See also : » Study Programs List  » Other Studies Program| Study Program Name | : | Shipping Engineering (S-1) | | Science group | : | Engineering | | Concentration / Specialisation | : | ♛ Naval Architecture ♛ Hydrodynamics ♛ Construction and Strength ♛ Planning and Marine Transportation ♛ Ship Production Engineering | | Graduate Title / Mention | : | Engineer or Bachelor of Shipping Engineering (Sarjana Teknik or Insinyur) | | Title abbreviations according EYD | : | S.T. or Ir. | | Title abbreviations are popular (used public) | : | ST. or Ir. | | PTS organizers | : | -------- | | Study Period & Study Load (Credits) : | SMA/SMU, SMK graduates, equivalent proceed to S1 Shipping Engineering | Study Load = 144 - 152 sks | Study Period = 8 semester | D3, Polytechnic graduates, equivalent proceed to S1 Shipping Engineering | Study Load = 40 - 46 sks (If not a piece of science additional are given 2 - 21 sks) | Study Period = 3 semester | D2, S1, D1 graduates, transfer proceed to S1 Shipping Engineering | Study Load = Calculated from remaining credits | Study Period = Calculated remaining credits |
| | Curriculum / Subjects Courses | : | See below | | Prospectus (Objectives, Competencies, Job Prospects / Career Graduates) | : | See below |
Title/mention above is a title often used (not necessarily used PTS).
Regarding title (for S1, S2, S3) or mention (for diploma) which is used by universities in Indonesia currently has no standard (not standard) again, although the government has made the rules, but most colleges only obey some of the rules the. It can not be blamed, because the development of the science group is very rapid and led to new branches of science which is an integration of several scientific groups, making it difficult for universities to classify these branches of the science group that created the government.
Similarly, by making short title / mention such, people tend to create their own abbreviations that are even more popular than EYD Indonesian rule.
Below given curriculum / course and prospectus (competency, job prospects / career graduates, etc.). For subjects study program of presented here is a slice (and some combination) of a college curriculum, so it is possible some no elective courses at the college, or the slightly different name of his courses.
| Prospectus of S1 Shipping Engineering |
Competencies of Graduates of S1 Shipping Engineering S1 Shipping Engineering graduates equipped with the knowledge, professional ethics, sensitivity, skills, and abilities to Expert System Design and Ship Building and Shipping Management, Marine Transportation Facilities, Industrial Shipyard, Shipping Management, Visualization and Modeling Ships, Laws and Regulations Kemaritian, System Electrical and Electronic Ship, Ship Construction, Barriers and Propulsion Ship, vessel Maintenance Management, Production Management of Ship, Ship Systems and equipment, Mechanical Vibration, Building Offshore, Termofludia, Fluid Systems, Ship Machinery Systems, Marine Transport and Ports Management, Utilization Engineering Marine resources, Air System Administration, etc.
General/basic competency Bachelor of Shipping Engineering is to have quality and intellectual integrity; highly competitive both academically and morally; able to adjust to the changes; realize that science is always advancing and evolving; able to browse and obtain scientific information / engineering; know how and can continually learn; in dealing with each problem, and is able to reveal the structure of the core problems and set priorities stages of completion; know and can take advantage of the usefulness of mathematics and information technology can apply science and knowledge, competent and skilled in the areas of shipping engineering; able to solve problems logically, utilize data / information available; able to use these concepts to explain things that are not / less clear; able to work independently and effort; able to actively participate in the working group; able to communicate with experts in other areas of expertise and utilize their help; able to effectively utilize the resources available; able to initiate the establishment of pilot units shipping business in the field of engineering, able to follow new developments in the field of shipping engineering, conduct research, or to follow the course of study in levels further.
Bachelor of Shipping Engineering to master the basics of the nature of science in general and Shipping Engineering in particular, have a creative and critical thinking skills so that they can learn independently continually to always be able to follow the development of these areas of expertise, so it has great adaptability to the demands of environment; has extensive knowledge and insight that can be self-employed and create jobs.Profession and Career Graduates of S1 Shipping Engineering Bachelor of Shipping Engineering can work and careers in a variety of government agencies or private (national and multinational) such as state-owned enterprises (BUMN), industrial shipyard shipbuilding, shipyard docks, ports, sea freight companies, the Directorate General of Sea Transportation, Navy, research institutions marine, National and International Classification Bureau, shipping consultants, surveyors, ship company, ship the needs of industry suppliers, universities (state and private universities), etc., as the experts ship designers, ship machinery, ship management, marine transportation, shipping management, ship maintenance management, etc., or as a researcher and faculty.
Bachelor of Shipping Engineering can be technopreneurs (self-employed) with established consultants or contractors relating to the creation (design) or the development or maintenance or transportation or training the various fields to shipping, ports and marine.
S1 Shipping Engineering Courses | * = Concentration / Specificity / Options Courses SKS = Semester Credit Units
| Courses | SKS | | Numerical Analysis and Computer Programming | 3 | | Ship Insurance * | 3 | | Indonesian | 2 | | English I | 2 | | English II * | 2 | | English III * | 2 | | English IV * | 2 | | Offshore Building * | 3 | | Maritime Business | 3 | | Ship Interior Design * | 3 | | Numerical Fluid Dynamics * | 3 | | Ship Dynamics * | 3 | | Macroeconomic * | 2 | | Managerial Economics * | 3 | | Maritime Economics * | 3 | | Microeconomics * | 3 | | Economics Ports * | 3 | | Engineering Economics * | 3 | | Electronics Boat | 3 | | Basic Physics I | 3 | | Physics II | 3 | | Vibration Ship | 3 | | Ships Advanced Vibration * | 3 | | Barriers and Propulsion Ship | 3 | | Barriers and advanced ship propulsion * | 3 | | Hydrodynamics * | 3 | | Maritime Business Law and Regulation | 3 | | Materials Science and Metal Working | 3 | | Innovation Planning * | 3 | | Inspection Las | 2 | | Calculus I | 3 | | Calculus II | 3 | | Special Boat * | 3 | | Reliability and Maintenance Management I | 3 | | Reliability and Maintenance Management II | 3 | | Reliability Structure * | 3 | | Public Policy * | 3 | | Power Boats * | 3 | | Fatigue and breakage * | 3 | | Job | 1 | | Ship Safety | 3 | | Ship Construction * | 3 | | Ship Construction Pricing * | 3 | | Corrosion * | 3 | | Electric Boat and Automation I | 3 | | Electrical and Automation II Boat | 3 | | Inventory Management * | 3 | | Ship Management * | 3 | | Ship Management Agency * | 3 | | Logistics Management * | 3 | | Materials Management * | 3 | | Quality Management * | 3 | | Coastal Management * | 3 | | Port Management * | 3 | | Ship Maintenance Management * | 3 | | Ship Production and Operations Management * | 3 | | HR Management * | 3 | | Maritime Transport and Ports Management * | 3 | | Engineering Mathematics * | 3 | | Fluid Mechanics | 2 | | Engineering Mechanics | 3 | | Mechanics Advanced Techniques * | 3 | | Engineering Drawing and CAD | 2 | | Ship Designing * | 3 | | Fluid Machinery * | 3 | | Finite Element Method * | 3 | | optimization method * | 3 | | Research Methodology | 1 | | Motor Drive Ship * | 3 |
| | | Courses | SKS | | Advanced Multi Mode * | 3 | | Ship Motion Sports * | 3 | | Freight Forwarding Operations * | 3 | | Marketing Port * | 3 | | Ship Maintenance and Repair * | 3 | | Transport Modeling * | 3 | | Sea Pollution * | 3 | | Ship Financing * | 3 | | Religious Education | 2 | | Citizenship Education | 2 | | Introduction to Building Ships * | 3 | | Introduction to Marine Technology | 2 | | Introduction Technopreunership (Entrepreneurship) | 3 | | Introduction to Information and Communication Technology | 3 | | Setting Air and Refrigeration Systems * | 3 | | Computer-based design | 3 | | Ship Design * | 3 | | Terminal Design * | 3 | | International Trade * | 3 | | Shipyard Planning * | 3 | | Planning * Ports | 3 | | Perencangan Special Boat * | 3 | | Heat Transfer * | 3 | | Pollution and Safety * | 3 | | Ship Dynamics Lab | 1 | | Practical Physics | 1 | | Materials Science Practicum | 1 | | Practicum Inspection Las | 1 | | Practicum Drawing Techniques | 1 | | Numerical Methods and Computer Lab | 1 | | Practical Modelling | 1 | | Practicum Las Engineering | 1 | | Coastal Processes * | 3 | | Logistics Engineering * | 3 | | Market Research * | 3 | | Ship Systems and Equipment * | 3 | | Fluid Systems * | 3 | | Management Information Systems * | 3 | | Piping Systems Ship | 3 | | Air System Administration * | 3 | | Transportation Systems * | 3 | | Small Craft Design * | 3 | | Statics and Dynamics * | 3 | | Statistics and Probability | 3 | | Survey / Inspection Boats and Marine Building | 3 | | Resistance and Propulsion * | 3 | | Engineering I Building and Construction Vessel | 3 | | Ship Building Engineering and Construction II | 3 | | Las Engineering * | 2 | | Engineering Marine Resource Utilization * | 3 | | Ship Machinery Engineering I | 3 | | Ship Machinery Engineering II | 3 | | Ship Machinery Engineering III | 3 | | Ship Machinery Engineering IV | 3 | | Teknika Nautical * | 3 | | Production Technology * | 3 | | Ship Building Theory * | 3 | | Advanced Ship Building Theory * | 3 | | Plates Theory * | 3 | | Thermodynamics | 3 | | Final | 5 | | Design Task I: Plan Outline and Aperture Skin | 3 | | Design Task II: Propeller and Systems Perporosan | 3 | | Design Task III: Plans Umumdan Safety Plan | 3 | | Design Task IV: Machinery and Electrical Systems Ship | 3 | | Transportation Planning Task | 3 | | Task Plan Outline | 1 | | Visualization and Modeling Ship * | 3 |
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