- Back Matter
- Calculus-based Electricity and Magnetism (Workbook)
- This is a student-led workbook that is designed for a calculus-based college-level electricity and magnetism class for science and engineering majors. The course begins with circuits and uses voltage patterns to explore circuits before exploring Maxwell's Equations. The activities are designed to be completed in groups prior to any formal lecture or introduction of material. Lecture summaries (not included) can review, synthesize, and expand on these ideas.

