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This course offers a perspective on reinforced concrete building design, equipping learners with skills to interpret architectural and structural drawings, analyze geometric parameters, and understand material specifications. Learners gain practical proficiency in exposure, cover, fire ratings, load types, and seismic considerations, fostering a nuanced understanding of structural engineering. The curriculum emphasizes real-world application, incorporating analysis tools and design basis report creation. By exploring dead loads, live loads, wind loads, and earthquake loads, learners develop comprehensive knowledge, ensuring their ability to confidently undertake sophisticated designs. The course enhances comprehension of Indian code practices, practical skills, and collaborative project experience for effective structural engineering in diverse environments.

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Syllabus

Design Basis Parameters - Part A
This module provides a comprehensive overview of architectural and structural drawing interpretation, covering geometric parameters, site location considerations, and material specifications. The module not only imparts knowledge about design basis parameters but also cultivates the ability to identify and quantify these parameters for any given building or project, ensuring practical proficiency in reinforced concrete building design. The multifaceted benefits include enhanced comprehension of Indian code practices, practical application skills, and collaborative project experience.
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Design Basis Parameters - Part B
This module delves into crucial aspects of structural design, covering exposure and cover requirements, fire rating considerations, member sizing, load combinations, and serviceability requirements specific to building structures. Learners will gain insights into creating comprehensive design basis reports for effective and compliant structural engineering in the built environment.
Load Calculations on Example Building
This module provides a comprehensive exploration of structural loads in building design, including dead loads, superimposed dead loads, live loads, and wind loads. The exposure provided enables learners to confidently apply these concepts, ensuring a comprehensive understanding and the ability to undertake a sophisticated design of reinforced concrete buildings.
Seismic Load Calculations
This module comprehensively covers earthquake loads. Learners will learn to predict and evaluate responses to earthquake excitation, compute design acceleration coefficients, determine seismic base shear, and apply seismic design parameters. The Equivalent Static Method for seismic analysis in building structures is explored.

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Know what's good
, what to watch for
, and possible dealbreakers
Develops structural engineering knowledge and skills, such as interpreting architectural and structural drawings, analyzing geometric parameters, and understanding material specifications
Taught by Subject Matter Experts, who are recognized for their work in the reinforced concrete building design field
Covers earthquake loads comprehensively, including predicting and evaluating responses to earthquake excitation, computing design acceleration coefficients, determining seismic base shear, and applying seismic design parameters
Emphasizes real-world application by incorporating analysis tools and design basis report creation
Provides practical proficiency in exposure, cover, fire ratings, load types, and seismic considerations, fostering a nuanced understanding of structural engineering
Enhances comprehension of Indian code practices, which may be valuable for learners working in India or on projects in India

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Activities

Be better prepared before your course. Deepen your understanding during and after it. Supplement your coursework and achieve mastery of the topics covered in Design Basics of RCC Buildings with these activities:
Review 'Reinforced Concrete Design' by P.C. Varghese
Enhance your understanding of the principles of reinforced concrete design by reviewing the comprehensive textbook 'Reinforced Concrete Design' by P.C. Varghese.
Show steps
  • Read the book thoroughly.
  • Take notes and highlight key concepts.
  • Solve practice problems and review solved examples.
Solve practice problems on load calculations for reinforced concrete buildings
Strengthen your analytical skills by solving practice problems on load calculations for reinforced concrete buildings, gaining proficiency in determining the forces acting on structural elements.
Browse courses on Load Calculations
Show steps
  • Identify reputable sources of practice problems.
  • Attempt to solve the problems independently.
  • Review your solutions and identify areas for improvement.
Wind Load Calculations Practice Problems
Enhance your understanding of wind load calculations and their impact on reinforced concrete building design through practice problems.
Show steps
  • Review the theory behind wind load calculations
  • Solve practice problems involving wind load calculations for different building shapes and configurations
11 other activities
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Reinforced Concrete Building Design Discussion Group
Connect with fellow learners to discuss concepts, share ideas, and clarify doubts related to reinforced concrete building design.
Browse courses on Structural Engineering
Show steps
  • Join an online discussion group or forum
  • Participate in discussions, asking questions and sharing insights
  • Collaborate on solving design problems
Follow online tutorials on seismic design of reinforced concrete structures
Expand your knowledge in seismic design by following online tutorials tailored specifically to the seismic design of reinforced concrete structures, enhancing your understanding of earthquake-resistant design principles.
Browse courses on Structural Engineering
Show steps
  • Identify reputable online platforms offering tutorials on seismic design.
  • Select tutorials that align with your learning objectives.
  • Follow the tutorials diligently, taking notes and practicing the concepts.
Practice building reinforcement cages
Familiarize yourself with the complexities of reinforcement cage building, a key aspect of reinforced concrete structure design.
Show steps
  • Review the requirements for reinforcement cages in building codes
  • Practice determining the correct bar size and spacing for different load conditions
  • Build a physical model of a reinforcement cage for a simple structure
Review: Reinforced Concrete Design Handbook
Supplement your coursework with a thorough review of 'Reinforced Concrete Design Handbook', gaining insights from industry experts.
Show steps
  • Read chapters relevant to the course topics
  • Summarize key concepts and formulas
  • Solve practice problems provided in the book
Develop a design basis report for a reinforced concrete building project
Gain practical experience in structural engineering by developing a comprehensive design basis report for a reinforced concrete building project, ensuring a solid understanding of design requirements and specifications.
Show steps
  • Define the project scope, objectives, and design criteria.
  • Compile relevant design codes, standards, and specifications.
  • Determine design loads, including dead loads, live loads, wind loads, and seismic loads.
  • Select appropriate materials and structural systems for the project.
  • Develop detailed design drawings and specifications for the reinforced concrete structure.
Seismic Building Design Tutorial Series
Explore the nuances of seismic building design and its application in reinforced concrete structures through a comprehensive tutorial series.
Show steps
  • Study the principles of seismic building design
  • Learn about different seismic design codes and their implications
  • Practice designing earthquake-resistant reinforced concrete structures using software tools
Fire Safety in Reinforced Concrete Buildings Tutorial Series
Delve into the crucial topic of fire safety in reinforced concrete buildings through a comprehensive tutorial series.
Browse courses on Fire Safety
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  • Learn about fire safety regulations and codes
  • Understand the fire resistance of reinforced concrete
  • Practice designing fire-resistant reinforced concrete structures
Contribute to Open-Source Reinforced Concrete Design Software
Gain practical experience and contribute to the development of open-source software tools for reinforced concrete design.
Browse courses on Structural Engineering
Show steps
  • Identify open-source reinforced concrete design software projects
  • Review the codebase and identify potential contributions
  • Make code contributions and submit pull requests
Reinforced Concrete Building Design Project
Apply your knowledge and skills to design a reinforced concrete building, ensuring its structural integrity and compliance with building codes.
Show steps
  • Select a building type and site for your design
  • Determine the functional requirements and design criteria
  • Design the structural system and foundation
  • Prepare construction drawings and specifications
Design a small reinforced concrete building
Challenge yourself by designing a small reinforced concrete building. This hands-on project will provide invaluable experience in applying the principles of structural engineering and reinforced concrete design.
Show steps
  • Determine the building's purpose, size, and location.
  • Develop conceptual design drawings and floor plans.
  • Calculate structural loads and design the foundation, columns, beams, and slabs.
  • Detail the reinforcement drawings and specify material properties.
  • Prepare construction documents and specifications for the project.
Reinforced Concrete Design Competition
Challenge yourself and showcase your skills by participating in a reinforced concrete design competition.
Browse courses on Structural Engineering
Show steps
  • Identify and register for relevant competitions
  • Work individually or in a team to design and present a reinforced concrete structure
  • Receive feedback and insights from industry experts

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