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INTENDED LEARNING OUTCOMES OF "NATURAL GAS ENGINEERING PROGRAM"

Knowledge and Understanding:
a1- Essential facts concepts, principles and theories relevant to natural gas engineering.
a2- Concepts and theories of mathematics and sciences appropriate to natural gas engineering
a3- Basics of information and communication technology
a4- Characteristics of materials related to well drilling and gas reservoir engineering, thermo-fluids machinery used in natural gas engineering, fuel and engineering materials related to natural gas production and transmission.
a5-Principles of design and constraints to be taken into account to reach optimum solutions in the design of the machinery used for production, treatment and transmission of natural gas, well drilling., gas reservoir, systems of natural gas process engineering and pipelines.
a6- Methodologies of solving engineering problems related to well drilling and completion, gas reservoir, multiphase flow, flow in porous media, data collection and interpretation in well logging and well testing and operation.
a7-Professional ethics and impact of natural gas engineering solutions on society, economy, environment and safety.
a8-Current engineering technologies as related to natural gas production and enhancement, transmission and applications and energy resources
a9- Quality assurance systems, codes and standards , health and safety requirements .
a10- Business and management principles relevant to natural gas engineering.
a11- Contemporary engineering topics in natural gas simulation and applications.
a12- technical language and report writing.
a13- Applied engineering science.

Intellectual Skills:
b1- Adopt, create and innovate thinking in solving problems, and in designing systems, components and processes.
b2- Demonstrate a high level of competence in identifying, defining and solving natural gas engineering problems.
b3- Adopt appropriate mathematical principles, natural sciences, technology, computing methods, design techniques and codes of practice in natural gas engineering disciplines, for modeling, analyzing and solving engineering problems.
b4- Apply appropriate analysis of practice in designing naturals gas wells, drilling techniques and reservoir engineering.
b5- Apply technical analysis in energy conversion, chemical analysis and other thermo-fluids processes for natural gas engineering;
b6- Define, plan, conduct and report management techniques, quality assurance systems, codes of practice and standards, health and safety requirements and environmental issues.
b7- Assess and evaluate different techniques and strategies for solving engineering problems.
b8- Apply engineering principles, theories and systems in solving environmental and socioeconomic problems.
b9- Solve engineering problems, on the basis of limited and possibly contradictory information.

Professional and practice skills:
c1- Use laboratory and field equipment competently and safety.
c2- Observe, record and analyze data in laboratory and in field.
c3- Demonstrate basic organizational and management skills.
c4- Use appropriate specialized computer software, computational tools and packages.
c5- Use the modern survey instruments in mapping and setting out.
c6- Prepare technical drafts and detailed drawings both manually and using CAD.
c7- Prepare quantity surveying reports.
c8- Give technical presentations.
c9- Refer Effectively to relevant literature.
c10- Implement quality control procedures.
c11- Supervise construction and operation works.

General, Transferable Skills
d1- Work in a team.
d2- Recognize the safety requirements.
d3- Write technical reports.
d4- Deal with others according to the rules of professional ethics and topics related to humanitarian interests and moral issues.
d5- Project management.
d6- Share ideas and communicate with others.
d7- Technique of decision making.

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