Introduction to Structural Reinforced Concrete in 1 Hour!
Introduction to Structural Reinforced Concrete in 1 Hour!, available at $24.99, has an average rating of 3.6, with 36 lectures, based on 66 reviews, and has 697 subscribers.
You will learn about Learn what is structural reinforced concrete Know the advantages and disadvantages of reinforced cocnrete Learn about structural concrete elements Determine what factors affect the strength of concrete Learn about the compressive strength of concrete Understand the stress-strain curve of concrete Calculate the tensile, flexural, shear strength, modulus of elasticity, poisson's ratio, shear modulus, and modular ratio for concrete Understand the difference between concrete shrinkage, expansion, and creep Learn about the fire resistance of concrete as well high-performance, lightweight, and fibrous concrete Realize the significance of steel reinforcement within reinforced concrete and how it works This course is ideal for individuals who are This course is meant for architects, engineers, and people involved in construction or This course is also perfect for anyone interested in learning more about structural reinforced concrete It is particularly useful for This course is meant for architects, engineers, and people involved in construction or This course is also perfect for anyone interested in learning more about structural reinforced concrete.
Enroll now: Introduction to Structural Reinforced Concrete in 1 Hour!
Summary
Title: Introduction to Structural Reinforced Concrete in 1 Hour!
Price: $24.99
Average Rating: 3.6
Number of Lectures: 36
Number of Published Lectures: 36
Number of Curriculum Items: 36
Number of Published Curriculum Objects: 36
Original Price: $19.99
Quality Status: approved
Status: Live
What You Will Learn
- Learn what is structural reinforced concrete
- Know the advantages and disadvantages of reinforced cocnrete
- Learn about structural concrete elements
- Determine what factors affect the strength of concrete
- Learn about the compressive strength of concrete
- Understand the stress-strain curve of concrete
- Calculate the tensile, flexural, shear strength, modulus of elasticity, poisson's ratio, shear modulus, and modular ratio for concrete
- Understand the difference between concrete shrinkage, expansion, and creep
- Learn about the fire resistance of concrete as well high-performance, lightweight, and fibrous concrete
- Realize the significance of steel reinforcement within reinforced concrete and how it works
Who Should Attend
- This course is meant for architects, engineers, and people involved in construction
- This course is also perfect for anyone interested in learning more about structural reinforced concrete
Target Audiences
- This course is meant for architects, engineers, and people involved in construction
- This course is also perfect for anyone interested in learning more about structural reinforced concrete
Welcome to the Introduction to Structural Reinforced Concrete in 1 Hour course where you will learn about the fundamental properties of reinforced concrete, one of the most commonly used materials on this planet.
My name is Abdul, and I will be leading you through this course. I began my career as a structural engineer in the offshore and subsea oil and gas industry. After 5 years of structural engineering, I have transitioned to developing a platform for engineering content. I am currently the founder of Engineering Examples. See website below.
By the end of the course, you’ll be able to identify the advantages and disadvantages of reinforced concrete, calculate various mechanical properties such as as the tensile and flexural strength of concrete according to the American Concrete Institute Code 318-11, and learn about how steel is used to improve the performance of reinforced concrete.
There are 36 lectures within this course. They have been prepared in the most clear and concise manner possible in order to avoid overwhelming students. We start from the basics of what is reinforced concrete all the way to covering how steel is incorporated within a concrete member. Each lecture builds slowly on top of what you have already learned. This course should take 1-2 weeks to complete.
This course is ideal for architects, engineers, construction professionals, and anyone else who wants to learn more about reinforced concrete.
This course is also great for college or university students looking to work in architecture, engineering, or construction.
Feel free to look through the course description and I look forward to seeing you inside.
Course Curriculum
Chapter 1: Introduction
Lecture 1: Introduction
Lecture 2: Advantages of Reinforced Concrete
Lecture 3: Disadvantages of Reinforced Concrete
Lecture 4: Structural Concrete Elements
Chapter 2: Concrete Strength
Lecture 1: What Governs Concrete Strength
Lecture 2: Water-Cement Ratio
Lecture 3: Concrete Constituents
Lecture 4: Mixing & Curing Methods
Lecture 5: Concrete Age
Lecture 6: Loading Scenarios
Lecture 7: Characteristics of Testing Specimen
Chapter 3: Compressive Strength
Lecture 1: Compressive Strength
Chapter 4: Concrete Stress-Strain Curves
Lecture 1: Concrete Stress-Strain Curves
Chapter 5: Concrete Tensile Strength
Lecture 1: Concrete Tensile Strength
Chapter 6: Concrete Flexural Strength
Lecture 1: Concrete Flexural Strength
Chapter 7: Concrete Shear Strength
Lecture 1: Concrete Shear Strength
Chapter 8: Modulus of Elasticity of Concrete
Lecture 1: Modulus of Elasticity of Concrete
Chapter 9: Poisson's Ratio of Concrete
Lecture 1: Poisson's Ratio
Chapter 10: Shear Modulus of Concrete
Lecture 1: Shear Modulus of Concrete
Chapter 11: Modular Ratio
Lecture 1: Modular Ratio
Chapter 12: Changes in Concrete Volume
Lecture 1: Changes in Concrete Volume
Lecture 2: Concrete Shrinkage
Lecture 3: Concrete Expansion
Chapter 13: Creep in Concrete
Lecture 1: Creep in Concrete
Lecture 2: Visual Example of Creep in Concrete
Chapter 14: Unit Weight of Concrete
Lecture 1: Unit Weight of Concrete
Chapter 15: Fire Resistance of Concrete
Lecture 1: Fire Resistance of Concrete
Chapter 16: High-Performance Concrete
Lecture 1: High-Performance Concrete
Chapter 17: Lightweight Concrete
Lecture 1: Lightweight Concrete
Chapter 18: Fibrous Concrete
Lecture 1: Fibrous Concrete
Chapter 19: Steel Reinforcement
Lecture 1: Steel Reinforcement
Lecture 2: Types of Steel Reinforcement
Lecture 3: Visual Example of Steel Reinforcement
Lecture 4: Properties of Steel
Lecture 5: Stress-Strain Curves of Steel
Chapter 20: Conclusion
Lecture 1: Conclusion and Recommended Reading
Instructors
-
Abdul Siraj
Founder of EngineeringExamples.net
Rating Distribution
- 1 stars: 3 votes
- 2 stars: 0 votes
- 3 stars: 19 votes
- 4 stars: 18 votes
- 5 stars: 26 votes
Frequently Asked Questions
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