Found 6 relevant results in 2.86s where lecturer="Anton Steurer"

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101-0148-01L 2007S , 2008S , 2020S , 2021S , 2022S , 2023S , 2024S , 2025S , 2026S 3 Credits MSC D-BAUG

Interaction between building and structure; Identify and qualify the significant correlations; Consequences in the design and the layout of structure; Choice of structure depending on the relevant parameters.

2007S
2008S
2020S
2021S
2022S
2023S
2024S
2025S
101-0145-00L 2004W 2 Credits

1. Interaction between building and structure; Identify and qualify the significant correlations; Consequences in the design and the layout of structure; Choice of structure depending on the relevant parameters.2: Structural masonry; Construction materials; Masonry subjected to in-plane forces (eccentric normal force and shear); Combined actions; Reinforced and post-tensioned masonry.

101-0168-00L 2007S , 2008S , 2020S , 2021S , 2022S , 2023S , 2024S , 2025S , 2026S 3 Credits MSC D-BAUG

Basic knowledge of structural timber design including material behaviour especially anisotropy, moisture and long duration effects and their consideration in structural analysis and detailing. Design, detailing and structural analysis of timber roof structures, buildings and bridges.

2007S
2008S
2020S
2021S
2022S
2023S
2024S
2025S
101-0637-01L 2006W , 2007W , 2008W , 2020W , 2021W , 2022W , 2023W , 2024W , 2025W , 2026W 3 Credits MSC D-BAUG

Design of timber structures.Part One: Fundamentals of material behavior, products and design.

2006W
2007W
2008W
2020W
2021W
2022W
2023W
2024W
2025W
101-0167-00L 2004W , 2005W 2 Credits

Basic knowledge of structural timber design including material behavior especially anisotropy, moisture and long duration effects and their consideration in structural analysis and detailing. Design, detailing and structural analysis of roof structures, buildings and bridges. Practical examples and exercises to be done by the students to enhance their knowledge of structural timber design.

2004W
101-0636-00L 2004S , 2005S 2 Credits

Knowledge of characteristic properties of wood as a anisotropic and porous material and their consideration in structural timber design. History, ecology, structure of timber, drying, material properties, influence of moisture and creep. Fracture mechanics, fatigue, durability, fire design, composite elements.

2004S