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RADIOACTIVE MATERIALS AND NUCLEAR ENGINEERING: Radiation Principles, Nuclear Energy, Radioactive Decay, Detection Systems, Reactor Fundamentals, Safety, and Applications - Softcover

Hill, Alvaro N.

 
9798174112704: RADIOACTIVE MATERIALS AND NUCLEAR ENGINEERING: Radiation Principles, Nuclear Energy, Radioactive Decay, Detection Systems, Reactor Fundamentals, Safety, and Applications

Inhaltsangabe

Radioactive materials and nuclear technologies play important roles in energy production, scientific research, medicine, industry, and other fields. Understanding these technologies requires a foundation in nuclear physics, radioactive decay, radiation measurement, energy conversion, reactor systems, and radiation safety.

RADIOACTIVE MATERIALS AND NUCLEAR ENGINEERING provides a structured introduction to the principles and engineering concepts associated with radioactive materials and nuclear systems.

The book examines the nature of radioactive decay, types of radiation, nuclear reactions, radiation measurement, detection systems, nuclear energy, and fundamental reactor concepts. It also explores how radioactive materials are handled within regulated environments and why shielding, monitoring, containment, risk assessment, and safety practices are important in nuclear applications.

Key topics include:

  • Fundamentals of nuclear engineering

  • Atomic nuclei and nuclear structure

  • Radioactive decay and half-life

  • Types and characteristics of ionizing radiation

  • Nuclear reactions and energy release

  • Radiation interaction with matter

  • Radiation detection and measurement

  • Radiation monitoring systems

  • Nuclear energy and energy conversion

  • Reactor components and fundamental concepts

  • Nuclear fuel and reactor materials

  • Radiation shielding principles

  • Nuclear safety and risk management

  • Applications of nuclear technology

The book approaches nuclear engineering as an interdisciplinary field involving physics, materials, electrical systems, mechanical systems, instrumentation, energy conversion, and safety engineering. Readers will examine how these areas interact in the design, operation, monitoring, and protection of nuclear systems.

Safety is treated as a fundamental engineering consideration throughout the discussion, with emphasis on radiation protection, monitoring, containment, risk awareness, and the importance of applicable regulations and professional standards.

For nuclear engineering students, physics students, engineers, technicians, researchers, energy professionals, and technical readers seeking a structured foundation in radioactive materials and nuclear engineering, RADIOACTIVE MATERIALS AND NUCLEAR ENGINEERING offers a broad examination of radiation principles, nuclear energy, radioactive decay, detection systems, reactor fundamentals, safety, and applications.

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