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Master of Technology (Civil Engineering with Specialization in Geotechnical Engineering)

program-details

School of Engineering and Technology, CT University offers 2 years master of technology in civil engineering with specialization in Transportation Engineering Programme. It provides rigorous foundations of core civil engineering, combination of theoretical core concepts with practical training of software tools equips the students to be industry ready. The curriculum includes professional training and certification offered by top leading industry. Objective of this programme is to compete with well- established academic institutions in India and abroad.

Industry Immersion

Have effective expert professions in industry, government, the scholarly community and military as inventive architects. Successfully take care of designing issues related with the lifecycle of Civil Engineering framework, specifically development innovation and the executives by conveying viably either driving a group or as a colleague. Continue to learn and propel their vocations through exercises like innovative work, securing doctoral certificate, support in public level exploration projects, instructing and research at college level and so forth, Active individuals prepared to serve the general public locally and globally, may take up business for the development of economy and to create work; and receive the way of thinking of deep rooted figuring out how to be lined up with financial and innovative turn of events.

eligibility criteria

B.E/B.Tech (Civil Engg.) in Mechanical Engineering/Electronices & Communication Engineering from a recognized university with atleast 50% marks.

Admission criteria

Merit in CT-SET, subject to fulfilling eligibility criteria.

fees

Details

Amount

Programme Fees

43000

Examination Fees

2500

International Programme Fees

$5300

Programme Outcomes

  • Demonstrate the aptitude of civil engineering with with Geotechnical engineering and industry ground-based problem-solving skills.
  • Display the knowledge of appropriate theory, practices and tools for the specification, design, and Implementation.
  • Ability to learn and acquire knowledge through online courses available at different MOOC Providers.
  • Ability to link knowledge of Geotechnical engineering with other two chosen auxiliary disciplines of study.
  • Display ethical code of conduct in usage of civil designing software’s and computer systems.
  • Ability to pursue higher studies of specialization and to take up technical employment.
  • Ability to formulate, to model, to design solutions, procedure and to use software tools to solve real world problems and evaluate.
  • Ability to operate, manage, deploy, configure civil software designer, hardware, software operation of an organization.
  • Ability to present result using different presentation tools.
  • Ability to appreciate emerging technologies and tools.
  • Apply standard Software Engineering practices and strategies in real -time software project Development.
  • Design and develop designing in software computer -based systems in the areas related to algorithms, networking, web design, cloud computing, IoT and data analytics.
  • Acquaint with the contemporary trends in industrial/research settings and thereby innovate novel solutions to existing problems.
  • The ability to apply the knowledge and understanding noted above to the analysis of a given information handling problem.
  • The ability to work independently on a substantial software project and as an effective team member.

Programme Specific Outcomes

  • Geotechnical Investigation and Site Characterization: Conduct geotechnical investigations, including soil and rock sampling, laboratory testing, and field studies, to characterize the properties of the subsurface materials and evaluate their suitability for construction.
  • Geotechnical Design and Analysis: Apply advanced knowledge and skills to analyze and design geotechnical structures and systems, such as foundations, retaining walls, slopes, and earthworks, considering factors like stability, settlement, and soil-structure interaction.
  • Ground Improvement Techniques: Identify ground improvement requirements and apply appropriate techniques to enhance the engineering properties of weak or problematic soils, such as soil stabilization, grouting, deep compaction, or reinforcement.
  • Geotechnical Hazard Assessment and Mitigation: Assess geotechnical hazards, including landslides, slope stability, liquefaction, and foundation failure, and develop strategies to mitigate risks through slope stabilization, drainage systems, retaining structures, or other protective measures.
  • Geotechnical Laboratory Testing and Analysis: Perform geotechnical laboratory tests on soil and rock samples, interpret the results, and use them for geotechnical design and analysis. This includes tests related to soil classification, strength, consolidation, and permeability.
  • Research and Development in Geotechnical Engineering: Engage in research activities, contribute to the advancement of knowledge in geotechnical engineering, and develop innovative solutions to address geotechnical challenges and improve construction practices.

Salient Features

  • To prepare graduates with a strong foundation in Master of Technology in Civil Engineering with Geotechnical engineering and problem solving &programming skills in order to build successful careers professionals in industry, government, academia, research, entrepreneurial pursuit and consulting firms.
  • To equip students with analytical, design, development, and soft skill to find innovative solutions to the real-world problems in collaboration with industry and professional societies.
  • To inculcate research paper, managerial skills, and team work in our students through demonstration of good analytical, design and implementation skills for the betterment of individual and society at large.
  • To produce graduates who are ethical, socially responsible, and lifelong learners to fulfill their goals

How To Apply