/Home/Study Program Doctoral

Study Program Doctoral

Study Program Doctoral (S3)

“Make your dreams come true here” “The world is changing, and it's changing rapidly. Now, the 4.0 era is marking this shift, where digitalization, online activities, and social media interactions color everyday life. While today's society benefits greatly, they also face the challenges of this era. Meanwhile, the 5.0 era is also approaching. Here, the DTMM Postgraduate Program offers courses and research that can accompany these developments and address these challenges through a deep understanding of the world of "matter/substance/material"—a world waiting to be explored by your creative minds, for industry, society, and the welfare of humanity as a whole. So, don't hesitate to begin your determination and journey towards a bright future by joining us here.” (Head of the Postgraduate Study Program, DTMM ITS – Azzah Dyah Pramata, S.T., M.T., M.Eng., Ph.D)

To become a study program that has global excellence and competence in the development of sustainable science and technology, as well as solving complex problems in the field of innovation and advanced metallurgical materials engineering, with an environmentally conscious multidisciplinary science integration approach for industrial progress and national competitiveness.

Fokus studi dan penelitian pada prodi S3 Teknik Material dan Metalurgi ITS Surabaya

No Kode MK Nama MK SKS SKS Total/ Semester
Semester -1
1 TL256101   Philosophy and Ethics in Science and Technology 3
2 TL256102   Research Methodology and Scientific Writing 3
3 TL2561xx   Elective Course 1 3
4 TL2561xx   Elective Course 2 3
Total 12
Semester -2
1 TL256201   Dissertation I 3
2 TL256202   Qualification Examination 3
Total 6
Semester -3
1 TL256301   Dissertation II 3
2 TL256402   Publication I 3
Total 6
Semester - 4
1 TL256401   Dissertation III 3
2 TL256502   Publication II 3
Total 6
Semester - 5
1 TL256401    Dissertation IV 3
2 TL256502   Publication III 3
Total 6
Semester - 5
1 TL256501    Dissertation V 6
Total 6
Total Credits 42

Matakuliah Pilihan

No Course Code Course Title
1 TL256123 Electronic Materials and Semiconductors
2 TL256126 Advanced Characterization of Functional Materials
3 TL256122 Materials Manufacturing (Conventional and Additive)
4 TL256103 Battery, Supercapacitor, and Fuel Cell Materials
5 TL256125 High-Entropy Materials
6 TL256104 Catalytic Materials
7 TL256105 Pharmaceutical Materials and Drug Delivery Mechanisms
8 TL256121 Mechanics of Composite Materials
9 TL256120 Extractive Metallurgy
10 TL256119 Welding Metallurgy
11 TL256106 Metamaterials
12 TL256107 Intelligent Computational Methods for Materials and Metallurgical Engineering
13 TL256116 Nanometallurgy
14 TL256108 Functional Nanomaterials
15 TL256109 Multiscale Materials Modeling and Simulation
16 TL256110 Mineral Processing: Present and Future
17 UG256201 Scientific Writing
18 TL256111 Magnetic Materials Engineering
19 TL256124 Functional Biomaterials Engineering
20 TL256112 Tissue Engineering
21 TL256113 Surface Engineering
22 TL256114 Corrosion Control Strategies and Implementation
23 TL256118 Structure and Mechanical Properties of Materials
24 TL256115 Natural Polymer Materials Technology
25 TL256117 Special Topics
Kurikulum 2025 / 2028Rencana Pembelajaran Studi

Graduate Profile

Graduates of the Doctoral Program in Materials and Metallurgical Engineering are designed to possess strong analytical-critical thinking abilities, produce original research, and solve complex problems through interdisciplinary, multidisciplinary, and transdisciplinary approaches within the field of materials and metallurgy. Graduates are expected to embody the following professional profile:
Academics: The profile of graduates of the Materials and Metallurgical Engineering doctoral program who become academics have characteristics and qualifications that focus on the development of science and the dissemination of knowledge to support the progress of Industrial Technology in Indonesia.

Study Program Educational Objectives

  1. To produce doctoral graduates who can develop the scientific field of Materials and Metallurgical Engineering through synergistic academic and research activities, by optimizing the utilization of resources and establishing regional, national, and international collaborative networks for the development of science and technology, as well as materials and metallurgical engineering.
  2.  To produce doctoral graduates who can produce highly reputable scientific works at the international level that make significant contributions to the development of materials and metallurgical science and technology, actively disseminate them, and are able to translate them into technically and economically feasible technological and engineering applications.
  3. To produce doctoral graduates who have a deep mastery of science and engineering in the field of Materials and Metallurgical Engineering, with sharp analytical and theoretical synthesis skills, and are able to make real contributions to solving national and global strategic problems in the fields of industry, energy, the environment, and manufacturing with interdisciplinary, interdisciplinary, and multidisciplinary knowledge, taking into account the social, ethical, ecological, and economic implications as well as the basic needs of the project.

Capaian Pembelajaran Lulusan (CPL)

  1. Able to demonstrate attitudes and character that reflect devotion to God Almighty, ethics and integrity, noble character, social and environmental awareness and concern, respect for cultural diversity and pluralism, upholding the rule of law, and prioritizing the interests of the nation and society, through creativity and innovation, excellence, strong leadership, synergy, and other potentials to achieve optimal outcomes.

  2. Able to create engineering solutions and innovations in focused areas related to the theme of the dissertation research being pursued.

  3. Able to integrate scientific frameworks and innovation development with areas of expertise beyond Materials and Metallurgical Engineering.

  4. Able to develop new theories, concepts, or ideas and solve science and technology problems within the field through research using inter-, multi-, and transdisciplinary approaches, resulting in creative, original, and validated works that gain national and international recognition.

  5. Able to manage self-directed learning and continuously develop oneself as a lifelong learner to compete at national and international levels, contributing tangibly to problem solving through the application of information and communication technology while adhering to sustainability principles.

  6. Able to develop new knowledge and technologies in the field of Materials and Metallurgical Engineering or professional practice through research, producing creative, original, and validated works.

  7. Able to solve science and technology problems in the field of Materials and Metallurgical Engineering using inter-, multi-, or transdisciplinary approaches.

  8. Able to manage, lead, and develop research and development activities that benefit scientific advancement and the welfare of humanity, and achieve national and international recognition.