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MEC 483 - Mechatronic System Metallurgy The metallurgy basics including: including heat treatment and Bachelor of equations, enhancing their ability
Design Concentration phase equilibria, kinetics of phase material strengthening processes. to interpret and solve complex
Credit Hours: 3 transformations and crystallography, MEC 478 - Phase Science in application problems.
will be discussed to design the
Prerequisite: MEC 482 microstructures of metals. The Transformations in Metals and CSC 201 - Computer
MEC 474 - Fracture & Fatigue Alloys Biomedical Programming I
This course is an introduction to Control in Design effect of different parameters
Mechatronics, or the interfacing of Credit Hours: 3 and processes on the resulted Credit Hours: 3 Engineering Credit Hours: 3
mechanical and electrical systems. Prerequisite: MEC 430 microstructure will be introduced, Prerequisite: MEC300, MEC320, Prerequisite: MTT 101 or Higher
Focus is on embedded controllers Co-requisite: MEC 430, MEC 465 including heat treatment and MEC475
and their programming, power and This is a foundation course in material strengthening processes. The main objective of this course is to
interfacing electronics, actuators, the area of fracture and fatigue MEC 476 - Heat Treatment and This course aims to provide provide students with the logic and
sensors, and integration of these considerations in mechanical Surface Hardening students with understanding of Degree Requirements tools required to develop scientific
components to create a complete design. The course provides unified the thermodynamics of phase software programs in MATLAB.
functional mechatronic system. treatment for the failure analysis of Credit Hours: 3 transformations, mechanisms and MATLAB is a matrix-based language
that is commonly used for scientific
kinetics of phase transformations
MEC 484 - Artificial Intelligence mechanical components subjected Prerequisite: MEC301, MEC475 and its use to control microstructure, ECS 100 - Introduction to and engineering computing. MATLAB
in Mechatronics to monotonic and cyclic loading. This course introduces the students solidification; nucleation and growth; Engineering and Computing has a rich set of toolboxes for a wide
Credit Hours: 3 Design based on fracture mechanics to the basic heat treatment microstructural changes in the solid Credit Hours: 3 range of applications in science
is introduced and various fracture
processes for metals and alloys.
and engineering. The material for
Prerequisite: MEC 482, CSC 201, mechanics measures are discussed. The course includes the time- state and atom diffusion in solids. Prerequisite: No Prerequisite this course includes: Introduction
The course formulates the effects
GEN 101 Fatigue crack initiation (FCI) and temperature sequence and with of temperature and diffusion on the This course provides an introductory to MATLAB Programming concepts,
This course aims to provide students fatigue crack propagation (FCP) are applying mechanical forces to transformation and its impact on the general overview of electrical Control Structures (loops and
discussed. The course highlights
with the theory and applications of generate the application oriented resulting microstructure of metals engineering, biomedical engineering, conditions), Functions, Arrays and
AI in Mechatronics and robotics. The practical and analytical aspects micro-structure of the alloys. The and alloys. ,computer engineering, AI and Object-Oriented programming.
course covers intelligent mechatronic of fatigue failure in mechanical control of the microstructure enables robotics engineering fields. The
components and the concept
system requirements ad locomotion, the generation of the desired course aims to introduce students CSC 201 - Computer
sensing, navigation and motion of remaining life of mechanical properties. This principle lies strongly to: these fields as professions, IEEE Programming I
components. The course is
planning. Students will learn to on the basics of thermodynamics and codes of ethics, engineering design Credit Hours: 3
select parameters and strategies to aimed at giving student the basic kinetics of phase transformations concepts, project management, Prerequisite: MTT 101 or Higher
design intelligent controllers based techniques for designing mechanical in metals and alloys, which is the challenges in teamwork, laboratory
components based on fracture
on application requirement. Students guiding factor for deciding process health and safety procedures, data The main objective of this course is to
will learn to apply basic search and fatigue considerations and for schedule in Industry analysis and report writing. The provide students with the logic and
developing expertise in the area of
algorithms. course also introduces software tools required to develop scientific
enhancing fatigue life of engineering MEC 477 - Corrosion and tools used in later courses. Upon
MEC 485 - DCS and SCADA components. The use of commercial Degradation of Materials successful completion of this course, software programs in MATLAB.
MATLAB is a matrix based language
Credit Hours: 3 program in a project type of work Credit Hours: 3 students will have a good foundation that is commonly used for scientific
will be employed and ethical and
Prerequisite: MEC 482 autonomous learning techniques will Prerequisite: MEC301, MEC320 of knowledge which helps them in and engineering computing. MATLAB
their later courses.
Co-requisite: MEC 451 be considered throughout the course This course introduces the students has a rich set of toolboxes for a wide
range of applications in science
where relevant. to differentiate between different MTT 200 - Calculus II
This course DCS (Distributed Control material classes based on their and engineering. The material for
Systems) and SCADA (Supervisory MEC 475 - Microstructure structural and mechanical properties. Credit Hours: 3 this course includes: Introduction
Control and Data Acquisition) focus Engineering The course will also introduce Prerequisite: MTT 102 to Matlab Programming concepts,
on understanding and implementing Credit Hours: 3 students to the production of The Calculus II course extends the Control Structures (loops and
industrial networks in process metallurgical products, focusing conditions), Functions, Arrays and
automation. This includes industrial Prerequisite: MEC 300, MEC 301 on process design models principles introduced in Calculus I, Object-Oriented programming.
aiming to deepen understanding and
control networks, instrumentation This course introduces the students used to describe solidification,
and process control bus and to differentiate between different recrystallization, and precipitation. expand applications. Beginning with PHY 102 - Physics and
network standards, SCADA and DCS, material classes based on their The metallurgy basics including: a review of foundational functions Engineering Applications I
from Calculus I, students will
and essentials of human-machine structural and mechanical properties. phase equilibria, kinetics of phase Credit Hours: 3
interface (HMI) panels connection, The course will also introduce transformations and crystallography, progress to explore Transcendental
Functions, Integration Techniques,
programming, and modification of students to the production of will be discussed to design the Prerequisite: MTT 102
programs and features. Infinite Series, and Power Series.
metallurgical products, focusing microstructures of metals. The Through practical problem-solving The course aim is to provide
on process design models effect of different parameters exercises, students will refine engineering and computer science
used to describe solidification, and processes on the resulted their skills in translating real- students with clear understanding
recrystallization, and precipitation. microstructure will be introduced, world scenarios into mathematical of the basic concepts of physics.
Abu Dhabi University | Undergraduate Catalog 2026 - 2027 Abu Dhabi University | Undergraduate Catalog 2026 - 2027

