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College Level Neural Nets [I] - Basic Nets: Math & Practice!

Learn Concepts, Intuitions & Complex Mathematical Derivations For Neural Networks and deep learning !

     
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₹519

This Course Includes

  • iconudemy
  • icon4.7 (51 reviews )
  • icon13h 21m
  • iconenglish
  • iconOnline - Self Paced
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About College Level Neural Nets [I] - Basic Nets: Math & Practice!

Deep Learning

is surely one of the hottest topics nowadays, with a tremendous amount of practical applications in many many fields.Those applications include, without being limited to, image classification, object detection, action recognition in videos, motion synthesis, machine translation, self-driving cars, speech recognition, speech and video generation, natural language processing and understanding, robotics, and many many more.

_Now you might be wondering :_

There is a very large number of courses well-explaining deep learning,

why should I prefer this specific course over them ?

The answer is :

You shouldn't

!

Most of the other courses heavily focus on "Programming" deep learning applications as fast as possible, without giving detailed explanations on

the underlying mathematical foundations that the field of deep learning was built upon

. And this is exactly the gap that my course is designed to cover.

It is designed to be used hand in hand with other programming courses, not to replace them.

Since this series is

heavily mathematical,

I will refer many many times during my explanations to sections from my own college level linear algebra course.

In general, being quite familiar with linear algebra is a real prerequisite for this course.

Please

have a look at the

course syllables

, and remember :

This is only part (I) of the deep learning series!

What You Will Learn?

  • Step By Step Conceptual Introduction For Neural Networks And Deep Learning [Even If You Are A Beginner] .
  • Understanding The Basic Perceptron[Neuron] Conceptually, Graphically, And Mathematically - Perceptron Convergence Theorem Proof .
  • Mathematical Derivations For Deep Learning Modules .
  • Step-By-Step Derivation Of BackPropagation Algorithm .
  • Vectorization Of BackPropagation .
  • Different Performance Metrics Like Performance - Recall - F1 Score - ROC & AUC .
  • Mathematical Derivation Of Cross-Entropy Cost Function .
  • Mathematical Derivation Of Back-Propagation Through Batch-Normalization .
  • Different Solved Examples On Various Topics Show moreShow less.