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portada Quantitative Biology. Mathematical Models of Life Processes (en Inglés)
Formato
Libro Físico
Año
2026
Idioma
Inglés
N° páginas
260
Encuadernación
Tapa Blanda
Dimensiones
28x21.6x1.3 cm
ISBN13
9798196329593

Quantitative Biology. Mathematical Models of Life Processes (en Inglés)

Z. Dickin (Autor) · Independently published · Tapa Blanda

Quantitative Biology. Mathematical Models of Life Processes (en Inglés) - Z. Dickin

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Reseña del libro "Quantitative Biology. Mathematical Models of Life Processes (en Inglés)"

Quantitative Biology represents one of the most important transformations in modern life sciences. For centuries, biology was primarily a descriptive discipline focused on observation, classification, and qualitative understanding of living organisms. While these approaches laid the foundation of biological knowledge, they were limited in their ability to explain how biological systems work in a predictive and systematic way.
With the rapid development of mathematics, physics, computer science, and data analytics, biology has undergone a profound shift. Today, biological systems are increasingly studied through mathematical models, computational simulations, statistical analysis, and artificial intelligence techniques. This interdisciplinary approach has given rise to the field of Quantitative Biology, which aims to understand life in terms of numbers, equations, algorithms, and networks.
This textbook has been designed to provide a comprehensive, structured, and integrated introduction to Quantitative Biology. It brings together key concepts from molecular biology, genetics, biophysics, systems biology, ecology, neuroscience, bioinformatics, biostatistics, and synthetic biology, presenting them in a unified framework.
The main objective of this book is to help learners develop a conceptual as well as analytical understanding of biological systems. Rather than memorizing isolated facts, students are encouraged to understand the underlying principles that govern life processes, such as:Growth and dynamics of populationsMolecular interactions and enzyme kineticsGenetic regulation and evolutionary changeNeural computation and brain modelingEcosystem structure and environmental interactionsData-driven biological discovery using AI and computational toolsEach chapter builds progressively, starting from fundamental concepts and advancing toward modern research topics such as molecular simulation, systems biology, and artificial intelligence in life sciences. Mathematical formulations are introduced in a simplified and accessible manner so that learners from both biology and interdisciplinary backgrounds can benefit.
This book is particularly useful for:Undergraduate and postgraduate students of life sciencesStudents preparing for competitive examinations (SSC, WBCS, NEET, CSIR-NET, etc.)Researchers entering computational and theoretical biologyAnyone interested in the integration of biology with mathematics and computingAn important feature of this textbook is its integrated approach. Instead of treating disciplines separately, it highlights how different areas of science interact to form a complete understanding of living systems. For example, enzyme kinetics is linked with thermodynamics, population biology is connected to differential equations, and genomics is combined with machine learning.
In addition to theoretical explanations, this book also emphasizes:Real-world biological applicationsModeling frameworksStatistical reasoningComputational methodsEmerging technologies in biologyThe field of Quantitative Biology is evolving rapidly, and new discoveries are continuously reshaping our understanding of life. Technologies such as CRISPR gene editing, single-cell sequencing, deep learning, and molecular simulation are revolutionizing biology and medicine. This textbook aims to provide a strong conceptual foundation to understand and engage with these advancements.
It is hoped that this work will inspire learners to appreciate biology not just as a descriptive science, but as a precise, predictive, and mathematically grounded discipline that holds the key to solving many of the world's most pressing challenges in health, environment, and technology.

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