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Resolution Of July 20, 2011, At The University Of Seville, Which Publishes The Graduate Curriculum In Chemical Engineering.

Original Language Title: Resolución de 20 de julio de 2011, de la Universidad de Sevilla, por la que se publica el plan de estudios de Graduado en Ingeniería Química.

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TEXT

Obtained the positive verification of the curriculum by the Council of Universities, prior to the favorable report of the National Agency for the Evaluation of Quality and Accreditation, and once established the official character of the Title by Agreement of the Council of Ministers of 1 October 2010 (BOE of 11 November 2010),

This Rectorate, in accordance with the provisions of Article 35.4 of the Organic Law 6/2001, of 21 December, of Universities, in the wording given by the Organic Law 4/2007, of 12 April, has resolved to order the publication of the plan of studies leading to the obtaining of the degree of Graduate or Graduate in Chemical Engineering by the University of Seville, which will be structured according to the following annexes.

Sevilla, July 20, 2011. -Rector, Joaquin Luque Rodríguez.

ANNEX

Graduate Studies Plan in Chemical Engineering by the University of Seville

Knowledge Branch: Engineering and Architecture.

Impartition Center: Engineering Higher Technical School.

Distribution of the curriculum in ECTS credits by type of subject:

Type of matter

T

Credits

F

Basic Training

60

O

Required

141

P

Job End Job

Total

240

Structure of teachings by modules:

Basic Training

Chemistry Extension.

Chemical Technology Extension.

Analysis and Prevention of Labor Risks.

Design and Optimization of Chemicals.

Structures Theory.

Control and Instrumentation of Processes Chemists.

or

Or

Module

Allocate

Subject Type

Enterprise.

F

6

and Research Operational.

F

Expression.

F

6

F

F

F

F

F

F

F

6

F

F

Math II.

F

6

General Chemistry

F

F

F

Required Extension

Extending Math.

O

4.50

O

Applied Chemical Kinetics and Thermodynamics.

O

6

O

O

4.50

Industrial Branch

elasticity and Resistance of Materials.

4.50

O

>4.50

Materials.

O

Control Foundations.

4.50

O

O

and Business Management

Organization and Business Management.

O

6

Projects.

O

4.50

Technologies

4.50

4.50

Theory.

O

6

Machine Theory and Mechanisms.

O

Termodynamics.

O

6

Transmission.

O

Optives

Extending Separation Operations.

P

4.50

P

4.50

and Sustainability Analysis.

P

P

Industrial Automation.

P

4.50

Computer Aided Layout.

4.50

P

Environmental Management.

P

4.50

Waste Management and Treatment.

4.50

P

P

Fluidomechanical Engineering.

P

4.50

Installations and Electrical Machines.

P

and Thermal Engines.

P

Measurement and Control of Environmental Pollution.

P

>4.50

Integral Project of Industrial Plants.

P

Bioprocess Technology.

P

Technology.

P

4.50

Manufacturing Technology.

P

P

4.50

P

Energy and Environment Transformation.

P

P

4.50

Effluent Treatment.

P

4.50

Common Optives

4.50

Electronics

P

P

Introduction to Matlab.

P

and History of Engineering.

P

Optics.

P

on Networks and Telematics Services.

P

Practices in Companies.

P

9

Technology: Industrial Chemistry

6

O

Experimentation in Chemical Engineering.

O

or

Chemicals.

O

4.50

Basic Operations with Solid and Fluid.

O

6

Separation Operations.

7.50

7.50

7.50

Chemical Reactors

O

and Optimization of Chemicals.

4.50

4.50

End Job

Degree End Job.

T

12

Temporary Organization of Study Plan Subjects:

Course

Duration

Allocate

Type

Credits

First

A

Graphic Expression.

F

6

Informatics.

F

6

C1

Enterprise.

F

6

C1

Physical I.

F

6

C1

Math I.

F

6

C1

Math II.

F

C2

Statistics and Operational Research.

F

C2

Physics II.

F

6

C2

Mathematics III.

F

6

C2

General Chemistry.

7.50

7.50

C1

Math Extension.

O

4.50

C1

Chemistry Extension.

O

C1

O

C1

Circuit Theory.

O

6

C1

Thermodynamics.

O

6

C2

O

6

C2

Materials Science Foundations.

C2

Automatic Control Foundations.

O

C2

Chemical Engineering Foundations.

O

C2

Fluid Mechanics.

O

6

C2

Machines and Mechanisms Theory.

O

C2

Heat Transmission.

O

Third

C1

Chemical Analysis.

O

6

C1

General Electronics.

O

O

O

C1

Basic Operations with Solid and Fluid.

O

6

C1

Energy Technology.

O

C1

Environment Technologies.

C2

Control and Instrumentation of Processes Chemists.

O

C2

Engineering Processes.

O

4.50

C2

Separation Operations.

O

7.50

C2

Chemicals.

O

4.50

C2

Simulation and Chemical Process Optimization.

O

C2

4.5

P

C1

Organization and Management Companies.

O

6

C1

Projects.

O

C1

Heterogeneous Reactors.

O

6

C1

Chemical Technology.

O

C1

Optional 2 (specialty)

P

4.5

C1

Optional 3 (specialty)

P

4.5

C2

Chemical Plant Engineering.

O

C2

Optional 4 (specialty).

P

4.5

C2

Optional 1 (Common).

P

4.5

C2

Optional 2 (Common).

P

4.5

C2

Work End Job

T

Optional subject relationship:

Bioengineering.

Design and Optimization of Chemicals Processes.

4.50

and Environmental Pollution Control.

4.50

Fuel Technology.

4.50

Gaseous Effluents.

Assigning

Credits

Operations Separation.

Technology Extension.

Life and Sustainability Cycle Analysis.

Bioengineering.

Centro_table_body " >4.50

Computer Aided Layout.

Management.

4.50

Waste Management and Treatment.

4.50

4.50

4.50

Installations and Electrical Machines.

4.50

Introduction to Matlab.

Machines and Thermal Engines.

4.50

History and Methodology.

Optics Applied.

4.50

4.50

Bioprocess Technology.

Centro_table_body " >4.50

Technology

Technology

Theory.

Energy and Environment Transformation.

4.50

Practices in Companies.

9

To: Annual; C1: 1st Quarter; C2: 2nd Quarter.

Intensifications:

• Chemical Processes.

• Environmental Engineering.

• Industrial Technology.

Note: According to the title verification memory, the student must, before the completion of his studies, accredit a level of language skills in a foreign language equivalent to at least the B1 level of the The European Common Framework of Reference for Languages.