
Complete 72 semester hours including the following 3 requirement(s):
Complete the following 6 courses:
| PHYS | 191 | University Physics I | 4 |
| PHYS | 192 | University Physics II | 4 |
| PHYS | 210 | Mechanics | 4 |
| PHYS | 240 | Electricity and Magnetism | 4 |
| PHYS | 350 | Optics | 4 |
| PHYS | 460 | Modern Physics | 4 |
Complete at least 14 semester hours from the following:
| PHYS | 280 | Astronomy | 4 |
| PHYS | 380 | Observational Astronomy | 4 |
| PHYS | 480 | Astrophysics | 3 |
| PHYS | 495 | Laboratory Research in Physics | 1-4 |
Complete the following 9 courses:
| CHEM | 120 | General Chemistry I | 4 |
| CHEM | 121 | General Chemistry II | 4 |
| CMPT | 183 | Foundations of Computer Science I | 3 |
| GEOS | 107 | Planet Earth | 4 |
| MATH | 122 | Calculus I | 4 |
| MATH | 221 | Calculus II | 4 |
| MATH | 222 | Calculus III | 4 |
| MATH | 420 | Ordinary Differential Equations | 4 |
| STAT | 401 | Applied Statistics for the Sciences | 3 |
Introductory lecture and laboratory course for science majors, prerequisite for all advanced chemistry courses. Introduction to atomic and molecular structure, bonding, stoichiometry, states of matter, solutions, and selected topics in descriptive inorganic chemistry. Laboratory stresses techniques and data treatment and their use in examining chemical systems. Meets the 1983 General Education Requirement (GER) - Natural/Physical Science, Laboratory or Non-Laboratory Science. 4 sh.
Prerequisites: One year of high school chemistry.
Introductory lecture and laboratory course for science majors, prerequisite for all advanced chemistry courses. Introduction to thermochemistry, kinetics; general acid base, precipitation, redox equilibria, electrochemistry and selected topics in descriptive inorganic chemistry. Laboratory stresses techniques and data treatment and their use in examining chemical systems. 4 sh.
Prerequisites: CHEM 120.
Basic theory of digital computers. Syntax and semantics of a programming language. Algorithms: logic, design, testing and documentation. Meets the 1983 General Education Requirement (GER) - Mathematics, Computer Science. 3 sh.
Prerequisites: MATH 100, MATH 112, MATH 114, MATH 116, MATH 122 or MATH 221.
An introduction to the physical characteristics of planet earth. The focus is on processes and interactions of the four components of the earth system: atmosphere, hydrosphere, lithosphere and biosphere. An understanding of the human impact on earth systems is also developed and maintained in perspective. Satellite information, aerial photography, maps, charts and other Geographic Information Systems technologies are used to study planet earth in this course. Meets Gen Ed 2002 - Natural/Physical Science Laboratory. Meets the 1983 General Education Requirement (GER) - Natural/Physical Science, Laboratory or Non-Laboratory Science. 4 sh.
Limits, continuity; derivative and differentiation; applications of the derivative, maxima, minima, and extreme considerations; antiderivatives; Riemann integral. Meets the 1983 General Education Requirement (GER) - Mathematics, Mathematics. 4 sh.
Prerequisites: MATH 111 or MATH 112 or placement through the Montclair State University Placement Test (MSUPT) or a satisfactory score on department's Calculus Readiness Test. (Students who did not satisfy the course prerequisite at MSU and students who received a grade of D-, D, or D+ in the prerequisite course taken at MSU are required to demonstrate competency on the department's Calculus Readiness Test.)
Riemann integral applications, transcendental functions, techniques of integration, improper integrals, L'Hospital's rule, infinite series. Meets the 1983 General Education Requirement (GER) - Mathematics, Mathematics. 4 sh.
Prerequisites: MATH 122.
Vector algebra; partial differentiation, and extreme considerations; polar, cylindrical, and spherical coordinates, multiple integration; introduction to line integrals. 4 sh.
Prerequisites: MATH 221.
A course in the theory and applications of ordinary differential equations which emphasizes qualitative aspects of the subject. Topics include analytic and numerical solution techniques for linear and nonlinear systems, graphical analysis, existence-uniqueness theory, bifurcation analysis, and advanced topics. Prerequisite: MATH 335. 4 sh.
Prerequisites: MATH 335.
This one-semester calculus-based course including laboratory is a study of the principles of physics and some applications to society's problems. Topics covered include mechanics, thermodynamics, fluids, and harmonic motion. Meets the 1983 General Education Requirement (GER) - Natural/Physical Science, Laboratory or Non-Laboratory Science. 4 sh.
Prerequisites: MATH 122 is prerequisite or co-requisite.
Calculus-based course. Study of some principles of physics and some applications to society's problems. Topics include: wave motion, sound and noise pollution, optics, electricity, lasers, nuclear theory, radiation, nuclear reactors, waste disposal. Meets the 1983 General Education Requirement (GER) - Natural/Physical Science, Laboratory or Non-Laboratory Science. 4 sh.
Prerequisites: MATH 221 is prerequisite or corequisite.
Classical mechanics: Kinematics, Newton's laws, impulse and momentum, statics, work and energy, oscillations, general motion, central force motion, non-inertial frames, system of particles, methods of handling data. 4 sh.
Prerequisites: PHYS 191.
Basic principles of electromagnetism: Coulomb's law and general techniques in electrostatics, currents and their associated magnetic field, electromagnetic induction and magnetic properties of materials. Foundations of Maxwell's equations (without detailed solutions). Laboratory experiments. 4 sh.
Prerequisites: PHYS 192. MATH 222 is a prerequisite or corequisite.
Application of physical laws to the earth as a planet; nature of the other planets; orbital motion and space flight; origin of the solar system; the birth, life and death of a star galactic structure; and cosmology. Meets the University Writing Requirement for PHAS and PHYS majors. 4 sh.
Prerequisites: PHYS 191, 192 or PHYS 193, 194.
Propagation of light, optical components, instruments and photometry. Interference, diffraction and polarization with elements of spectroscopy. (Offered alternate years.) Meets the University Writing Requirement for PHAS, PHPS, PHYE and PHYS majors. 4 sh.
Prerequisites: PHYS 240.
Observational techniques for the Moon, planets, satellites of other planets, asteroids, comets, stars, star clusters, and galaxies. 4 sh.
Prerequisites: PHYS 191, PHYS 192 or PHYS 193, PHYS 194.
Special relativity, kinetic theory of matter; quantization of electricity, light and energy; nuclear atom; elementary quantum mechanics and topics on solid state. (Offered alternate years.) 4 sh.
Prerequisites: PHYS 210, 240.
The laws of physics applied to planetary structure, stars and their evolution in time, the interstellar medium, galaxies, and large-scale structure of the universe. 3 sh.
Prerequisites: PHYS 191, 192 or PHYS 193, 194; PHYS 280; MATH 221. Prerequisite or corequisite: STAT 401.
Solution of a laboratory problem research in pure physics or in physics education. Written report required. (Not offered every year.) 1 - 4 sh.
Prerequisites: At least 16 credit hours of physics beyond PHYS 192.
Organizing, displaying, and describing data; designing experiments; methods for drawing conclusions from data; significance testing, confidence intervals, linear regression, analysis of variance, chi-square tests of independence. Examples from disciplines in the natural and physical sciences. Statistical software is used. Not for Mathematics and Computer Science majors. 3 sh.
Prerequisites: MATH 111 or Math 112.
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