Expected Learning Outcomes (ELO)
Schematic mechanism of curriculum development at BME
Bachelor
of Mechanical Engineering (BME) Graduate Profiles
No. |
Profiles |
Deskripsi |
1. |
Mechanical engineering
system design |
Ability to design system,
component, equipment and machinery in related to mechanical engineering |
2. |
Problem
solving and improvement |
Ability to solve technical
problem in related to mechanical engineering by considering any aspects of
economic and environmental, and giving the better alternative of solution |
3. |
Managerial
and leadership |
Ability to acts as a leader
in resources management in line with the organisational objectives, and
ability to develop products and services |
4. |
Researcher |
Ability to operate
mechanical engineering equipment, conducting an experiment, analysing and
evaluating mechanical engineering problem, and further investigating on the
problem |
5. |
Entrepreneurship |
Ability to work independently
and in a multidiscipline-multicultural team, as well as initiating in
self-empowerment to create new job and opportunity in the work field |
Expected
Learning Outcomes
Bachelor
of Mechanical Engineering (BME) has 12 expected learning outcomes
ELO |
Formulation
|
1 |
Ability to apply professional ethics by giving precedence to the
safety, health and welfare of public; perform in area of competence, act in
objective and truthful manner, and conduct themselves with obedience to the
law and constitution. [Keywords: Professional ethics] |
2 |
Ability to manage knowledges, skills, and self-potential to build
excellence and competitiveness in the job market. [Keywords: excellence, competitiveness] |
3 |
Ability to utilize the local and national wisdom to strengthen the
cultural understanding and awareness at campus and workplace. [Keywords: cultural
awareness] |
4 |
Ability to implement lifelong learning by critical and independent
thinking to update the knowledge and contribute to the society. [Keywords: lifelong
learning] |
5 |
Ability to acquire and apply fundamentals of science, engineering
mathematics, engineering principles, engineering science and engineering
design required for analysis and designing of a mechanical system. [Keywords: Engineering Knowledge] |
6 |
Ability to communicate effectively in oral
presentation, verbal and written communications as well as in team working. [Keyword:
communication, team working] |
7 |
Ability to design mechanical systems and its components by applying
design principles, analytical approach and compliance to technical standards.
[Keywords: Engineering Design] |
8 |
Ability to apply mathematics, science and engineering principles to
solve problem in mechanical systems. [Keywords: Science-Engineering application] |
9 |
Ability to identify problems in complex mechanical system through
investigation, analysis, data interpretation based on engineering principles.
[Keywords: Engineering-problem solving] |
10 |
Ability to conduct research covering problem identification, formulation,
experimental test and analysis on a mechanical system. [Keyword:
experiment and research] |
11 |
Ability to formulate solutions for mechanical system engineering
problems by considering all aspects of economic, health, public safety,
culture, environmental, and energy conservation. [Keywords: Problem solving and sustainability] |
12 |
Ability
to organize financials, human, tools, information technology and other
resources in the working field of mechanical engineering. [Keywords: Management, entrepreneurship] |
Program Studi Teknik Mesin memiliki 12 Capaian Pembelajaran Lulusan
CPL |
Rumusan |
|
1. |
Mampu menerapkan etika professional dengan
mengedepankan keamanan dan keselamatan, bekerja sesuai kompetensi,
berperilaku jujur dan obyektif, serta bertindak sebagai warga negara yang
taat hukum dan konstitusi. [Kata kunci: Etika professional] |
Attitude |
2. |
Kemampuan untuk mengelola pengetahuan, ketrampilan dan
potensi diri untuk membangun keunggulan dan daya saing di dunia kerja. [Kata
kunci: keunggulan, kompetitif] |
|
3. |
Kemampuan untuk memanfaatkan nilai-nilai lokal dan
nasional untuk memperkuat saling pengertian dan kepedulian terhadap perbedaan
budaya di perkuliahan dan tempat kerja. [Katakunci: kesadaran multibudaya] |
|
4. |
Kemampuan untuk mengimplementasikan lifelong learning
dengan kemampuan berpikir kritis dan independen untuk mendapatkan pengetahuan
terkini dan berkontribusi kepada masyarakat. [Kata
kunci: pembelajaran seumur hidup] |
|
5. |
Menguasai konsep teoritis sains, aplikasi matematika rekayasa,
prinsip-prinsip rekayasa (engineering
fundamental), sains rekayasa dan perancangan rekayasa yang diperlukan
untuk analisis dan perancangan sistem mekanika (mechanical system) serta komponen-komponen yang diperlukan. [Kata
kunci: pengetahuan keteknikan] |
Knowledge |
6. |
Kemampuan berkomunikasi dalam presentasi oral, komunikasi verbal dan
tertulis, serta komunikasi untuk bekerjasama dalam tim. [Kata kunci: kemampuan
komunikasi, bekerja dalam tim] |
|
7. |
Mampu merancang sistem mekanika (mechanical system) dan komponen-komponen yang diperlukan
berdasarkan prinsip-prinsip desain, pendekatan analitis dan mempertimbangkan
standar teknis, aspek kinerja, keandalan, kemudahan penerapan, keberlanjutan,
serta memperhatikan faktor-faktor ekonomi, kesehatan dan keselamatan publik,
kultural (memperhatikan kearifan lokal), sosial, dan lingkungan (environmental cosideration). [Kata
kunci: Desain keteknikan] |
|
8. |
Mampu menerapkan matematika, sains, dan prinsip rekayasa (engineering principles) untuk
menyelesaikan masalah rekayasa yang kompleks (complex engineering problem) pada sistem mekanika (mechanical system). [Kata
kunci: aplikasi sains dan keteknikan] |
Skill |
9. |
Mampu menemukan sumber masalah rekayasa kompleks pada sistem mekanika (mechanical system) melalui proses
penyelidikan, analisis, interpretasi data, dan informasi berdasarkan
prinsip-prinsip rekayasa. [Kata kunci: pemecahan masalah keteknikan] |
|
10. |
Mampu melakukan penelitian yang mencakup identifikasi, formulasi,
eksperimen dan analisis masalah rekayasa kompleks pada sistem mekanika (mechanical system) serta
komponen-komponen yang diperlukan. [Kata kunci: penelitian] |
|
11. |
Mampu merumuskan solusi untuk masalah rekayasa di bidang sistem mekanika
(mechanical system) dan komponen
komponen yang diperlukan dengan memperhatikan faktor-faktor ekonomi,
kesehatan dan keselamatan publik, kultural, sosial, lingkungan, dan
konservasi energi. [Kata kunci: pemecahan masalah dan
keberlanjutan] |
|
12. |
Mampu mengorganisasis sumber daya manusia, keuangan, peralatan, teknologi
informasi dan sumber daya lain dalam pekerjaan bidang Teknik Mesin. [Kata
kunci: manajemen, kewirausahaan] |
FACULTY OF ENGINEERING