NOC:Solid-Fluid Operations

₹950.00
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Media Storage Type : 32 GB USB Stick

NPTEL Subject Matter Expert : Prof. Subrata Kumar Majumder

NPTEL Co-ordinating Institute : IIT Guwahati

NPTEL Lecture Count : 36

NPTEL Course Size : 5.5 GB

NPTEL PDF Text Transcription : Available and Included

NPTEL Subtitle Transcription : Available and Included (SRT)


Lecture Titles:

Lecture 1 - Introduction to Solid-Fluid Operations
Lecture 2 - Characteristics of Single particle
Lecture 3 - Particle size and Its distribution in mixture
Lecture 4 - Mechanism of Size Reduction
Lecture 5 - General Machines for Size Reduction
Lecture 6 - Laws of Energy for Size Reduction
Lecture 7 - Introduction on Size Enlargement
Lecture 8 - Mechanism of Size Enlargement
Lecture 9 - Equipment for Size Enlargement
Lecture 10 - Flow Past a Cylinder and Spherical Particle
Lecture 11 - Terminal velocity of single particle
Lecture 12 - Multiple particle Interaction/Sedimentation: Hindered settling velocity
Lecture 13 - Basic law and terminology of flow through granular bed
Lecture 14 - General expressions for flow through packed beds-Ergun Equation
Lecture 15 - Two-phase flow through packed bed
Lecture 16 - Mixing of Solids: Introduction
Lecture 17 - Degree of mixing and Its Assessment
Lecture 18 - Mixing and agitation of fluids/slurries
Lecture 19 - Basic understandings and applications of fluidization
Lecture 20 - Minimum Fluidization Velocity
Lecture 21 - Basic understanding of froth flotation
Lecture 22 - Separation of particles by Screening
Lecture 23 - Particulate Matter Separation by Gravity Settling Chamber
Lecture 24 - Particle Separation by Cyclone and Centrifuge
Lecture 25 - Particle Separation by Electrostatic Precipitator
Lecture 26 - Separation by Industrial Fabric (Bag) Filters
Lecture 27 - Wet Scrubber for Particle Removal
Lecture 28 - Filtration
Lecture 29 - Dead-End and Continuous Filtration
Lecture 30 - Reverse Osmosis
Lecture 31 - Introduction to Nanoparticles
Lecture 32 - Synthesis of Nanoparticles - Physical Method
Lecture 33 - Synthesis of Nanoparticles (Chemical Methods)
Lecture 34 - Adsorption: Principle and Applications
Lecture 35 - Analysis of Adsorption by Isotherms
Lecture 36 - Adsorption Kinetics

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