Website: School of Theoretical and Applied Science
Convener:
Faculty:
The Engineering Physics major at Ramapo College is designed for students who like physics, have strong aptitude in it, and are interested and excited by the applied or engineering aspects of it. The Engineering Physics major is designed to offer students a broad theoretical and practical background providing a pivotal point for its graduates either to enter graduate school for further study and research or to pursue a professional career in private industry, government, or teaching.
Physics is known as the most fundamental of all sciences: it encompasses both the life sciences and the physical sciences. Physics is to the present what natural philosophy is to the past: it is at the root of every field of science. Engineering is the application of science in the design, construction, analysis of machines, processes or works for practical purposes. Engineering Physics is meant to provide a more thorough grounding in applied physics and it offers an unlimited scope of study and career opportunities in such areas as electronics, atomic, nuclear, and sub-nuclear physics, solid-state and low-temperature physics, optics, acoustics, relativity, quantum electronics, astrophysics, biophysics, and chemical physics, as well as a whole range of applied technology fields.
Advanced course offerings provide experience in electronics; mechanics, thermodynamics, electromagnetic theory and optics; relativity, atomic, and quantum theory; nuclear, sub-nuclear, and solid state physics; and computer science.
The faculty encourages and supports independent undergraduate research projects in computer studies, electronics, alternate energy sources and technologies, and optics. Facilities include well-equipped laboratories in electronics, advanced physics, computer science, instrumentation, optics, and a machine shop.
Majors in Engineering Physics are encouraged to take more than the minimum Requirements of the Major and to consider additional courses in microprocessors, computer modeling, energy system design, and mathematics, depending on their particular interests. There are also opportunities through cooperative education for students to gain credit and work experience in local industrial and research laboratories.
The major is offered by the School of Theoretical and Applied Science and leads to a B.S. degree.
Goal 1: Develop qualitative skills
Outcome 1: Develop an integrated conceptual understanding of engineering physics concepts and demonstrate knowledge of the topics taught including mechanics, thermodynamics, waves, electricity and magnetism, light and optics, and advanced physics.
Goal 2: Develop analytical / solving problem skills
Outcome 1: Develop analytical skills by demonstrating the ability of applying the acquired knowledge of the material to solve problems.
Goal 3: Develop interdisciplinary skills
Outcome 1: Apply acquired mathematical skills to solve engineering physics problems. Demonstrate proficiency in applying theoretical physics concepts to practical engineering applications.
Goal 4: Develop experiential laboratory / research skills
Outcome 1: Develop hands-on laboratory skills, including methods, data collection, error analysis, graphing and statistical methods.
Goal 5: Develop communication skills
Outcome 1: Write precise and concise scientific reports related to laboratory or research assignments. Display proficiency in providing an oral presentation of an engineering physics-related field.
Goal 6: Develop cultural integration of scientific disciplines
Outcome 1: Learn about History and current developments in the fields of Engineering Physics. Develop an adequate understanding of scientific progress, the evolution of technology and the role of science and technology in modern society.
- Transfer students who have 48 or more credits accepted at the time of transfer are waived from the courses marked with a (W) below. Waivers do not apply to Major Requirements.
- Double counting between General Education and Major may be possible. Check with your advisor to see if any apply.
- Writing Intensive Requirement (five courses): two writing intensive courses in the general education curriculum are required: Critical Reading and Writing II and Studies in the Arts and Humanities the other three courses are taken in the major.
- Not all courses are offered each semester. Please check the current Schedule of Classes for semester course offerings.
- The Career Pathways Program requirements must be completed prior to graduation. Visit the Cahill Career Center.
ENGINEERING PHYSICS MAJOR
- Subject & Course # – Title & Course Description
- GENERAL EDUCATION REQUIREMENTS
- REQUIRED – CRWT 102 - CRITICAL READING AND WRITING II
- SELECT ONE – INTD 101 - FIRST YEAR SEMINAR OR
- HNRS 101 - HONORS FIRST YEAR SEMINAR *
- SELECT ONE – AIID 201 - STUDIES IN THE ARTS & HUMANITIES OR (W)
- HNRS 201 - HONORS STUDIES IN THE ARTS & HUMANITIES *
- SELECT ONE – SOSC 110 - SOCIAL SCIENCE INQUIRY OR (W)
- HNRS 110 - HONORS SOCIAL SCIENCE INQUIRY *
- SELECT ONE – (W) - HISTORICAL PERSPECTIVES CATEGORY
- SELECT ONE – (W) - GLOBAL AWARENESS CATEGORY *
- SELECT ONE – - QUANTITATIVE REASONING CATEGORY (MATH121 Satisfies Major Requirement)
- SELECT ONE – - SCIENTIFIC REASONING CATEGORY
- SELECT TWO – DISTRIBUTION CATEGORY (One course must be outside of school)
- * Students in the College Honors Program must take the HNRS course options.
- ENGINEERING PHYSICS MAJOR REQUIREMENTS
- CMPS 147 - COMPUTER SCIENCE I
- MATH 121 - CALCULUS I (Satisfies General Education Quantitative Reasoning)
- MATH 122 - CALCULUS II
- MATH 225 - MULTIVARIABLE CALCULUS
- MATH 305 - DIFFERENTIAL EQUATIONS
- PHYS 117 - PHYSICS II WITH CALCULUS LEC
- PHYS 119L - INTRODUCTORY PHYSICS II LAB
- PHYS 214 - MODERN PHYSICS LECTURE
- PHYS 215 - MODERN PHYS TECH & MEASUREMENT
- PHYS 242 - ELECTRONIC CIRCUITS & DEVICES
- PHYS 322 - ADVANCED MECHANICS
- PHYS 323 - ELECTRODYNAMICS I
- PHYS 350 - THERMODYNAMICS
- PHYS 422 - CONDENSED MATTER AND NUCLEAR PHYSICS
- PHYS 423 - QUANTUM MECHANICS I
- PHYS 431 - EXPERIMENTAL METHODS IN PHYSICS
- SELECT THREE:
- PHYS 250 - INTRODUCTION TO LABVIEW
- PHYS 320 - MATERIAL SCIENCE
- PHYS 324 - ELECTRODYNAMICS II
- PHYS 330 - SEMICONDUCTORS & OPTOELECTRONIC DEVICES
- PHYS 345 - ASTRONOMY & ASTROPHYSICS I
- PHYS 346 - ASTRONOMY & ASTROPHYSICS II
- PHYS 390 - TOPICS
- PHYS 424 - QUANTUM MECHANICS II
- PHYS 425 - ADVANCED TOPICS
- PHYS 432 - PHOTONICS
- PHYS 435 - ADV EXP METH OPTICS/PHOTONICS
- PHYS 440 - ELECTRONIC, MAGNETIC & OPTICAL PROPERTIES OF MATERIALS
- CAREER PATHWAYS REQUIREMENTS
- Visit the Cahill Career Center
- PATH TS1 - CAREER PATHWAYS MODULE 1 FOR THEORETICAL & APPLIED SCIENCE
- PATH TS2 - CAREER PATHWAYS MODULE 2 FOR THEORETICAL & APPLIED SCIENCE
- PATH TS3 - CAREER PATHWAYS MODULE 3 FOR THEORETICAL & APPLIED SCIENCE
Note: A 2.0 GPA in the major is required for graduation.
- Courses fulfilling the requirements for the primary or second major may count towards the requirements of the minor, but may not exceed one-half of the credits required in the minor. That is, three of the five courses (lecture and lab co-requisites count as one course) required for a minor cannot be used towards fulfillment of major requirements. A School Core does not need to be completed for a minor. Minors are open to students regardless of school affiliation.
ENGINEERING PHYSICS MINOR
- Subject & Course # – Title & Course Description
- GENERAL EDUCATION REQUIRED COURSES
- PHYS 116 - PHYSICS I WITH CALCULUS LECTURE AND
- PHYS 118L - INTRODUCTORY PHYSICS I LAB
- REQUIRED COURSES:
- PHYS 117 - PHYSICS II WITH CALCULUS LEC AND
- PHYS 119L - INTRODUCTORY PHYSICS II LAB
- PHYS 214 - MODERN PHYSICS LECTURE
- PHYS 215 - MODERN PHYS TECH & MEASUREMENT
- ELECTIVES: SELECT ONE
- PHYS 242 - ELECTRONIC CIRCUITS & DEVICES
- PHYS 250 - INTRODUCTION TO LABVIEW
- PHYS 320 - MATERIAL SCIENCE
- PHYS 322 - ADVANCED MECHANICS
- PHYS 323 - ELECTRODYNAMICS I
- PHYS 330 - SEMICONDUCTORS & OPTOELECTRONIC DEVICES
- PHYS 350 - THERMODYNAMICS
- PHYS 390 - TOPICS
- PHYS 422 - CONDENSED MATTER AND NUCLEAR PHYSICS
- PHYS 423 - QUANTUM MECHANICS I
- PHYS 425 - ADVANCED TOPICS
- PHYS 426 -
- PHYS 431 - EXPERIMENTAL METHODS IN PHYSICS
- PHYS 432 - PHOTONICS
- PHYS 435 - ADV EXP METH OPTICS/PHOTONICS