Carrera en Industrial Engineer - Global Program

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Florencia Costa

Florencia Costa

Carrera en Industrial Engineer - Global Program

  • Modalidad de impartición
    La Carrera en Industrial Engineer de CETYS Universidad se cursa de manera Presencial.
  • Número de horas
    La Carrera se desarrolla a lo largo de 8 semestres.
  • Titulación oficial
    CETYS Universidad otorga titulación oficial a los egresados del programa.
  • Valoración del programa
    La Carrera de Ingeniería Industrial de CETYS Universidad se centra en el diseño, mejora e implementación de sistemas integrados que combinan personas, materiales, información, equipos y energía. Los ingenieros industriales utilizan principios de ingeniería, matemáticas, ciencias físicas y sociales para analizar problemas complejos en diferentes industrias y encontrar soluciones eficientes.
  • Dirigido a
    La Carrera de Ingeniería Industrial de CETYS Universidad se dirige a personas interesadas en optimizar procesos y sistemas dentro de organizaciones.
  • Empleabilidad
    Algunas salidas profesionales de la Carrera incluyen: Gestión de Operaciones, Ingeniería de Calidad, Gestión de la Cadena de Suministro, Consultoría, Gestión de Proyectos, Logística y Distribución, Ergonomía y Diseño del Trabajo e Ingeniería de Sistemas.

Comentarios sobre Carrera en Industrial Engineer - Global Program - Presencial - Mexico - Exterior

  • Contenido
    Carrera en Industrial Engineer - Global Program.

    Available in: Mexicali y Tijuana
    Duración: 8 semesters
    Semester Program
    Format: Campus


    Program with classes 100% in English.

    International guest lectures and high quality academics
    Professional certification (OpEx/Lean Six Sigma)
    Academic mobility programs
    Real projects with global industries
    Connection and experience with cross-border companies
    Study trips in Europe with recognition of international concentration


    Prerequisites:


    As a prospective undergraduate student of Industrial Engineering you should have an interest and/or abilities in:
    • Working collaboratively in socio-technical environments.
    • Critical and logical thinking.
    • Leadership and collaborative work.
    • Managing digital and information technologies.
    • Analysis and synthesis.
    • Mathematics and physics.


    Graduate Profile:


    Upon completing your undergraduate degree, you will have gained the ability to:
    • Maximize efficiency in manufacturing operations.
    • Manage production planning and supply chain operations.
    • Develop strategies for resource optimization.



    Career Prospects:


    Upon graduation, you will have the necessary knowledge and skills to pursue professional roles such as:
    • Process Engineer.
    • Quality Manager.
    • Staff Director.
    • Logistics Manager.
    • Manufacturing Manager.
    As a Global Industrial Engineer, you will become a professional with an international vision who masters the skills required to design, manage and optimize global complex systems that produce goods and services through innovative operations that leverage technologies and engineering models.

    The Global Industrial Engineer will play a key role in maintaining and improving the competitiveness of organizations in a globalized setting, acting in a sustainable and socially responsible way with efciency and efectiveness, applying the principles and methods of engineering analysis and design.


    CURRICULUM


    1st SEMESTER
    • The Human Being as a project
    • Introduction to Engineering
    • Programming Methods
    • Differential Calculus
    • Chemistry for Engineers


    2nd SEMESTER
    • Effective Communication
    • Elective on comprehensive
    development: block I
    • Engineering Design
    • Integral Calculus
    • Engineering Materials
    • Statics


    3rd SEMESTER
    • Elective on comprehensive
    development: block II
    • Big data analytics
    • Dynamics
    • Probability
    • Manufacturing of Materials
    • Methods Engineering


    4th SEMESTER
    • Scientific Research
    • Statistical Inference
    • Electricity and Magnetism
    • Differential Equations
    • Numerical Methods
    • Lean Manufacturing and Quality Management Systems


    5th SEMESTER
    • Elective on comprehensive
    development: block III
    • Operations Research Models I
    • Industrial Electronics
    • Quality Engineering
    • Industrial Management
    • Elective I

    6th SEMESTER
    • Elective on comprehensive
    development: block IV
    • Operations Research Models II
    • Inventory Management
    • Computer Manufacturing
    • Production Systems Engineering I
    • Elective II


    7th SEMESTER
    • Ethics for society in the 21st century
    • Simulation
    • Engineering Economy
    • Specialization I: Production Systems Engineering II
    • Capstone Project I: ProjectManagement
    • Certification I: Design of Experiments


    8th SEMESTER
    • Global Competitiveness
    • Innovation and New Product Development
    • Supply Chain Management
    • Specialization II: Industrial Engineering Topics
    • Capstone Project II
    • Certification II: International Quality Standards and Systems

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