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DSS : Additional Theory questions
NITIN SURESH
1,01 тыс. подписчиков
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110 видео с канала:
NITIN SURESH
DSS : Additional Theory questions
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LECTURE 5: M1: Design steps; bolted connections
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Lecture 7: M5 : Type 1 Bolted Moment Connection
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Lecture 8: M3 : Laced column design
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Module 6: Timber Structures: Solved Previous year questions- DSS
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M1: Transportation Engineering 1: Q&A
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LECTURE 2 : LINEAR MEASUREMENTS
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Lecture: M4 : Design of Cantilever Slab
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Whole Circle and Quadrantal bearing :Additional explanatory video
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Lecture 3 Angular measurements part 1
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Lecture : Types of compass, Included Angle
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Lecture 4 : Fore bearing ,back bearing, dip , declination
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Lecture : Problem on Included angle
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Module 1 : Lecture 1: What is surveying
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Lecture: Local attraction problem 1[Included Angle Method]
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Lecture : Local attraction problem - introduction
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Overview on subject Surveying & Geomatics
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Lecture: M4 : Curve Surveying -part 4 ( compound curve)
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Lecture:M4: Curve Surveying-part 5(transition curve)
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Lecture: M4: Curves Surveying -part 2 ( setting out)
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Lecture:M4: Curve Surveying -part 1 (intro)
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Lecture: M4:Curve Surveying -part 3( rankines method)
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Lecture: Theodolite Surveying- Angle measurements
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Lecture: M4:Total station- Advantage, Application, Fundamental parameters
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Lecture: Triangulation Surveying- Intervisibility of Triangulation (part1)
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Lecture: Normal equation -Additional problems (part 2)
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Lecture : Normal Equation -Additional problem
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Lecture: Theory of Errors- Normal Equation
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Lecture : Theory of errors - Probable error , MPV.
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Lecture: Theory of errors- Law of weights
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Lecture: Theory of Errors - Types of errors
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LECTURE: Triangulation survey -Introduction
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Lecture: Volume - Trapezoidal and prismoidal rule- Problem 2, 3
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Lecture: Volume Introduction, Trapezoidal and prismoidal rule- Problem 1
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Lecture : Area of irregular boundary ( Unequal intervals ) Problem 3
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Lecture : Area of irregular boundary ( Equal intervals ) Problem 2
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Lecture: Finding Area : (Problem -regular interval)
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Lecture: Area using Mid-ordinate, Average ordinate, Trapezoidal, Simpson's rule.
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Lecture : Rise and Fall method
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Lecture :Height of instrument method-problem 1
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Lecture: Height of instrument method introduction (Collimation method)
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Lecture : TYPES OF LEVELLING
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Lecture : Leveling instruments
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Lecture : Local attraction problem- type 2
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Lecture: Local attraction problem [ Bearing method ]
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M6: Composting Previous year question:
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M5 :MSW: waste disposal methods -previous year questions
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Lecture: M6: Design of RCC Staircase- Problem :Type1
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Lecture:M6: Design of RCC Staircase
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Lecture: M6: Design of Axially loaded short column- Type 3: Helical reinforcement
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Lecture:M6: Design of Axially loaded short column- Type 2
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Lecture:M6: Design of Axially loaded short column- Type 1
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Lecture:M6: Design of RCC column - introduction
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Lecture: M4:Design of one-way slab-problem1
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Lecture : M3 : Doubly reinforced beam design - Analysis problem
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Lecture: Design of Doubly Reinforced Beam -Problem
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M1:Lecture 11: Design of RCC Singly reinforced Beam :Problem
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M1:Lecture 10; Design of singly reinforced beam- Steps
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Lecture : Limits state of collapse :Bond and development length part 2
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Lecture: Limits state of collapse : Bond and development length - Introduction
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Lecture: Limits state of collapse SHEAR: Numerical problem Type 3
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Lecture : Limits state of collapse- SHEAR; Numerical problem Type 2
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Lecture : Limits State of Collapse -SHEAR-Numerical problem -Type 1
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Lecture : Limits State of Collapse -SHEAR-Codal provisions
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M1: Lecture 9: Moment of resistance of RCC beam problem 2 & 3
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M1:Lecture 8: Moment of resistance of RCC beam problem 1
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M1: Lecture 7: Moment of resistance, failure modes
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M1: Lecture 6: Limit State Method- STRESS BLOCK PARAMETERS
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M1: Lecture 5: Limit State Method : Assumptions: Codal provisions
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M1: Lecture 3 :Design philosophies- WSM, ULM, LSM.
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M1: Lecture 2: Design of concrete structures- Design considerations
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M1: Lecture 1:Design of concrete structures- introduction (RCC vs PCC)
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Lecture 5: M5: Design of roof Truss- Purlin Design Introduction
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Lecture 4:M5: Roof Truss- Wind Load on truss ( problem 2)
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Lecture 3: M5: Roof Truss- Wind load on purlin
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Lecture 2: M5: Roof Truss- introduction, types, loads
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Lecture 1: M5: Design wind pressure
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Lecture 5: M4: Design of laterally unsupported beam - steps
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Lecture 6: M4: Laterally unsupported beam design
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Lecture 4: M4 : Laterally supported beam- High shear
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Lecture 3: M4: Laterally supported beam - Problem 2
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Lecture 2: M4:Design of laterally supported beam -problem1
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Lecture 1: M4:Design of Steel Beams- steps: laterally supported beam
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Lecture 7: M3:Design of Gusset base
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Lecture 5: M3: Built-up Section Design -Problem
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Lecture 6: M3: Design of Slab base
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Lecture 4: M3: Design of compression member- Angle strut design
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Lecture 3 ; M3 :Compression Member- Axial load capacity problem
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Lecture 2: M3: Design of Compression Members- Code provisions, design steps
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Lecture 1: M3: Introduction to compression members ( Slenderness ratio , effective length)
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Lecture 4 : M2: Tension Members: Design of Tension Members - double angle section.
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Lecture 3: M2: Tension Members- Numerical Problem 2 (Single Angle section)
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Lecture 2: M2: Tension Members - Numerical Problem 1
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Lecture 1:M2: Introduction to Tension members, IS 800 2007 provisions
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Lecture 14: M 1: Fillet welding Numerical problem ( Plug and slot welds)
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Lecture 13: M 1: Fillet welding Numerical problem 2 (Tie members)
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Lecture 12: M 1: Fillet welding Numerical problem (Tie members)
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Lecture 11: M 1: Welded connection -Numerical- part 1
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Lecture 10 : M 1: Welded connection- introduction
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Lecture 9: M 1: Problem on Bolted joint with packing plate
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Lecture 8 : M 1:Problem on efficiency of a bolted butt jointed connection
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Lecture 7 : M1 : Design a lap joint (problem)
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LECTURE 6: M1 : -Efficiency of a lap joint, PROBLEM
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LECTURE 4: M1 :Bolt failure criteria
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Lecture 3: M1 :Specifications of bolted connection
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Lecture 2 : M1 : Connections
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Module 1 : Lecture 1 : Steel as a construction material
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Lecture on Connection design (Design of steel structures)
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Lecture on Pressure and its Measurements (FM)
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Lecture on Disinfection (Environmental Engineering)
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Канал: NITIN SURESH
DSS : Additional Theory questions
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LECTURE 5: M1: Design steps; bolted connections
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Lecture 7: M5 : Type 1 Bolted Moment Connection
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Lecture 8: M3 : Laced column design
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Module 6: Timber Structures: Solved Previous year questions- DSS
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M1: Transportation Engineering 1: Q&A
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LECTURE 2 : LINEAR MEASUREMENTS
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Lecture: M4 : Design of Cantilever Slab
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Whole Circle and Quadrantal bearing :Additional explanatory video
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Lecture 3 Angular measurements part 1
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Lecture : Types of compass, Included Angle
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Lecture 4 : Fore bearing ,back bearing, dip , declination
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Lecture : Problem on Included angle
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Module 1 : Lecture 1: What is surveying
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Lecture: Local attraction problem 1[Included Angle Method]
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Lecture : Local attraction problem - introduction
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Overview on subject Surveying & Geomatics
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Lecture: M4 : Curve Surveying -part 4 ( compound curve)
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Lecture:M4: Curve Surveying-part 5(transition curve)
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Lecture: M4: Curves Surveying -part 2 ( setting out)
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Lecture:M4: Curve Surveying -part 1 (intro)
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Lecture: M4:Curve Surveying -part 3( rankines method)
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Lecture: Theodolite Surveying- Angle measurements
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Lecture: M4:Total station- Advantage, Application, Fundamental parameters
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Lecture: Triangulation Surveying- Intervisibility of Triangulation (part1)
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Lecture: Normal equation -Additional problems (part 2)
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Lecture : Normal Equation -Additional problem
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Lecture: Theory of Errors- Normal Equation
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Lecture : Theory of errors - Probable error , MPV.
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Lecture: Theory of errors- Law of weights
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Lecture: Theory of Errors - Types of errors
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LECTURE: Triangulation survey -Introduction
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Lecture: Volume - Trapezoidal and prismoidal rule- Problem 2, 3
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Lecture: Volume Introduction, Trapezoidal and prismoidal rule- Problem 1
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Lecture : Area of irregular boundary ( Unequal intervals ) Problem 3
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Lecture : Area of irregular boundary ( Equal intervals ) Problem 2
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Lecture: Finding Area : (Problem -regular interval)
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Lecture: Area using Mid-ordinate, Average ordinate, Trapezoidal, Simpson's rule.
Скачать
Lecture : Rise and Fall method
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Lecture :Height of instrument method-problem 1
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Lecture: Height of instrument method introduction (Collimation method)
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Lecture : TYPES OF LEVELLING
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Lecture : Leveling instruments
Скачать
Lecture : Local attraction problem- type 2
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Lecture: Local attraction problem [ Bearing method ]
Скачать
M6: Composting Previous year question:
Скачать
M5 :MSW: waste disposal methods -previous year questions
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Lecture: M6: Design of RCC Staircase- Problem :Type1
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Lecture:M6: Design of RCC Staircase
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Lecture: M6: Design of Axially loaded short column- Type 3: Helical reinforcement
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Lecture:M6: Design of Axially loaded short column- Type 2
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Lecture:M6: Design of Axially loaded short column- Type 1
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Lecture:M6: Design of RCC column - introduction
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Lecture: M4:Design of one-way slab-problem1
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Lecture : M3 : Doubly reinforced beam design - Analysis problem
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Lecture: Design of Doubly Reinforced Beam -Problem
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M1:Lecture 11: Design of RCC Singly reinforced Beam :Problem
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M1:Lecture 10; Design of singly reinforced beam- Steps
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Lecture : Limits state of collapse :Bond and development length part 2
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Lecture: Limits state of collapse : Bond and development length - Introduction
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Lecture: Limits state of collapse SHEAR: Numerical problem Type 3
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Lecture : Limits state of collapse- SHEAR; Numerical problem Type 2
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Lecture : Limits State of Collapse -SHEAR-Numerical problem -Type 1
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Lecture : Limits State of Collapse -SHEAR-Codal provisions
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M1: Lecture 9: Moment of resistance of RCC beam problem 2 & 3
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M1:Lecture 8: Moment of resistance of RCC beam problem 1
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M1: Lecture 7: Moment of resistance, failure modes
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M1: Lecture 6: Limit State Method- STRESS BLOCK PARAMETERS
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M1: Lecture 5: Limit State Method : Assumptions: Codal provisions
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M1: Lecture 3 :Design philosophies- WSM, ULM, LSM.
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M1: Lecture 2: Design of concrete structures- Design considerations
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M1: Lecture 1:Design of concrete structures- introduction (RCC vs PCC)
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Lecture 5: M5: Design of roof Truss- Purlin Design Introduction
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Lecture 4:M5: Roof Truss- Wind Load on truss ( problem 2)
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Lecture 3: M5: Roof Truss- Wind load on purlin
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Lecture 2: M5: Roof Truss- introduction, types, loads
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Lecture 1: M5: Design wind pressure
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Lecture 5: M4: Design of laterally unsupported beam - steps
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Lecture 6: M4: Laterally unsupported beam design
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Lecture 4: M4 : Laterally supported beam- High shear
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Lecture 3: M4: Laterally supported beam - Problem 2
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Lecture 2: M4:Design of laterally supported beam -problem1
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Lecture 1: M4:Design of Steel Beams- steps: laterally supported beam
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Lecture 7: M3:Design of Gusset base
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Lecture 5: M3: Built-up Section Design -Problem
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Lecture 6: M3: Design of Slab base
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Lecture 4: M3: Design of compression member- Angle strut design
Скачать
Lecture 3 ; M3 :Compression Member- Axial load capacity problem
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Lecture 2: M3: Design of Compression Members- Code provisions, design steps
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Lecture 1: M3: Introduction to compression members ( Slenderness ratio , effective length)
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Lecture 4 : M2: Tension Members: Design of Tension Members - double angle section.
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Lecture 3: M2: Tension Members- Numerical Problem 2 (Single Angle section)
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Lecture 2: M2: Tension Members - Numerical Problem 1
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Lecture 1:M2: Introduction to Tension members, IS 800 2007 provisions
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Lecture 14: M 1: Fillet welding Numerical problem ( Plug and slot welds)
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Lecture 13: M 1: Fillet welding Numerical problem 2 (Tie members)
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Lecture 12: M 1: Fillet welding Numerical problem (Tie members)
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Lecture 11: M 1: Welded connection -Numerical- part 1
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Lecture 10 : M 1: Welded connection- introduction
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Lecture 9: M 1: Problem on Bolted joint with packing plate
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Lecture 8 : M 1:Problem on efficiency of a bolted butt jointed connection
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Lecture 7 : M1 : Design a lap joint (problem)
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LECTURE 6: M1 : -Efficiency of a lap joint, PROBLEM
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LECTURE 4: M1 :Bolt failure criteria
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Lecture 3: M1 :Specifications of bolted connection
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Lecture 2 : M1 : Connections
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Module 1 : Lecture 1 : Steel as a construction material
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Lecture on Connection design (Design of steel structures)
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Lecture on Pressure and its Measurements (FM)
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Lecture on Disinfection (Environmental Engineering)
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