Recent SemestersSpring 2026Class Size24 studentsCredits4PrerequisitePHYS 2105 - Calculus-Based Physics for Scientists and Engineers: A Minimum Grade: C Condition: and Healthy/Safety: Additional: Outcomes Use the laws of physics and proportional reasoning strategies to appraise the relative effect of changes to a specified independent variable on changes to a dependent variable for a given physical phenomena. Example: How does doubling the mass of a car affect its stopping distance? Analyze, interpret, and solve a variety of common situations using work, energy, and power. Apply Newton's laws of motion to analyze, interpret, and solve circular motion dynamics problems. Solve circular motion kinematic problems for uniform motion and uniform acceleration. Apply Newton's laws of motion to analyze, interpret, and solve single object dynamics problems Describe and interpret one-dimensional motion using words, graphs, vectors, and motion diagrams. Demonstrate an ability to effectively communicate scientific knowledge, experimental results and anlysis. Demonstrate proficiency in calculating solutions to numerical problems that require identifying key data, deciding which principle of physics applies, choosing an appropriate formula and problem solving strategy, converting units as required, performing derivatives, integrals, and algebraic manipulations and calculations, and deciding if the answer is reasonable. AND MATH 1400 - Calculus and Analytic Geometry I Minimum Grade: C Condition: and Healthy/Safety: Additional: Outcomes Compute derivatives using differentiation formulas. Find the derivative of a function as a limit. Evaluate a definite integral as a limit. Apply differentiation to solve applications Graph functions using methods of calculus Find the equation of a tangent line to a function Use implicit differentiation. Transfers ToUC and CSUCal-GETC Area 5C · Cal-GETC Area 5A · IGETC Area 5C · IGETC Area 5A · CSU GE Area B1 · CSU GE Area B3DescriptionThe fundamental principles of electricity and magnetism are treated within the mathematical framework of elementary differential and integral calculus. Topics include: electric fields, Gauss' Law, electrical potential, capacitors and dielectrics, current and resistance, magnetic fields, Ampere's law, Faraday's law of induction, magnetic properties of matter, electromagnetic oscillations and waves, alternating currents, Maxwell's equations, and wave properties of light and geometric optics. C-ID PHYS 210.Usually HeldMon Wed 12:10pm–3:20pm