Bachelor of Science in Applied Physics

BScUndergraduateNatural Sciences

About This Programme

The BS in Applied Physics is designed in accordance with the mission and vision of the University of Sharjah and the College of Sciences to meet the needs of the students, the basic sciences community, and the UAE society at large. Quality and excellence in both the curriculum and instructional pedagogy are ensured by following high standard performance criteria. A student enrolled in this program must complete a total of 123 credit hours.

Course Highlights

  • 123 credit hours
  • Taught in English
  • College of Sciences
  • Study system: Courses
  • Full-time study

What You'll Study

BS in Applied Physics (123 crs) Credit hours (programme page): • University Requirements (UR): 18 mandatory, 6 elective; 24 in total • College Requirements (CR): 15 mandatory, 6 elective; 21 in total • Program Requirements (PR): 44 mandatory, 24 elective, 10 supporting; 78 in total • Total: 74 mandatory, 39 elective, 10 supporting; 123 The table’s Total column gives 74 mandatory and 39 elective credits; its UR, CR and PR columns add up to 77 and 36. Program Requirements: The program requirements consist of 78 credit hours of courses divided into four major sets as described below. The page describes three sets: mandatory core courses (44 credit hours), support courses (10 credit hours) and elective courses (24 credit hours).

College Requirements: mandatory courses (15 credit hours)

Every student in the College of Sciences irrespective of specialization is required to take the 15 credit hours of mandatory courses listed below:

  • 1411115Programming I4 credits
  • 1430110Physics 1 for sciences3 credits (3-0:3)

    Prerequisite: 1440131

    Motion in 1 and 2 dimensions, vectors, particle dynamics and Newton’s laws, work and energy, momentum and collisions, rotation of rigid bodies, fluid mechanics, heat and thermodynamics. Pre/Co-requisite: 1440131

  • 1430116Physics 1 Lab1 credit (0-3:1)

    Prerequisite: Pre/Co: 1430110 or 1430115

    10 experiments in mechanics, covering the topics in the Physics 1 course. Pre/Co-requisite: 1430110 or 1430115

  • 1420101General Chemistry I3 credits
  • 1420102General Chemistry I Lab1 credit

    Prerequisite: Pre/Co: 1420101

  • 1440131Calculus I3 credits

College Requirements: elective courses (6 credit hours)

The student must choose 6 credit hours outside the Department upon the approval of the academic advisor. The two elective courses are to be chosen from the table below.

  • 0202207Technical Writing3 credits

    Prerequisite: 0202112

  • 1450101General Biology I3 credits
  • 1440181Statistics for Science3 credits
  • 1440182Statistics for Science Lab1 credit

    Prerequisite: 1440181

Program Requirements: mandatory core courses (44 credit hours)

This set consists of 44 credit hours encompassing the courses listed below.

  • 1430100Physics Orientation1 credit (1-0:1)

    A series of lectures on physics history, physical concepts, different fields of physics, physics-related careers, and the applied physics program and facilities at the University of Sharjah. Prerequisite: None

  • 1430117Physics 23 credits (3-0:3)

    Prerequisite: Pre/Co: 1430110 or 1430115 1440131 or 1440133

    Charge and matter; electric field; Gauss’ law; electric potential; capacitors and dielectrics; current and resistance; electromotive force and circuits; magnetic field and forces; Ampere’s law; Faraday’s law of induction; introduction to Maxwell’s equations. Prerequisite: 1430110 or 1430115; Pre/Co-requisite: 1440131 or 1440133

  • 1430118Physics 2 Lab1 credit (0-3:1)

    Prerequisite: Pre/Co: 1430116, 1430117

    10 experiments in electricity and magnetism, covering topics in the Physics II course. Prerequisite: 1430116; Pre/Co-requisite: 1430117

  • 1430221Classical Mechanics3 credits (3-0:3)

    Prerequisite: 1430110 or 1430115; 1430251

    Newtonian mechanics of particles and systems, conservation laws, oscillations, Lagrangian mechanics, central force, motion in non-inertial frames, and motion of rigid bodies. Prerequisite: 1430110 or 1430115 and 1430251

  • 1430241Modern Physics4 credits (3-3:4)

    Prerequisite: 1430117; 1430118

    Special theory of relativity and relativistic mechanics; photons; x-rays and the Compton effect; the Bohr model of hydrogen; de Broglie wavelength of matter and wave packet description of particles; Schrödinger wave equation in one dimension; energy quantization; the Spin and many-electron atoms; elements of nuclear physics and elementary particles. It includes 12 experiments covering the topics above. Prerequisite: 1430117 and 1430118

  • 1430251Mathematical Methods of Physics 13 credits (3-0:3)

    Prerequisite: 1430110 or 1430115; 1440131 or 1440133

    Infinite series, complex numbers, linear equations, vectors and vector analysis, matrices and matrix transformation, partial differentiation, multiple integrals, and vector spaces. Prerequisite: 1440131 or 1440133 and 1430110 or 1430115

  • 1430252Mathematical Methods of Physics 23 credits (3-0:3)

    Prerequisite: 1430251

    Tensor analysis, Calculus of variations, special functions, integral transforms, series solutions of differential equations, Partial Differential equations, complex variable theory. Prerequisite: 1430251

  • 1430323Quantum Mechanics 13 credits (3-0:3)

    Prerequisite: 1440241; 1430251

    Schrodinger’s equation; the correspondence principle; the uncertainty principle; 1- potentials; the harmonic oscillator; the hydrogen atom; elements of matrix mechanics; operators; angular momentum. Prerequisites: 1430241 and 1430251

  • 1430324Quantum Mechanics 23 credits (3-0:3)

    Prerequisite: 1430323

    Orbital angular momentum, radial wave function in three dimensions, eigenstates, commutation relations of the spin angular momentum operator, interaction of spin with angular momentum, behavior of electrons in a magnetic field, perturbation theory, approximation methods for time-dependent problems. Prerequisite: 140323

  • 1430331Electricity and Magnetism 13 credits (3-0:3)

    Prerequisite: 1430117; 1430251

    Electrostatics: Poisson’s equation; energy in the electric field; electrostatics of materials; Magnetostatics: Vector potential; energy in the magnetic field; magneto-statics of materials; Faraday’s law; inductance; solutions to the Laplace equation; Maxwell equations. Prerequisite: 1430117 and 1430251

  • 1430332Electricity and Magnetism 22 credits (2-0:0)

    Prerequisite: 1340331

    Electromagnetic induction, electromagnetic wave propagation, absorption and dispersion in conductors and dielectrics, EM wave transmission, potentials and fields, EM radiation. Prerequisite: 1430331

  • 1430333Electronics for Experimental Physics 14 credits (3-3:4)

    Prerequisite: 1430118

    Linear circuit theory; diodes and power supplies; transducers; analog integrated circuits: including filters and operational amplifiers; digital integrated circuits including: basic gates; combinational and sequential logic; storage elements; timing elements; arithmetic devices; digital-to-analog and analog-to-digital conversion. It includes 12 experiments covering the topics mentioned above. Prerequisite: 1430118

  • 1430353Computational Physics3 credits (2-3:3)

    Prerequisite: 1411116; 1430241

    Techniques in the use of personal computers in physics including: numerical modeling and integration, processing of large data sets; experience in the use of statistical techniques to analyze data and to model physical events; the use of mathematical packages. Laboratory: hands-on experience in the use of PCs in solving physics problems. Prerequisite: Third Year Standing Prerequisite: 1430241 and 141116

  • 1430471Advanced Physics Lab3 credits (0-6:2)

    Prerequisite: 1430241; 1430333

    Zeeman effect, UV spectroscopy, optical spectroscopy, ionizing radiation, crystal structure, gamma spectroscopy, elastic properties of materials, absolute radioactivity, thermal properties of materials, measuring blood speed by Doppler ultrasound, radiation Pollution. Prerequisite: 1430333 and 1430241

  • 1430472Instrumentation and Control3 credits (1-4:3)

    Prerequisite: 1430333

    Instrumentation methodology and sensors; fundamentals of pressure, temperature, level, and flow systems; pneumatic, mechanical, and electronic digital transducers; calibration and basic maintenance of industrial instrumentation equipment; training on the use of graphical software systems for developing high-performance scientific and engineering applications such as Lab VIEW or Test Point which acquire data and control devices via IEEE-488 (GPIB), RS-232/422 and modular (CAMAC) instruments as well as plug-in I/O boards. Prerequisite: 1430333

  • 1430491Senior Project3 credits (0-6:3)

    Prerequisite: Department consent

    Under the supervision of a faculty member, the student gets involved in a project and writes a report about a topic approved by the department, and defends it publicly. Prerequisite: Department consent

The listed credits add up to 45 credit hours against the 44 stated; the course description gives Advanced Physics Lab 2 credit hours (0-6:2) where the list gives 3, and prints Electricity and Magnetism 2 as (2-0:0). The list’s prerequisite codes 1440241 (Quantum Mechanics 1) and 1340331 (Electricity and Magnetism 2) appear in the descriptions as 1430241 and 1430331; the descriptions of Quantum Mechanics 2 and Computational Physics print 140323 and 141116.

Program Requirements: support courses (10 credit hours)

This category includes 10 credit hours of Mathematics and Chemistry courses as indicated in the table below.

  • 1440261Differential Equations for Engineers3 credits
  • 1440161Calculus II for Engineers3 credits

    Prerequisite: 1440131

  • 1420103General Chemistry II3 credits

    Prerequisite: 0215102

  • 1420104General Chemistry II Lab1 credit

    Prerequisite: Pre/Co 0215103

Program Requirements: elective courses (24 credit hours)

Depending on the student interests and/or his/her future job prospects, the student selects in the senior year 24 credit hours from the following set of courses:

  • 1430201Fundamentals of Astronomy Space Science3 credits (3-0:3)

    Prerequisite: 1430110 or 1430115

    The course discusses astronomy in general and space science in particular with emphasis on using physics to interpret the motions involved in the universe (planets, stars, and galaxies) as well as the tools and methods used to observe the sky. Prerequisite: 1430110 or 1430115

  • 1430202Celestial Mechanics3 credits (3-0:3)

    Prerequisite: 1430110 or 1430115

    This course treats Newtonian gravitation - how it manifests itself, how to calculate its effect on a variety of objects (artificial and natural satellites, planets, and stars), and how to utilize passive or active radar data to predict the future locations and velocities of such objects. It discusses Newton’s Laws of motion and law of gravitation as applied to system of particles; motion in the gravitation field with an especially full discussion of the two body problem; coordinates systems and time systems; data reduction; initial orbit determination; the differential correction of orbits, and perturbation theory. Astrophysical applications of classical gravitation to binary stars, clusters of stars, and clusters of galaxies. Prerequisite: 1430110 or 1430115

  • 1430211Physics 33 credits (3-0:3)

    Prerequisite: 1430117

    Rotation of rigid bodies, Dynamics of Rotational motion, Equilibrium and Elasticity, Periodic Motion, Fluid Mechanics, Mechanical Waves, Sound and Hearing, Thermal properties of Matter, introduction to the First and 2nd law of thermodynamics. Prerequisite: 1430117

  • 1430212Physics 3 Lab1 credit (0-3:1)

    Prerequisite: 1430118; 1430211

    5-8 selected experiments on the topics mentioned in the description of the theoretical part of physics 3. Prerequisite: 1430118; Pre/Co-requisite: 1430211

  • 1430261Thermodynamics3 credits (3-0:3)

    Prerequisite: 1430110 or 1430115

    Entropy and the chemical potential, independent variables and state functions, basic energy concepts first and second laws of thermodynamics; ideal and real gases; thermodynamic properties; introductory cycle analysis. Prerequisite: 1430110 or 1430115

  • 1430301Astrophysics 1 (Stars)3 credits (3-0:3)

    Prerequisite: 1430201

    Astrophysics is the application of physics to understand and interpret the art of observation and the measurement side of astronomy. This course will help tie astronomy to the different physics concepts that the student has experienced as a physics student. The main goal of this course is to help the students see that astrophysics is not just a high technology research branch, but as part of everyday living. Prerequisite: 1430201

  • 1430302Astronomical Techniques3 credits (3-0:3)

    Prerequisite: 1430201

    This course provides a comprehensive and accessible introduction to the whole of modern astrophysics beyond the solar system. It combines a critical account of observational methods (telescopes and instrumentation) with a clear description of the Universe, including stars, galaxies and cosmology. The course describes the techniques used by astronomers to observe the Universe: optical telescopes and instruments are discussed in detail, but observations at all wavelengths (from gamma rays to radio) are covered, and there are sections on cosmic rays, neutrinos and gravitation waves. After a short interlude describing the appearance of the sky at all wavelengths, the role of positional astronomy is highlighted. Student will learn here the quantitative aspects of the electromagnetic spectrum, atmospheric absorption, celestial coordinate systems, the motions of celestial objects, eclipses, calendar and time systems, telescopes in all wavebands, speckle interferometry and adaptive optics to overcome atmospheric jitter, astronomical detectors including CCDs, interferometry to improve angular resolution, radiation from point and extended sources, the determination of masses, temperatures, and distance of celestial objects. Moreover, a clear description is given to the contents of the Universe, including accounts of stellar evolution and cosmological models. In addition to all of this, the student will utilize methods for data reduction and statistical analysis. Prerequisite: 1430201

  • 1430361Modern Optics3 credits (3-0:3)

    Prerequisite: 1430211

    Physical optics with major emphasis on wave properties of light; boundary conditions; dispersion; optics of thin films; interference; diffraction; polarization; lasers; holography; Fourier analysis. Prerequisite: 1430211

  • 1430362Thermal Physics3 credits (3-0:3)

    Prerequisite: 1430211; 1430241

    Equations of state; the first law of thermodynamics; heat engines and refrigerators; entropy and the second law of thermodynamics; phase equilibrium; kinetic theory; equipartition theory; transport phenomena; introduction to statistical mechanics including quantum statistics; applications to black body radiation, crystalline vibrations, magnetic ions in solids, electronic heat capacity of metals, phase transformations and chemical reactions. Prerequisite: 1430211 and 1430241

  • 1430401Astrophysics 2 (Galaxies and the Universe)3 credits (3-0:3)

    Prerequisite: 1430301

    The course will focus on the physical properties of the planets to infer their origin and evolution. It first takes a comparative look at our current knowledge of the planets, especially our Earth, moon, as well as Mercury, Venus, and Mars. We will examine here the composition and internal structure of the terrestrial planets and describe the major surface-shaping processes: planetary volcanism, impact cratering and wind processes. The atmosphere of the terrestrial planets is considered in detail, and this leads naturally to a discussion of the giant planets and why they are compositionally different from the planets of the inner Solar System. Description is given of the origin of the Solar System and the evolution of the planets, and places our own planet Earth within the context of other, more distant worlds. Minor bodies, including comets, asteroids and Kuiper Belt objects, are described, and the course concludes with an examination of theories for the origin of the Solar System and the evidence that has come from meteorites. Prerequisite: 1430301

  • 1430433Electronic for Experimental Physics 23 credits (3-0:3)

    Prerequisite: 1430333

    Introduction to the electronic theory of semiconductors, semiconductors in equilibrium, the ideal p-n junction, non-idealities, photo diodes, LEDs, semiconductor lasers, metal-semiconductor contacts, heterojunctions, JFET, MOST, small signal parameters, switching, and Thyristors. Prerequisite: 1430333

  • 1430441Solid State Physics3 credits (3-0:3)

    Prerequisite: 1430323

    Introduction to atomic structure and bonding in solids; reciprocal lattice and x-ray crystallography; phonons and crystal vibrations; phonons and thermal properties; classical free electron behavior of metals; energy bands in metals, semiconductors and insulators. Pre-requisite: 1430323

  • 1430442Introduction to Radiation Physics Dosimetry3 credits (3-0:3)

    Prerequisite: 1430241

    Radiation from accelerated charges; characteristics and quality of X-rays; attenuation of photon beams in matter; interactions of photons with matter; interaction of charged particle beams with matter; concepts of dosimetry; radiation spectrometry. Prerequisite: 1430241

  • 1430443Nuclear Physics3 credits (3-0:3)

    Prerequisite: 1430323

    Basic properties and structure of atomic nuclei, introduction to nuclear models, nuclear reactions, decay and stability, the four basic interaction - strong, electromagnetic, weak and gravitational, properties of - baryons, mesons, quarks, and leptons -, conservation laws, symmetries and broken symmetries, the standard model, experimental techniques. Prerequisite: 1430323

  • 1430481Fundamentals of Environmental Physics3 credits (3-0:3)

    Prerequisite: 1430241

    Relationship of physics to current environmental problems; energy production, comparison of sources and byproducts; nature of and possible solutions to problems of various pollutions particularly matter in atmosphere; radiation physics; the climate; spectroscopy and instrumentation. Prerequisite: 1430241

  • 1430482Physics of Materials3 credits (3-0:3)

    Prerequisite: 1430261; 1430323

    Advanced topics in elasticity, viscous flow, reaction kinetics, thermal properties, heat transfer, mechanical properties and optical properties of materials. Prerequisite: 1430261 and 1430323

  • 1430483Health Physics3 credits (3-0:3)

    Prerequisite: 1430241

    Sources of radiation, basic dosimetry and hazards of ionizing radiation. Techniques for detection, use and safe handling of radiation sources. Radiation safety codes laws and regulations. Prerequisite: 1430241

  • 1430484Intro to Medical Imaging3 credits (2-3:3)

    Prerequisite: 1430241

    Fundamentals of image formation, analysis of the characteristics of medical images, parametric description of image quality, application to transmission of radiotherapy. Prerequisite: 1430241

  • 1430485Physics of Energy Resources3 credits (3-0:3)

    Prerequisite: 1430241

    Energy and environment; the economics of energy; traditional energy sources: fossil fuels; nuclear energy; sustainable and renewable energy; wind and solar power systems; hydroelectric and geothermal energy; energy storage and transportation. Prerequisite: 1430241

  • 1430486Photonics and Fiber Optics3 credits (3-0:3)

    Prerequisite: 1430241; 1430361

    Models of light, optical fiber basics, optical fiber manufacture, incoherent light sources, laser light, light detectors, detector circuit and modulation, fiber optics transmitters and receivers, fiber optics telecommunications, interferometric fiber optic sensors. Prerequisite: 1430241 and 1430361

  • 1430487Radiation Biology3 credits (3-0:3)

    Prerequisite: 1430241

    Basic radiation physics, track structure, radiation chemistry, DNA damage and repair, cell survival curves, the 4R’s of radiology, radiation therapy, radiation effects, radiation protection. Prerequisite: 1430241

  • 1430488Meteorology3 credits (3-0:3)

    Prerequisite: 1430241; 1430481

    Fundamental concepts, earth and the atmosphere, warming the earth, daily and seasonal temperatures, atmospheric optics, atmospheric moisture, condensation, stability and cloud, precipitation, motion of the atmosphere, winds, air masses and fronts, cyclones, thunderstorms, tornadoes, hurricanes, air pollution, global climate and its changes, weather forecasting. Prerequisite: 1430241 and 1430481

  • 1430489Introduction to Spectroscopy3 credits (3-0:3)

    Prerequisite: 1430323; 1430361

    Electromagnetic radiation and its interaction with atoms and molecules; experimental methods; molecular symmetry; rotational, vibrational and electronic spectroscopy; photoelectron and related spectroscopies; lasers and laser spectroscopy. Prerequisite: 1430361 and 1430323

The course descriptions title five of these courses slightly differently: Fundamentals of Astronomy & Space Science, Introduction to Radiation Physics and Dosimetry, Electronics for Experimental Physics 2, Environmental Physics and Introduction to Medical Imaging.

Other courses described on the programme page

The programme page also describes these courses, which are not part of this degree’s course lists.

  • 1430281Physics for Medical Imaging4 credits (3-1:4)

    Energy and matter (the relation between them) temperature and heat, charge and electric field, electrical potential, capacitors and dielectrics, current and resistance, electromotive force and circuits, magnetism and electromagnetism, electromagnetic induction, thermoionic emission, x-ray tube, electromagnetic radiation, electromagnetic spectrum, x-ray and gamma ray interaction with matter, radiation safety and dosimetry. Various experiments covering the topics mentioned in physics for medical imaging course such as surface tension, magnetic fields, geometrical optics, oscilloscope, capacitors, the speed of light, the photo-electric effect, thermal radiation, specific charge of the electron, spectrum of the Hydrogen atom, Frank-Hertz experiment, and nuclear radiation measurements. Prerequisites: 1430107 or 1430111 and 1430112

  • 1430283Physics for Dentistry4 credits (3-3:4)

    The course covers physics topics related to dental applications. These include biomechanics of the jaw, light and optics, atomic structure, spectra, radioactivity, x-rays (generation, safety and protection), bioelectricity, lasers, imaging, waves and ultrasound. Prerequisite: 1430107 or 1430111 and 1430110 or 1430115

What You'll Learn

Upon the successful completion of the program, students should be able to: • Identify, formulate, and solve broadly defined technical or scientific problems by applying knowledge of mathematics and science and/or technical topics to areas relevant to the discipline. • Formulate or design a system, process, procedure or program to meet desired needs. • Develop and conduct experiments or test hypotheses, analyze and interpret data and use scientific judgment to draw conclusions. • Integrate the impact of technical and/or scientific physics solutions in a global, economic, environmental, and societal context. • Communicate effectively with a range of audiences. • Determine ethical and professional responsibilities related Physics applications. • Function effectively on teams that establish goals, plan tasks, meet deadlines, and analyze risk and uncertainty.

Entry Requirements

Academic: Admission requirements for this programme (Undergraduate Admissions page): • High school average: 70% for Advanced & General tracks. • Subject grades in the high school certificate: 70% in Mathematics and one science subject (Biology, Chemistry, or Physics) for General Track students. • Applicants must have achieved at least 70% (Elite, Advanced, or Scientific, General track) to be admitted to the College of Sciences and College of Computing and Informatics (Computer Science, Information Technology-Multimedia, and Biomedical Informatics). The high school grades mentioned are those of the UAE educational curriculum (Advanced Track) or their equivalents as per the framework approved by the Ministry of Education. Students who did not achieve the required subjects grades in high school will be accepted conditionally and will have to register and pass alternative qualifying courses at the university, which is equivalent to zero credit hours and is not included in the calculation of the cumulative average. The University of Sharjah accepts students who are academically qualified and behaviorally distinguished, regardless of their nationality, color, religion, or disability. All applicants must satisfy the following basic admission requirements: • Completion of secondary education or an equivalent level with the required average attained no earlier than three years prior to joining the University. Applicants to the College of Medicine and Dental Medicine need to have finished their secondary education no more than one year previously. • The applicant should not have been expelled from the UoS or any other institution for academic or disciplinary reasons. • The applicant should be medically, physically, and mentally fit, and must provide evidence of immunization against major blood-borne viral infections in accordance with the requirements for their major. • Applicants should indicate their order of preference for majors on the application form. • Admitted students are allocated to the University's colleges within the limits of the approved number of seats for each college, based on the capacity of each program. This is done according to their preferences and their grades. Admission to the University of Sharjah is competitive, with priority given to citizens of the UAE and students with high secondary school grades. • Applicants should complete and submit the application form and required documents to the Admissions Department by the stated deadlines, and pay the application fee of AED 360. • Meeting the secondary education grade requirements, fulfilling other admission requirements, submitting the application, paying the application fee, and receiving an ID number does not guarantee admission to the University. Students are required to pay a reservation fee after meeting specific criteria on a competitive basis, in accordance with University policy. Student reservation fees are nonrefundable if the student withdraws or does not enroll in the University, and are applied toward tuition fees if the student enrolls in their program. • Applicants to the Colleges of Medicine and Dental Medicine pay a 1500 AED fee for their applications to be considered as part of the admissions competitive process. This fee is non-refundable if the applicant is rejected or withdraws from the university. • Applicants who are still enrolled in secondary school will receive conditional admission until their final results are submitted. Meeting the required conditions and the minimum grade based on competitive standards is mandatory. • Students accepted conditionally will be given a specific period of time according to the related undertaking, and they must fulfill the conditional admission requirements to continue studying at the university. • Professional diploma Certifications are not acceptable for admission into undergraduate programs. Admission Regulations and Academic Qualification Requirements: • The grade averages stated above represent the minimum requirements for admission to the University. Please note that students meeting the above average requirements are not guaranteed admission but are subject to the University's approved competitive admission regulations and standards. Conditional Admission and Remedial Courses: • Failure to Meet the Minimum Required Grades in Qualifying Secondary School Subjects: Students who do not satisfy the minimum grade requirements in the qualifying secondary school subjects may be granted conditional admission. Such students will be required to complete equivalent remedial courses during their first semester of study. These courses carry zero credit hours and are not included in the calculation of the cumulative GPA. Successful completion of the remedial courses is required in accordance with University regulations. • Opportunity to Repeat Remedial Courses: Students who fail a remedial course on their first attempt will be granted one additional opportunity to repeat and pass the course. • Continuation in the Academic Program: Students who fail to successfully complete the required remedial course(s) after exhausting the permitted repeat opportunity will not be allowed to continue in their current academic program and must transfer to another program that does not require the relevant qualifying subjects. • Exception - Colleges of Medicine and Dentistry: Applicants to the Colleges of Medicine and Dentistry must fully satisfy all qualifying subject grade requirements for direct and final admission. Conditional admission and remedial courses are not permitted under any circumstances.
English: Required English test for this programme: 5.5 in IELTS Academic, 61 in TOEFL (IBT), 500 in TOEFL (ITP) or its equivalent. Upon admission to UoS and prior to course registration, all students admitted to UoS (new, transfer and bridging) must demonstrate a level of English proficiency consistent with the requirement of their college. The certificate must be submitted to the Admission department through their Admission Services Portal to be reviewed and approved by the English Language Center at the UoS. Accepted tests: • IELTS (Academic): accepted from any country; accepted from IDP and British Council; UKVI version accepted; computer and paper based accepted; Home Edition not accepted. • TOEFL iBT: accepted; Home Edition not accepted. • TOEFL ITP: accepted only if taken at the University of Sharjah (UOS), AMIDEAST Dubai (Head Office) or AMIDEAST Abu Dhabi (Head Office). • PTE Academic: accepted; Home Edition not accepted. Important notes: • English proficiency test Certificates older than two years are not accepted. • Students who achieve a score of 5.5 in the IELTS test are exempted from remedial skill courses. • Students who couldn't obtain the required score in any of the above listed English Proficiency tests will be enrolled in an "Intensive English Program" course, in which their English level will be determined by the result of their English proficiency test. All students are placed in the Intensive English program with a recognized Language qualification. • The UoS reserves the right to require students to attend an interview in the Languages Institute. Students may be required to take a further in-house test to ensure their scores are consistent with their English Language proficiency.

Careers

Graduates of our Applied Physics program find diverse employment avenues. Physics graduates can explore opportunities in hospitals, environmental agencies, industrial and medical labs, energy and water resource corporations, military and police sectors, as well as the oil and gas industries. Additionally, they can contribute to communications and work in sales and research centers. Furthermore, graduates from the Education and Applied Physics program can take up roles in teaching, educational supervision, and administrative supervision, contributing to the education sector.

Accreditation & Professional Recognition

Accredited by the Accreditation Board for Engineering and Technology (ABET).

Programme Details

Award

BSc

Start Date

Fall and Spring

Duration

4 Years

Qualification

BSc

Subject Area

Natural Sciences

Study Pattern

Full time

Tuition Fee

AED 59,140/yr

Apply online through the University of Sharjah admissions portal. The undergraduate application fee is AED 360 and is non-refundable; applicants to the Colleges of Medicine and Dental Medicine pay AED 1,500 to be considered in the competitive process.

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