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Machine Learning in Biotechnology and Life Sciences

You're reading from   Machine Learning in Biotechnology and Life Sciences Build machine learning models using Python and deploy them on the cloud

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Product type Paperback
Published in Jan 2022
Publisher Packt
ISBN-13 9781801811910
Length 408 pages
Edition 1st Edition
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Author (1):
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Saleh Alkhalifa Saleh Alkhalifa
Author Profile Icon Saleh Alkhalifa
Saleh Alkhalifa
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Table of Contents (17) Chapters Close

Preface 1. Section 1: Getting Started with Data
2. Chapter 1: Introducing Machine Learning for Biotechnology FREE CHAPTER 3. Chapter 2: Introducing Python and the Command Line 4. Chapter 3: Getting Started with SQL and Relational Databases 5. Chapter 4: Visualizing Data with Python 6. Section 2: Developing and Training Models
7. Chapter 5: Understanding Machine Learning 8. Chapter 6: Unsupervised Machine Learning 9. Chapter 7: Supervised Machine Learning 10. Chapter 8: Understanding Deep Learning 11. Chapter 9: Natural Language Processing 12. Chapter 10: Exploring Time Series Analysis 13. Section 3: Deploying Models to Users
14. Chapter 11: Deploying Models with Flask Applications 15. Chapter 12: Deploying Applications to the Cloud 16. Other Books You May Enjoy

Exploring relational databases

There are numerous types of databases—such as Object-Oriented (OO) databases, graph databases, and relational databases—each of which offers a particular capability.

OO databases are best used in conjunction with OO data. Data within these databases tends to consist of objects that contain members such as fields, functions, and properties; however, relations between objects are not well captured.

On the other hand, graph databases, as the name suggests, are best used with data consisting of nodes and edges. One of the most common applications for graph databases in the biotechnology sector is in small-molecule drug design. Molecules consist of nodes and edges that connect together in one form or another—these relations are best captured in graph databases. However, the relationships between molecules are not well captured here either.

Finally, relational databases, as the name suggests, are best used for databases in which...

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