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Probabilistic Deep Learning: With Python, Keras and TensorFlow Probability
Probabilistic Deep Learning: With Python, Keras and TensorFlow Probability teaches the increasingly popular probabilistic approach to deep learning that allows you to refine your results more quickly and accurately without much trial-and-error testing.
Probabilistic Deep Learning: With Python, Keras and TensorFlow Probability
Artículo nº.: 31410831

Probabilistic Deep Learning: With Python, Keras and TensorFlow Probability

Artículo nº.: 31410831

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Probabilistic Deep Learning: With Python, Keras and TensorFlow Probability teaches the increasingly popular probabilistic approach to deep learning that allows you to refine your results more quickly and accurately without much trial-and-error testing.
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Comprehensive Guide
This book provides a complete introduction to probabilistic deep learning, integrating theory with practical applications, making it suitable for beginners and practitioners alike.
Hands-On Python
Utilizes Python, Keras, and TensorFlow Probability, offering practical coding examples that empower readers to implement probabilistic models in their own projects effortlessly.
Expert Insights
Written by knowledgeable authors, the book includes expert insights and best practices, ensuring readers receive reliable information to enhance their understanding and skills in this advanced field.

Detalles del producto

Explore the world of TensorFlow Probability and Keras with Python. Get the 1st edition of Probabilistic Deep Learning book from Ubuy Aruba and master the latest techniques.
  • Probabilistic Deep Learning is a hands-on guide to the principles that support neural networks. Learn to improve network performance with the right distribution for different data types, and discover Bayesian variants that can state their own uncertainty to increase accuracy. This book provides easy-to-apply code and uses popular frameworks to keep you focused on practical applications.SummaryProbabilistic Deep Learning: With Python, Keras and TensorFlow Probability teaches the increasingly popular probabilistic approach to deep learning that allows you to refine your results more quickly and accurately without much trial-and-error testing. Emphasizing practical techniques that use the Python-based Tensorflow Probability Framework, you’ll learn to build highly-performant deep learning applications that can reliably handle the noise and uncertainty of real-world data.About the technologyThe world is a noisy and uncertain place. Probabilistic deep learning models capture that noise and uncertainty, pulling it into real-world scenarios. Crucial for self-driving cars and scientific testing, these techniques help deep learning engineers assess the accuracy of their results, spot errors, and improve their understanding of how algorithms work.About the bookProbabilistic Deep Learning is a hands-on guide to the principles that support neural networks. Learn to improve network performance with the right distribution for different data types, and discover Bayesian variants that can state their own uncertainty to increase accuracy. This book provides easy-to-apply code and uses popular frameworks to keep you focused on practical applications.What's insideExplore maximum likelihood and the statistical basis of deep learningDiscover probabilistic models that can indicate possible outcomesLearn to use normalizing flows for modeling and generating complex distributionsUse Bayesian neural networks to access the uncertainty in the modelAbout the readerFor experienced machine learning developers.About the authorOliver Dürr is a professor at the University of Applied Sciences in Konstanz, Germany. Beate Sick holds a chair for applied statistics at ZHAW and works as a researcher and lecturer at the University of Zurich. Elvis Murina is a data scientist.Table of ContentsPART 1 - BASICS OF DEEP LEARNING1 Introduction to probabilistic deep learning2 Neural network architectures3 Principles of curve fittingPART 2 - MAXIMUM LIKELIHOOD APPROACHES FOR PROBABILISTIC DL MODELS4 Building loss functions with the likelihood approach5 Probabilistic deep learning models with TensorFlow Probability6 Probabilistic deep learning models in the wildPART 3 - BAYESIAN APPROACHES FOR PROBABILISTIC DL MODELS7 Bayesian learning8 Bayesian neural networks
Publisher Manning
Publication date November 10, 2020
Edition 1st
Language English
Print length 296 pages
ISBN-10 1617296074
ISBN-13 978-1617296079
Item Weight 7.4 ounces (209.79 grams)
Dimensions 7.38 x 0.3 x 9.25 inches (18.7 x 0.8 x 23.5 cm)

¿Quién debería comprarlo?

Suitable For
  • Data Scientists

    Perfect for data scientists seeking to incorporate probabilistic models into their analyses using Python libraries like Keras.

  • Machine Learning Engineers

    Ideal for engineers who want to develop robust machine learning models applying probabilistic approaches in TensorFlow.

  • Students & Educators

    Great resource for students and educators aiming to understand probabilistic deep learning concepts and their practical applications.

Not Suitable For
  • Beginner Programmers

    Not suitable for beginners lacking foundational programming skills and understanding of machine learning principles.

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Intelligence & Semantics Editorial Review

**** "Probabilistic Deep Learning: With Python, Keras and TensorFlow Probability" offers an intriguing journey into the realm of deep learning with a particular focus on its probabilistic elements. Customers have lauded the authors for their ability to present complex concepts in a friendly and approachable manner. Reviewers express appreciation for the clarity with which topics such as maximum likelihood estimation using neural networks, Bayesian neural networks, and normalizing flows are articulated. This unique perspective aids readers in grasping advanced ideas that might otherwise seem daunting. While the book starts with a basic introduction to deep learning and TensorFlow—a section that some readers found somewhat light—the second half delves into more substantial and useful content. However, several reviews indicate that this section still lacks the depth some readers may desire. Despite the engaging delivery of information, there is a notable concern regarding the quality of editing throughout the text. Multiple reviewers have pointed out errors on almost every page, detracting from the overall reading experience. In conclusion, while "Probabilistic Deep Learning" presents an accessible introduction to advanced concepts in the field, readers should be prepared for issues with editing and superficial coverage of some topics. **

Reseñas y valoraciones de clientes

4.4
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Ventajas

  • Friendly and approachable writing style
  • Clear explanations of complex concepts
  • Unique perspective on probabilistic deep learning techniques
  • Potential applications of topics discussed, particularly normalizing flows

Desventajas

  • Basic introductory content may not satisfy advanced readers

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