Ders Adı Kodu Yarıyıl T+U Saat Kredi AKTS
Concrete Brıdge Desıgn INM 502 0 3 + 0 3 6
Ön Koşul Dersleri
Önerilen Seçmeli Dersler
Dersin Dili Türkçe
Dersin Seviyesi YUKSEK_LISANS
Dersin Türü Seçmeli
Dersin Koordinatörü Dr.Öğr.Üyesi HÜSEYİN KASAP
Dersi Verenler
Dersin Yardımcıları
Dersin Kategorisi Diğer
Dersin Amacı Information to Reinforced Concrete Bridges
Dersin İçeriği Design of bridges under the loads
# Ders Öğrenme Çıktıları Öğretim Yöntemleri Ölçme Yöntemleri
1 He/She classifies bridges, explains plate bridge members.
2 He/She calculates vertical loads on bridge
3 He/She calculates traffic loads on bridge
4 He/She calculates bridge moments with tables.
5 He/She designs bridge slabs.
6 He/She calculates middle longitudinal beams under dead and traffic loads.
7 He/She designs middle longitudinal beams.
8 He/She calculates axis beams under dead and traffic loads
9 He/She designs axis beams and designs reinforcement bars.
10 He/She designs reinforcement bars of bridge slabs and beams.
Hafta Ders Konuları Ön Hazırlık
1 Introduction and general information
2 The members and types of bridges
3 General information of arch bridge
4 General information of plate bridge, their members
5 General properties of loads effecting bridges
6 Traffic loads
7 Explaining and use of Rüsch tables
8 Bridges slope moments calculations with Rüsch tables
9 Middle longitudinal beam under the dead and traffic loads
10 Middle longitudinal beam under the dead and traffic loads
11 The numerical solution of middle longitudinal beam
12 Axis beam under the dead and traffic loads
13 Axis beam under the dead and traffic loads
14 Artwork of bridge slopes and beams
Kaynaklar
Ders Notu
Ders Kaynakları
Sıra Program Çıktıları Katkı Düzeyi
1 2 3 4 5
1 ability to access wide and deep information with scientific researches in the field of Engineering, evaluate, interpret and implement the knowledge gained in his/her field of study X
1 ability to access wide and deep information with scientific researches in the field of Engineering, evaluate, interpret and implement the knowledge gained in his/her field of study X
1 ability to access wide and deep information with scientific researches in the field of Engineering, evaluate, interpret and implement the knowledge gained in his/her field of study X
2 ability to complete and implement “limited or incomplete data” by using the scientific methods. X
2 ability to complete and implement “limited or incomplete data” by using the scientific methods. X
2 ability to complete and implement “limited or incomplete data” by using the scientific methods. X
3 ability to consolidate engineering problems, develop proper method(s) to solve and apply the innovative solutions to them X
3 ability to consolidate engineering problems, develop proper method(s) to solve and apply the innovative solutions to them X
3 ability to consolidate engineering problems, develop proper method(s) to solve and apply the innovative solutions to them X
4 ability to develop new and original ideas and method(s), to develop new innovative solutions at design of system, component or process X
4 ability to develop new and original ideas and method(s), to develop new innovative solutions at design of system, component or process X
4 ability to develop new and original ideas and method(s), to develop new innovative solutions at design of system, component or process X
5 gain comprehensive information on modern techniques, methods and their borders which are being applied to engineering X
5 gain comprehensive information on modern techniques, methods and their borders which are being applied to engineering X
5 gain comprehensive information on modern techniques, methods and their borders which are being applied to engineering X
6 ability to design and apply analytical, modelling and experimental based research, analyze and interpret the faced complex issues during the design and apply process X
6 ability to design and apply analytical, modelling and experimental based research, analyze and interpret the faced complex issues during the design and apply process X
6 ability to design and apply analytical, modelling and experimental based research, analyze and interpret the faced complex issues during the design and apply process X
7 gain high level ability to define the required information and data X
7 gain high level ability to define the required information and data X
7 gain high level ability to define the required information and data X
8 ability to work in multi-disciplinary teams and to take responsibility to define approaches for complex situations X
8 ability to work in multi-disciplinary teams and to take responsibility to define approaches for complex situations X
8 ability to work in multi-disciplinary teams and to take responsibility to define approaches for complex situations X
9 systematic and clear verbal or written transfer of the process and results of studies at national and international environments X
9 systematic and clear verbal or written transfer of the process and results of studies at national and international environments X
9 systematic and clear verbal or written transfer of the process and results of studies at national and international environments X
10 aware of social, scientific and ethical values guarding adequacy at all professional activities and at the stage of data collection, interpretation, and announcement X
10 aware of social, scientific and ethical values guarding adequacy at all professional activities and at the stage of data collection, interpretation, and announcement X
10 aware of social, scientific and ethical values guarding adequacy at all professional activities and at the stage of data collection, interpretation, and announcement X
11 aware of new and developing application of profession and ability to analyze and study on those applications X
11 aware of new and developing application of profession and ability to analyze and study on those applications X
11 aware of new and developing application of profession and ability to analyze and study on those applications X
12 ability to interpret engineering application’s social and environmental dimensions and it’s compliance with the social environment X
12 ability to interpret engineering application’s social and environmental dimensions and it’s compliance with the social environment X
12 ability to interpret engineering application’s social and environmental dimensions and it’s compliance with the social environment X
Değerlendirme Sistemi
Yarıyıl Çalışmaları Katkı Oranı
1. Ödev 10
Toplam 10
1. Yıl İçinin Başarıya 40
1. Final 60
Toplam 100
AKTS - İş Yükü Etkinlik Sayı Süre (Saat) Toplam İş Yükü (Saat)
Course Duration (Including the exam week: 16x Total course hours) 16 2 32
Hours for off-the-classroom study (Pre-study, practice) 16 4 64
Mid-terms 2 10 20
Quiz 1 15 15
Assignment 1 15 15
Performance Task (Laboratory) 1 20 20
Toplam İş Yükü 166
Toplam İş Yükü / 25 (Saat) 6,64
Dersin AKTS Kredisi 6