2.1a. Modul Handbook of B.Eng Civil Engineering
Modul name |
Statically Determinate Structures Analysis |
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Level module |
6 (undergraduate) |
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Abbreviation of applicable |
SIP 620110 |
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Sub-heading, if applicable |
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Courses included in the module, if applicable |
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Semester |
II |
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Person in charge |
Ir.Laksmi Irianti, M.T. |
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Lecturer |
1. Vera Agustriana Noorhidana, S.T., M.T., Ph.D 2. Hasti Riakara Husni, S.T., M.T. 3. Ir. Nur Arifaini, M.S. 4. Ir. Andi Kusnadi, M.T., M.M. 5. Dr. Eng Moch. Isneini, S.T., M.T. 6. Tas’an Junaedi, S.T., M.T. |
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Language |
Bahasa Indonesia, English |
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Classifications within the curriculum |
Compulsory/ |
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Teaching (hours per week during the semester |
3 class hour lecture (3´170 minutes lecture) ´ 16 weeks |
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Workload per semester |
510 minutes lecture is divided into 150 minutes face to face interaction, 180 minutes structural activities and 180 minutes independent study |
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Credit points |
3 SKS (4.68 ECTS) |
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A01 |
Fulfilling task with moral, ethics and manner (2-S) |
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A02 |
Capable to be part of team work and showing social awareness (4a-W) |
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A03 |
Being eager to be independent (4b-S) |
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C04 |
Capable to design and apply innovative construction, eco-friendly, low-cost, adaptive to climate change (7a-S) |
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P05 |
Mastering tools and software, collecting information, and applicable procedure that has been determined (7b-S) |
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C06 |
Capable to fulfil task as technician, analyst, and engineer with low-cost approach, emphasizing in coastal building and infrastructure that adaptive to climate change (8-S) |
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C07 |
Knowledgeable and skillful to fullfil the requirements of applicable standard incorporating factual and specific expertise emphasizing in coastal building and infrastructure that adaptive to climate change; hence having competencies to complete task properly and thoroughly (9-S). |
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A08 |
Responsible and enable to fulfil task holistically (10-S) |
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A09 |
Have a willingness to learn throughout lifetime (11-S) |
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Note: C: cognitive; A: affective; P: psychomotor |
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Course Learning Outcomes |
Being able to: 1. Analyze truss system with certain methods (method of joints, Cremona, Ritter) (C4;1) 2. Analyze and to make influence line diagram of a truss system due to moving load on a bridge (C4;1-C4;14-P3;8) 3. Analyze three-hinged arch structure and to draw the influence, being able to three-hinged portal structure, and definite static analysis of cable structures (C4;1) 4. Make shearing force diagram (SFD), bending moment diagram (BMD), and normal forced diagram (NFD) on three-hinged arch structure, influence line of three-hinged arch structure, three-hinged portal structure, and static cable structure with the emphasis on civil engineering case studies (C4;14) |
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Content |
A. Lecturing
1. Introduction of truss 2. Method of section 3. Cremona method 4. Ritter method 5. Three hinged arch 6. Three hinged truss 7. Drawing internal force diagrams
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B. Practical work
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Study/ exam achievement |
Assessment Aspect (%) |
A1 |
A2 |
A3 |
C4 |
P5 |
C6 |
C7 |
A8 |
A9 |
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Mid test (25%)- written test |
Ö |
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Ö |
Ö |
Ö |
Ö |
Ö |
Ö |
Ö |
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Final test (30%)- written test |
Ö |
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Ö |
Ö |
Ö |
Ö |
Ö |
Ö |
Ö |
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Quiz (25%) |
Ö |
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Ö |
Ö |
Ö |
Ö |
Ö |
Ö |
Ö |
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Final task (20%) |
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Ö |
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Ö |
Ö |
Ö |
Ö |
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Score index |
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A |
A ³76 |
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B+ |
71 £ B+ < 76 |
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B |
66 £ B < 71 |
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C+ |
61 £ C+< 66 |
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C |
56 £ C < 61 |
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D |
50 £ D < 56 |
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E |
E < 50 |
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Forms of media |
Software |
Hardware |
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Ms. Office (PPT, Ms Word, Ms. Excel) |
Projector |
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LCD |
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Laptop, computer |
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