Introductory Physics Laboratory
First laboratory course in an algebra-based two semester sequence. Core topics include experiments in kinematics, dynamics, energy, momentum, rotation, oscillations, fluids, and thermodynamics.
First laboratory course in an algebra-based two semester sequence. Core topics include experiments in kinematics, dynamics, energy, momentum, rotation, oscillations, fluids, and thermodynamics.
Conceptual physics taught within the context of sports including football, baseball,
soccer, cycling, and tennis. Content is taught at an introductory level using basic math
such as vectors, ratios, square roots, and algebra. Topics include Newton's laws,
projectile and rotational motion, momentum, energy, and aerodynamics.
A laboratory course covering basic concepts in physics. Core topics include mechanics, energy, heat, sound, electricity, magnetism, light, and nuclear physics.
An overview of physics. Content is taught at a conceptual level using basic math such as ratios, square roots, scientific notation, graph interpretation, slope and simple algebra. Topics include mechanics, properties of matter, heat, sound, electricity, magnetism, light, and nuclear physics.
This is the fourth course in a calculus-based four semester sequence. Core topics include special relativity, quantum mechanics, atomic physics and solid state physics.
This is the third course in a calculus-based four-semester sequence. Core topics include mechanical, sound and light waves; geometrical and physical optics; and thermodynamics.
This is the second course in a calculus-based four-semester sequence. Core topics include electric and magnetic fields, electric potential, capacitance, resistance, inductance, DC and AC circuits, and Maxwell's Equations.
This is the first course in a calculus-based four-semester sequence. Core topics include kinematics, dynamics, energy, momentum, rotation, gravitation, oscillations, and fluids.
Application of advanced drug preparation skills to various clinical settings as well as maintaining inventory, storage requirements, drug selection, preparation and filling of prescriptions. Emphasis on quality assurance and the use of automated technology as related to preparation of IV admixtures and chemotherapeutic agents.
Advanced drug classification, mechanism of action, indications, and side effects; preparation of intravenous additives and chemotherapeutic agents; record keeping of legend and controlled drugs; anatomy, physiology, medical terminology, pharmacology, and pharmaceutical calculations, and pharmacy law as they pertain to pharmacy practice.