Specialization guide

Industrial Engineering

Academic college

Start with common courses, then explore related university programs. Study plans vary by university.

10 coursescourses in the specialization guide
0 programsprograms in the university directory

Common courses in this specialization

These courses help you understand what you may study. Check the official university plan before deciding.

Specialization guide

Probability and statistics for engineers

Axioms of probability theory. Events. Conditional probability. Bayes' theorem. Random variables. Sports predictions. Discrete and continuous random density couplings. Transform variables. Probit models, statistics, and elements of hypothesis testing (sampling distributions and interval estimation). Introduction to statistical quality control. Engineering applications

Electronic circuits

Review of circuit elements and variables, resistor circuit analysis techniques. Simple circuit analysis techniques (RL), RC, (RLC). Basics of PN diode, light emitting diode and transistor (BJT, FET). Analysis of direct and alternating current circuits for diodes (PN) and transistors (BJT, FET) and their applications. Operational amplifier circuits and applications. Fundamentals of digital electronics

Thermodynamics and heat transfer

In this course, the principles of energy transformations and different methods of heat transfer are studied. The interrelated processes between energy and heat, the transformations between them, and the methods of heat transfer are studied. The course introduces the basic laws of thermodynamics, heat transfer, and the equations that govern them. These laws are then used to solve engineering problems based on real-life examples including thermodynamics and heat transfer. The course covers the first and second laws of thermodynamics: their processes, properties, flow processes, converting heat into work, conduction, convection, radiation, and heat exchangers.

Engineering drawing

Introduction to engineering drawing. Drawing tools. Dimensions. Geometric space and its representation methods. The second dimension and the third dimension. Multi-dimensional display and its use in industrial product design and development. Orthographic drawing and its projections. Pictorial drawing. Applications using AUTOCAD. Prerequisite: none.

Measurements

This course includes the principles of engineering measurement machines and methods. It includes topics of linear and angular measurements, the existence of measurements, characteristics and rotation measurement, the principles of electrical measurements and tools for sensing pressure and flow, heat, force and moments and measuring elongation as well as measuring practical results, analyses, and measuring errors.

Engineering workshops

Introduction, engineering materials and their properties, casting processes, forming processes, marking and measuring tools, carpentry, mechanization, connection materials (bolts, welding), introduction to electrical workshops and their requirements. Definition of electric shock, prevention of electric shock, first aid for electric shock and burns. Low voltage electrical cables. Fuses and circuit breakers, checking the electrical connection, principles of the automobile electrical system (batteries, ignition, starter motor, generators and voltage regulators).

Measure and analyze work

This course includes time and motion study machines and techniques that are used to identify and improve industrial and service processes at the micro and general levels. The focus is on identifying and reducing lost efforts and time through better development of work methods and methods

Principles in marketing

The concept of marketing and its importance, marketing functions, types of goods and markets, division (segmentation) of markets, consumer behavior, marketing mix (product, distribution, promotion, pricing).

Material resistance

Study of the motion of translational and rotational bodies without and with acting forces, Newton’s second law, movement of the centripetal force, the energy equation, work, momentum, collision, conservation of energy and momentum, applications to systems of bodies. Acceleration and relative speed, linear center, analyzes in terms of a variable

Engineering mechanics

Introduction to the mechanics of rigid bodies, basic concepts: force and displacement vectors, force system, equivalent force system, static equilibrium in the second dimension, analysis of simple structures, geometric properties: center of gravity, moment of inertia. Motion analysis of rigid bodies: acceleration and relative velocity. Prerequisite

Related university programs

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