Geotechnical Engineering/Soil Mechanics

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About Course

The course on Geotechnical Engineering includes a study on engineering properties of soil and rock. In addition, it includes various properties of soil used for engineering analysis and soil identification.

Particle size distribution and consistency limits are some of the properties useful for soil identification and classification. Shear strength of soil, compaction, and consolidation are helpful in the engineering analysis of soil. Permeability, seepage, and earth pressure theories widen the scope of geotechnical engineering. The course is divided into different parts, and each part covers two to three topics clipped with a PowerPoint presentation. PPT’s are self-explaining and easy to understand. Also, the clips are of short duration for better understanding and remembrance. Students are advised to note down essential details and do discuss for any clarification or conceptual understanding.

Who this course is for:

  • Civil Engineering Graduates, PG Students, Competitive exam aspirants, Working Professional,
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What Will You Learn?

  • Engineering analysis of soil, classification of soil, properties of soil

Course Content

Soil Mechanics

  • Lecture 1 : Rock cycle
    00:00
  • Lecture 2 : Soil Formation
    00:00
  • Lecture 3 : Soil Classification
    00:00
  • Lecture 4 : Soil Classification (Contd.)
    00:00
  • Lecture 5 : Soil Classification (Contd.)
    00:00
  • Lecture 6 : Three-phase diagram
    00:00
  • Lecture 7 : Three-phase diagram (Contd.)
    00:00
  • Lecture 8 : Permeability and seepage
    00:00
  • Lecture 9 : Permeability and Seepage (Contd.)
    00:00
  • Lecture 10 : Permeability and seepage (Contd.)
    00:00
  • LECTURE 11: PERMEABILITY AND SEEPAGE
    00:00
  • LECTURE 12: PERMEABILITY AND SEEPAGE (Contd.)
    00:00
  • LECTURE 13: PERMEABILITY AND SEEPAGE (Contd.)
    00:00
  • LECTURE 14: COMPACTION OF SOILS
    00:00
  • Lecture 15: COMPACTION OF SOILS (Contd.)
    00:00
  • Lecture 16: DEEP DYNAMIC COMPACTION
    00:00
  • Lecture 17: PERMEABILITY/COMPACTION (Contd.)
    00:00
  • Lecture 18: Effective stress
    00:00
  • LECTURE 19: EFFECTIVE STRESS (Contd.)
    00:00
  • LECTURE 20: EFFECTIVE STRESS APLICATION
    00:00
  • LECTURE 21 : VERTICAL STRESS DISTRIBUTION
    00:00
  • LECTURE 22 : BOUSSINESQ POINT LOAD FORMULA
    00:00
  • LECTURE 23 : VERTICAL STRESS FOR DISTRIBUTED LOAD
    00:00
  • LECTURE 24 : VERTICAL STRESS
    00:00
  • LECTURE 25 : VERTICAL STRESS (Contd.)
    00:00
  • LECTURE 26 : VERTICAL STRESS (Contd.)
    00:00
  • LECTURE 27 : SHEAR STRENGTH
    00:00
  • LECTURE 28 : SHEAR STRENGTH (Contd.)
    00:00
  • LECTURE 29 : SHEAR STRENGTH (Contd.)
    00:00
  • LECTURE 30 : SHEAR STRENGTH (Contd.)
    00:00
  • LECTURE 31 SHEAR STRENGTH (Contd.)
    00:00
  • LECTURE 32 SHEAR STRENGTH (Contd.)
    00:00
  • LECTURE 33 SHEAR STRENGTH (Contd.)
    00:00
  • LECTURE 34 SHEAR STRENGTH (Contd.)
    00:00
  • LECTURE 35 SHEAR STRENGTH (Contd.)
    00:00
  • LECTURE 36 SHEAR STRENGTH (Contd.)
    00:00
  • Lecture 37: Compressibility of Soils
    00:00
  • Lecture 38: Compressibility of Soils (Contd.)
    00:00
  • Lecture 39: Compressibility of Soils (Contd.)
    00:00
  • Lecture 40: Compressibility Of Soil (Contd.)
    00:00
  • Lecture 41: Compressibility Of Soils (Contd.)
    00:00
  • Lecture 42: Compressibility of Soil (Contd.)
    00:00
  • Lecture 43: Compressibility Of Soils (Contd.)
    00:00
  • Lecture 44: Compressibility and Settlement of Soil
    00:00
  • Lecture 45: Compressibility and Settlement (Contd.)
    00:00
  • Lecture 46 : mod10
    00:00
  • Lecture 47 : mod10
    00:00
  • Lecture 48 : mod10
    00:00
  • Lecture 49 : mod10
    00:00
  • Lecture 50 : mod10
    00:00
  • Lecture 51 : mod10
    00:00
  • Lecture 52 : mod10
    00:00
  • Lecture 53 : mod10
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  • Lecture 54 : mod10
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  • Lecture 55 : mod10
    00:00
  • Lecture 56 : mod10
    00:00
  • Lecture 57 : mod10
    00:00
  • Lecture 58 : mod10
    00:00
  • Lecture 59 : mod10
    00:00
  • Lecture 60 : mod10
    00:00

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