Showing posts with label civil. Show all posts
Showing posts with label civil. Show all posts

Model Question for Technical SLC Class 10 Civil , Computer Animal Science Engineering

 Model Question for Technical SLC Class

Model Question for Technical SLC Class 10 Civil , Computer Animal Science Engineering
Class 10 Civil , Computer Animal Science Engineering
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Que stion model and grid ofAnimal science ,Computer and Civil Engineering here

[PDF] Advanced Civil Infrastructure Materials - Hwai Chung Wu

BUILDING DESIGN AND DRAWING ebooks

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1. Balagopal Pabhu T.S., Vincent Paul K. and Vijayan C., (1999) “Building Design of Civil Engg. Drawing”, Spades Publishers, Calicut.
2. Shah and Kale, (1985), “Principle of Building Drawing”, Tata McGraw Hill Publishing Co., New Delhi.
3. Sharma and Kaul, (1976), “Text book of Building Construction”, S. Chand, New Delhi.
4. Rangawala S.C., “Elementary and advanced building Construction”.
5. IS National Building Code – 1970.

Downloads here All in pdf

BUILDING DESIGN STANDARDS - McGill University

Facilities Design Handbook / Red Book - MIT

[PDF]Design-Build Procedures. Introduction, illustration and 

Building design and construction handbook / Frederick

[PDF]Architecture: Design Notebook

Understanding Architectural Drawings

interior design student handbook.pdf

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GEOTECHNICAL ENGINEERING| ebook |Civil Engineering

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1. Terzaghi K., and Peck R.B., (1967), “Soil Mechanics in Engineering Practice”, A Wiley International Edition, 2nd Edition, New York.

2. Taylor D.W., (1960), “Fundamentals of Soil mechanics”, Asia Publishing house Bombay, 3rd Edition.

3. Ramiah B.K. and Chickanagappa L.S., (1990), “Hand Book of Soil Mechanics and Foundation Engg.”, Oxford and IBH, 2nd Edition.

4. Lambe T.W. and Whitman R.V., (1987), “Soil Mechanics”, SI Version, John Wiley and Sons.

5. Alam Singh and Chowdhury G., (1994), “Soil Engineering in theory and practice”, CBS publishers

6. Punmia B.C,.(2005), “Soil Mechanics and Foundations”, Laxmi Publications Pvt. Ltd., 16th edition.

7. Arora K.R, (2008), “Soil Mechanics and Foundation Engineering”, Standard, Publishers and Distributors, 7th Edition.

8. Murthy V.N.S., (1995), “A Text Book of Soil Mechanics and Foundation

9. Engineering”, Sai Kripa, Technical Consultant, Bangalore, 3rd Edition.

10. Gopal Ranjan and. Rao A.S.R, (2000), “Basic and Applied Soil Mechanics”, New Age International Pvt. Limited, Publishers, 2nd Edition.

Site Plan Drawing Requirements - Bloomfield

Site Plan Drawing Requirements - Bloomfield

Forms - Residential New Construction

 Inclusion Requirements for Site Plan Drawings Defined: These “Inclusion Requirements for ... “Site Plan Drawing Requirements” for the Town 

Site Plan Drawing Requirements Drawing Requirements

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Bachelor of Civil EngineeringNew Syllabus | IOE \ | All Course | BCE|

The course content of Bachelor of Civil Engineering offered from Tribhuvan University is as follow. These courses are according to updated syllabus [066].
Semester
Course contents
I/I
Engineering Mathematics I [SH401]

Engineering Drawing1 [ME401]

Engineering Chemistry [SH403]

Fundamental of Thermodynamics & Heat Transfer [ME402]

Computer Programming [CT401]

Workshop


I/II
Applied Mechanics [CE451]

Engineering Mathematics [SH451]

Engineering Physics [SH452]

Electronics Engineering [EX451]

Engineering Drawing II [ME451]

Basic Electrical Engineering [EE451]


II/I
Civil Engineering Materials[CE506]           

Engineering Mathematics iii [SH501]

Applied Mechanics(Dynamics) [CE503]

Engineering Geology I [CE503]

Strength of Materials [CE 502]

Surveying I [CE 504]

Fluid mechanics[CE505]


II/II
Hydraulics [CE555]

Surveying II  [CE554]

Theory of Structure [CE551]

Probability & Statistics  [SH552]

Engineering Geology [CE553]

Building Drawing [CE556]

Soil Mechanics [CE552]


III/I
Theory of structures ii[CE601]

Water Supply Engineering[CE605]

Engineering hydrology[CE606]

Concrete Technology and masonry structure[CE603] 

Numerical Methods[ SH603]

Foundation Engineering[CE602]


III/II
Design of Steel and Timber Structure [CE651]

Communication English [SH651]

Engineering Economics [CE655]

Building Technology [CE652]

Sanitary Engineering [CE656]

Transportation Engineering [CE653]

Irrigation and Drainage [CE654]

Survey Camp


IV/I
Hydropower Engineering [CE704]

Project Engineering [CE701]

Transportation Engineering II [CE703]

Estimating & Costing [CE705]

Elective I [CE725]

Design of RCC Structure [CE702]


IV/II
Engineering Professional Practice

Elective II

Elective III
Project A
Other ***

Civil Engineering lecture notes ebooks pdf slides

Civil Engineering lecture notes ebooks pdf slides are aviable from the below link

Ebooks

Notes 

Project reports

Civil Engineerting Traffic Engineering

Module NameDownloadDescriptionDownload Size
Module-1: Traffic stream characteristicsFundamental Parameters of Traffic FlowFundamental Parameters of Traffic Flow7002 kb
Module-1: Traffic stream characteristicsFundamental Relations of Traffic FlowFundamental Relations of Traffic Flow86 kb
Module-1: Traffic stream characteristicsTraffic Stream ModelsTraffic Stream Models96 kb
Module-1: Traffic stream characteristicsMoving Observer MethodMoving Observer Method52 kb
Module-2: Traffic measurement proceduresMeasurement at a PointMeasurement at a Point15 kb
Module-2: Traffic measurement proceduresMeasurement over a Short SectionMeasurement over a Short Section18 kb
Module-2: Traffic measurement proceduresMeasurement along a Length of RoadMeasurement along a Length of Road14 kb
Module-2: Traffic measurement proceduresAutomated Traffic MeasurementAutomated Traffic Measurement263 kb
Module-2: Traffic measurement proceduresIntrusive TechnologiesIntrusive Technologies132 kb
Module-2: Traffic measurement proceduresNon-Intrusive TechnologiesNon-Intrusive Technologies127 kb
Module-2: Traffic measurement proceduresTravel Time Data CollectionTravel Time Data Collection77 kb
Module-3: Microscopic Traffic Flow ModelingVehicle Arrival Models : HeadwayVehicle Arrival Models : Headway67 kb
Module-3: Microscopic Traffic Flow ModelingVehicle Arrival Models : CountVehicle Arrival Models : Count43 kb
Module-3: Microscopic Traffic Flow ModelingCar Following ModelsCar Following Models79 kb
Module-3: Microscopic Traffic Flow ModelingLane Changing ModelsLane Changing Models107 kb
Module-3: Microscopic Traffic Flow ModelingMicroscopic Traffic SimulationMicroscopic Traffic Simulation21 kb
Module- 4 : Macroscopic And Mesoscopic Traffic Flow ModelingTraffic Flow Modeling AnalogiesTraffic Flow Modeling Analogies74 kb
Module- 4 : Macroscopic And Mesoscopic Traffic Flow ModelingCell Transmission ModelsCell Transmission Models91 kb
Module- 4 : Macroscopic And Mesoscopic Traffic Flow ModelingTraffic Progression ModelsTraffic Progression Models91 kb
Module- 4 : Macroscopic And Mesoscopic Traffic Flow ModelingDiscrete Simulation ModelsDiscrete Simulation Models209 kb
Module-5 : Uninterrupted FlowCapacity and Level of Service LOSCapacity and Level of Service LOS38 kb
Module-5 : Uninterrupted FlowUrban StreetsUrban Streets126 kb
Module-5 : Uninterrupted FlowMultilane HighwaysMultilane Highways302 kb
Module-5 : Uninterrupted FlowFreeway OperationsFreeway Operations382 kb
Module-5 : Uninterrupted FlowRamp meteringRamp metering237 kb
Module-5 : Uninterrupted FlowCorridor analysisCorridor analysis87 kb
Module -6 : Traffic Intersection ControlPrinciples of Traffic ControlPrinciples of Traffic Control42 kb
Module -6 : Traffic Intersection ControlTraffic SignsTraffic Signs63 kb
Module -6 : Traffic Intersection ControlRoad MarkingsRoad Markings110 kb
Module -6 : Traffic Intersection ControlUncontrolled IntersectionUncontrolled Intersection162 kb
Module -6 : Traffic Intersection ControlChannelizationChannelization790 kb
Module -6 : Traffic Intersection ControlTraffic rotaryTraffic rotary117 kb
Module -6 : Traffic Intersection ControlGrade Separated IntersectionGrade Separated Intersection144 kb
Module-7 : Traffic Signal DesignDesign Priciples of Traffic SignalDesign Priciples of Traffic Signal151 kb
Module-7 : Traffic Signal DesignDesign principles of a traffic signalDesign principles of a traffic signal130 kb
Module-7 : Traffic Signal DesignEvaluation of a traffic signal : Delay ModelsEvaluation of a traffic signal : Delay Models105 kb
Module-7 : Traffic Signal DesignCapacity and LOS Analysis of a Signalized I/SCapacity and LOS Analysis of a Signalized I/S49 kb
Module-7 : Traffic Signal DesignCoordinated Traffic SignalCoordinated Traffic Signal97 kb
Module-7 : Traffic Signal DesignVehicle Actuated SignalsVehicle Actuated Signals194 kb
Module-7 : Traffic Signal DesignArea Traffic ControlArea Traffic Control144 kb
Modul- 8 : Specialized Traffic StudiesParking StudiesParking Studies101 kb
Modul- 8 : Specialized Traffic StudiesAccident StudiesAccident Studies314 kb
Modul- 8 : Specialized Traffic StudiesFuel Consumption and Emission StudiesFuel Consumption and Emission Studies226 kb
Modul- 8 : Specialized Traffic StudiesCongestion StudiesCongestion Studies95 kb
Modul- 8 : Specialized Traffic StudiesQueuing AnalysisQueuing Analysis92 kb
Modul- 8 : Specialized Traffic StudiesToll OperationToll Operation134 kb
Modul- 8 : Specialized Traffic StudiesPedestrian StudiesPedestrian Studies269 kb
Module-9 : Intelligent Transportation SystemIntelligent Transportation System - IIntelligent Transportation System - I324 kb
Module-9 : Intelligent Transportation SystemIntelligent Transportation System - IIIntelligent Transportation System - II102 kb
Module-9 : Intelligent Transportation SystemAdvanced ITSAdvanced ITS103 kb

Civil engineering notes

 Lecture Notes Engineering Mechanics Lecture notes from MIT-USA

Structural Engineering Lecture notes from MIT-USA

Mechanics and Design of Concrete Structures Lecture notes from MIT-USA

Advanced Soil Mechanics Lecture notes from MIT-USA

Computing and Data Analysis for Environmental Applications Lecture notes from MIT-USA

Soil Composition, Index Properties and Soil Classification Lecture notes from MIT-USA

Soil Structure and Environmental Effects Lecture notes from MIT-USA



Introduction to Civil Engineering Design Lecture notes from MIT-USA

Dynamics and Control I Lecture Notes from MIT-USA

Advance Soil Mechanics Lecture Notes from MIT-USA

Bridge Engineering PDF

Bridge Construction PDF


BASIC DYNAMICS AND ASEISMIC DESIGN

TRAFFIC ENGINEERING

AIR POLLUTION MANAGEMENT.

PRESTRESS CONCRETE STRUCTURES NOTES

WATER RESOURCE ENGINEERING

TRAFFIC ENGINEERING

AIR POLLUTION MANAGEMENT

GROUND IMPROVEMENT TECHNIQUES

SES # TOPICS
R1 Wind and Earthquake Loads (PDF)
R2 Flexural Analysis and Design of Beams (PDF)
R3 Shear in Beams (PDF)
R4 Reinforced Concrete Columns and Slabs (PDF)
R5 Design Procedures of Short Columns (PDF)
Introduction to Slab Systems (PDF)
R6 Tension Members and Connections (PDF)
R7 Compression Members (PDF)

Advance Soil Mechanics Lecture Notes from MIT-USA

The following set of lecture notes cover every major topic discussed in class.
Part II-1 Soil Composition, Index Properties and Soil Classification (PDF - 1.6 MB)
Part II-2 Soil Structure and Environmental Effects (PDF)
Part III-1 Dry Soil: Stresses (PDF)
Part III-2 Stress-Strain-Strength Properties (PDF - 1.0 MB)
Part III-3 Lateral Earth Pressures and Retaining Walls (PDF)
Part III-4 Shallow Foundations on Sand: Bearing Capacity (PDF - 3.0 MB)
Part IV-1 Effective Stress Principle and Capillarity (PDF)
Part IV-2 One-Dimensional Flow (PDF)
Part IV-2A Two-Dimensional Flow (PDF)
Part IV-3 Coefficient of Permeability (PDF 1 of 2) (PDF 2 of 2 - 2.0 MB)
Part IV-4 Stress-Strain-Strength Behavior of Saturated Clays (PDF - 2.4 MB)
Part IV-5 Lateral Earth Pressures (PDF)
Part IV-6 Slope Stability (PDF)
Part IV-7 Bearing Capacity (PDF)
Part V-1 Introduction, Pore Pressure Parameters and Undrained Shear (PDF)
Part V-2 Consolidation and Secondary Compression (PDF)
Part V-3 Stability Evaluation: Cohesive Soils (PDF)
Part V-4 Estimation of Design su in Practice (PDF - 2.0 MB)
Part V-5 Settlement Analyses (PDF - 3.0 MB)

Dynamics and Control I Lecture Notes from MIT-USA

    Bryan Owens and Frederick Jao prepared these notes specifically for MIT OpenCourseWare.
    SES # TOPICS
    I. Motion of a Single Particle
    L1 Newton's Laws, Cartesian and Polar Coordinates, Dynamics of a Single Particle (PDF)
    L2 Work-Energy Principle (PDF)
    L3 Dynamics of a Single Particle: Angular Momentum (PDF)
    II. Motion of Systems of Particles
    L4 Systems of Particles: Angular Momentum and Work-Energy Principle (PDF)
    L5 Systems of Particles: Example 1: Linear Momentum and Conservation of Energy, Example 2: Angular Momentum (PDF)
    L6 Collisions (PDF)
    III. 2D-Motion of Rigid Bodies
    L7 2D-Motion of Rigid Bodies: Kinematics (PDF)
    L8 2D-Motion of Rigid Bodies: Kinematics - Instant Centers; Kinetics (PDF)
    L9 2D-Motion of Rigid Bodies: Kinetics, Parallel Axis Theorem (PDF)
    L10 2D-Motion of Rigid Bodies: Falling Stick Example, Work-Energy Principle (PDF)
    L11 2D-Motion of Rigid Bodies: Finding Moments of Inertia, Rolling Cylinder with Hole Example (PDF)
    L12 2D-Motion of Rigid Bodies: Rolling Cylinder and Rocker Examples (PDF)
    IV. Introduction to Lagrangian Dynamics
    L13 Lagrangian Dynamics: Generalized Coordinates and Forces (PDF)
    L14 Lagrangian Dynamics: Virtual Work and Generalized Forces (PDF)
    L15 Lagrangian Dynamics: Derivations of Lagrange's Equations and Examples (PDF)
    L16 Lagrangian Dynamics: Examples (PDF)
    L17 Lagrangian Dynamics: Examples and Equilibrium Analysis (PDF)
    L18 Lagrangian Dynamics: Examples and Equilibrium Analysis (cont.) (PDF)
    L19 Lagrangian Dynamics: Examples and Equilibrium Analysis (cont.) (PDF)
    V. Vibrations
    L20 Vibrations: Second Order Systems with One Degree of Freedom - Free Response (PDF)
    L21 Vibrations: Second Order Systems with One Degree of Freedom - Forced Response (PDF)
    L22 Vibrations: Free Response of Multi-Degree-of-Freedom Systems (PDF)
    L23 Vibrations: Two Degrees of Freedom Systems - Wilberforce Pendulum (PDF)
    L24 Vibrations: Forced Response of Multi-Degree-of-Freedom Systems (PDF)

    Introduction to Civil Engineering Design

    SES # TOPICS
    L1 Introduction
    L2 Planning and Design Process
    L3 Materials, Loads, and Design Safety
    L4 Behavior and Properties of Concrete and Steel
    L5 Wind and Earthquake Loads
    L6 Design of Reinforced Concrete Beams for Flexure
    L7 Design of Reinforced Concrete Beams for Flexure
    L8 Design of Reinforced Concrete Beams for Shear
    L9 Guest Lecture: Project Introduction
    L10 Design of Reinforced Concrete Beams for Shear
    L11 Project Hour: Group Presentations on Site Visit Observation
    L12 Bond, Anchorage, and Serviceability
    L13 Bond, Anchorage, and Serviceability
    Project Discussions
    L14 Reinforced Concrete Columns
    L15 Discussion of Project Tasks
    L16 Exam 1 Review
    L17 Exam 1
    L18 Reinforced Concrete Columns
    L19 Special Topic Lecture: Prestressed Concrete
    L20 Reinforced Concrete Slabs
    L21 Special Lecture: Bridge Design— Beyond the Calculations
    L22 Introduction to Steel Design (PDF)
    L23 Tension Members and Connections (PDF)
    L24 Group Presentations
    L25 Compression Members (PDF)
    L26 Guest Lecture: Prestressed Concrete Systems
    L27 Bending Members (PDF)
    L28 Exam 2 Review
    L29 Exam 2
    L30 Structural Systems
    L31 Final Project Presentations
    L32 Final Project Presentations

    Computing and Data Analysis for Environmental Applications Lecture notes from MIT-USA

    LEC/REC # TOPICS
    1 Course Introduction (PDF)  
    2 Descriptive Statistics (PDF)  
    3 Probablility (PDF)
    4 Joint Probability, Independence, Repeated Trials (PDF)  
    5 Combinatorial Methods for Deriving Probabilities (PDF)
    6 Conditional Probability and Baye's Theorem (PDF)  
    7 Random Variables and Probability Distributions (PDF)  
    8 Expectation, Functions of a Random Variable (PDF)  
    9 Risk  
    10 Some Common Probability Distributions (PDF)
    11 Multivariate Probability (PDF)  
    12 Functions of Many Random Variables  
    13 Populations and Samples (PDF)  
    14 Estimation (PDF)  
    15 Confidence Intervals (PDF)  
    16 Testing Hypotheses about a Single Population (PDF)  
    17 Testing Hypotheses about Two Populations (PDF)  
    18 Small Sample Statistics (PDF)  
    19 Analysis of Variance (PDF)  
    20 Analysis of Variance (contd.) (PDF)  
    21 Multifactor Analysis of Variance (PDF)  
    22 Linear Regression (PDF)  
    23 Analyzing Regression Results (PDF)

    Advanced Soil Mechanics Lecture notes from MIT-USA

    The following set of lecture notes cover every major topic discussed in class.
    Part II-1 Soil Composition, Index Properties and Soil Classification (PDF - 1.6 MB)
    Part II-2 Soil Structure and Environmental Effects (PDF)
    Part III-1 Dry Soil: Stresses (PDF)
    Part III-2 Stress-Strain-Strength Properties (PDF - 1.0 MB)
    Part III-3 Lateral Earth Pressures and Retaining Walls (PDF)
    Part III-4 Shallow Foundations on Sand: Bearing Capacity (PDF - 3.0 MB)
    Part IV-1 Effective Stress Principle and Capillarity (PDF)
    Part IV-2 One-Dimensional Flow (PDF)
    Part IV-2A Two-Dimensional Flow (PDF)
    Part IV-3 Coefficient of Permeability (PDF 1 of 2) (PDF 2 of 2 - 2.0 MB)
    Part IV-4 Stress-Strain-Strength Behavior of Saturated Clays (PDF - 2.4 MB)
    Part IV-5 Lateral Earth Pressures (PDF)
    Part IV-6 Slope Stability (PDF)
    Part IV-7 Bearing Capacity (PDF)
    Part V-1 Introduction, Pore Pressure Parameters and Undrained Shear (PDF)
    Part V-2 Consolidation and Secondary Compression (PDF)
    Part V-3 Stability Evaluation: Cohesive Soils (PDF)
    Part V-4 Estimation of Design su in Practice (PDF - 2.0 MB)
    Part V-5 Settlement Analyses (PDF - 3.0 MB)

    Mechanics and Design of Concrete Structures Lecture notes from MIT-USA

    LEC # TOPICS DESIGN EXAMPLES
    1 Introduction; Design Criteria for Reinforced Concrete Structures (PDF)  
    2 Micro-cracking of Concrete; Stress-strain Behavior in Multiaxial Loading (PDF)  
    3 Failure Theories (PDF)  
    4 Concrete Plasticity (PDF)  
    5 Fracture Concepts (PDF)  
    6 Creep and Shrinkage Deformation (PDF)  
    7 Ductility and Deflections (PDF)  
    8 Shear Failures (PDF)  
    9 Shear Transfer; Shear Design (PDF) Failure Investigation of a Prestressed Concrete Bridge Girder (PDF)
    10 Biaxial Bending (PDF)  
    11 Beam Column Joints (PDF)  
    12 Quiz 1  
    13 Torsion (PDF) Shear and Torsion (PDF)
    14 Term Project Update – Progress Reports and Presentations  
    15 Torsion, Shear, and Flexure (PDF) Shear and Torsion (PDF)
    16 Yield Line Theory for Slabs (PDF) Analysis of Rectangular Slabs Using Yield Line Theory (PDF)
    17 R/C Thin Shell Structures (PDF)  
    18 R/C Thin Shell and Structures (cont.) (PDF)  
    19 Segmental Bridges / Tall Buildings (PDF)  
    20 Term Project Update – Presentations  
    21 Deterioration and Non-destructive Evaluation (NDE) of Concrete Structures (PDF)  
    22 Earthquake Resistant Design; Repair and Seismic Retrofit of Concrete Structures (PDF)  
    23 Quiz 2  
    24 Final Presentations  
    25 Final Presentations (cont.)  
    26 Review and Discussion  

    Structural Engineering Lecture notes from MIT-USA

    SES # TOPICS
    L1 Introduction
    L2 Planning and Design Process
    L3 Materials, Loads, and Design Safety
    L4 Behavior and Properties of Concrete and Steel
    L5 Wind and Earthquake Loads
    L6 Design of Reinforced Concrete Beams for Flexure
    L7 Design of Reinforced Concrete Beams for Flexure
    L8 Design of Reinforced Concrete Beams for Shear
    L9 Guest Lecture: Project Introduction
    L10 Design of Reinforced Concrete Beams for Shear
    L11 Project Hour: Group Presentations on Site Visit Observation
    L12 Bond, Anchorage, and Serviceability
    L13 Bond, Anchorage, and Serviceability
    Project Discussions
    L14 Reinforced Concrete Columns
    L15 Discussion of Project Tasks
    L16 Exam 1 Review
    L17 Exam 1
    L18 Reinforced Concrete Columns
    L19 Special Topic Lecture: Prestressed Concrete
    L20 Reinforced Concrete Slabs
    L21 Special Lecture: Bridge Design— Beyond the Calculations
    L22 Introduction to Steel Design (PDF)
    L23 Tension Members and Connections (PDF)
    L24 Group Presentations
    L25 Compression Members (PDF)
    L26 Guest Lecture: Prestressed Concrete Systems
    L27 Bending Members (PDF)
    L28 Exam 2 Review
    L29 Exam 2
    L30 Structural Systems
    L31 Final Project Presentations
    L32 Final Project Presentations

    Lecture Notes Engineering Mechanics Lecture notes from MIT-USA

    Free to download for Civil Engineering Books and Lecture Notes Engineering Mechanics Lecture notes from MIT-USA
    LEC # TOPICS DESIGN EXAMPLES
    1 Introduction; Design Criteria for Reinforced Concrete Structures (PDF)  
    2 Micro-cracking of Concrete; Stress-strain Behavior in Multiaxial Loading (PDF)  
    3 Failure Theories (PDF)  
    4 Concrete Plasticity (PDF)  
    5 Fracture Concepts (PDF)  
    6 Creep and Shrinkage Deformation (PDF)  
    7 Ductility and Deflections (PDF)  
    8 Shear Failures (PDF)  
    9 Shear Transfer; Shear Design (PDF) Failure Investigation of a Prestressed Concrete Bridge Girder (PDF)
    10 Biaxial Bending (PDF)  
    11 Beam Column Joints (PDF)  
    12 Quiz 1  
    13 Torsion (PDF) Shear and Torsion (PDF)
    14 Term Project Update – Progress Reports and Presentations  
    15 Torsion, Shear, and Flexure (PDF) Shear and Torsion (PDF)
    16 Yield Line Theory for Slabs (PDF) Analysis of Rectangular Slabs Using Yield Line Theory (PDF)
    17 R/C Thin Shell Structures (PDF)  
    18 R/C Thin Shell and Structures (cont.) (PDF)  
    19 Segmental Bridges / Tall Buildings (PDF)  
    20 Term Project Update – Presentations  
    21 Deterioration and Non-destructive Evaluation (NDE) of Concrete Structures (PDF)  
    22 Earthquake Resistant Design; Repair and Seismic Retrofit of Concrete Structures (PDF)  
    23 Quiz 2  
    24 Final Presentations  
    25 Final Presentations (cont.)  
    26 Review and Discussion