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Ultraviolet Light in Food Technology Principles and Applications

Community Economic Development

Advanced Computational Approaches for Water Treatment Applications in Food and Chemical Engineering

Advanced Computational Approaches for Water Treatment Applications in Food and Chemical Engineering

A rapid growth in global industrialization and population has triggered intense environmental pollution that has led to a water crisis resulting in the decay in the quality of human life and economic losses. Novel water purification techniques are expected to alleviate this challenge. Recently various water purification techniques along with different computational techniques have been developed. For instance water purification techniques such as electromagnetic water purification solute-surface interactions in water use of micro-magnetofluidic devices UV-led water purification and use of membranes can be thoroughly investigated by using a range of computation techniques such as molecular dynamics the lattice Boltzmann method and the Navier-Stokes method-based solver. Advanced Computational Approaches for Water Treatment: Applications in Food and Chemical Engineering presents these different numerical techniques and traditional modeling and simulation approaches to elaborate on and explain the various water purification techniques. Features: Serves as a dedicated reference for this emerging topic Discusses state of the art developments in advanced computational techniques for water purification Brings together diverse experience in this field in one reference text Provides a roadmap for future developments in the area This book is primarily intended for chemical engineers hydrologists water resource managers civil engineers environmental engineers food scientists and food engineers interested in understanding the numerical approaches for different water purification techniques such as membrane sedimentation filtration micromagnetofluidic device and ozone/UV among others. | Advanced Computational Approaches for Water Treatment Applications in Food and Chemical Engineering

GBP 170.00
1

Textbook of Cosmetic Dermatology

Brain Computer Interface EEG Signal Processing

Producing Great Sound for Film and Video Expert Tips from Preproduction to Final Mix

The War on Terrorism 21st-century Perspectives

Real World modo: The Authorized Guide In the Trenches with modo

Advanced Nanomaterials and Their Applications

Non-Coding RNAs Molecular Tools for Crop Improvement

Understanding Radiation Biology From DNA Damage to Cancer and Radiation Risk

Physics of the Invisible Sun Instrumentation Observations and Inferences

Physics of the Invisible Sun Instrumentation Observations and Inferences

Physics of the invisible Sun: Instrumentation Observations and Inferences provides a new updated perspectives of the dramatic developments in solar physics mainly after the advent of the space era. It focusses on the instrumentation exploiting the invisible windows of the electromagnetic spectrum for observing the outer fainter layers of the Sun. It emphasizes on the several technical and observational challenges and proceeds to discuss the discoveries related to energetic phenomena occurring in the transition region and corona. The book begins with giving a brief glimpse of the historical developments during the pre- and post-telescopic periods of visible and spectroscopic techniques ground-based optical and radio observing sites. Various types of telescopes and back-end instrumentation are presented based on photometry spectroscopy and polarimetry using the Zeeman and Hanle effects for measurement of magnetic fields and Doppler effect for radial velocity measurements. The book discusses theoretical and observational inferences based on detection of solar neutrinos and helioseismology as the probes of the hidden solar interior and tests of solar standard models. The characteristic properties and observational signatures of global solar p- and g-oscillations modes developments in local helioseismology and asteroseismology are discussed. The role of the solar magnetic field and differential rotation in the activity and magnetic cycles prediction methodologies and dynamo models are described. Observing the Sun in IR at the longer and the UV EUV XUV X-rays and gamma-rays at the shorter wavelengths are covered in detail. Observational challenges at each of these wavelengths are presented followed by the instrumentation for detection and imaging that have resulted in enhancing the understanding of various solar transient phenomena such as flares and CMEs. The outer most corona is described as a dynamic expanding component of the Sun from the theoretical and observational perspectives of the solar wind. It then discusses the topics of the Interplanetary magnetic field slow and fast solar wind interaction with magnetised and non-magnetised objects of the solar system the space weather and the physics of the heliosphere. The chapter on the future directions in solar physics presents a brief overview of the new major facilities in various observing windows and the future possibilities of observing the Sun from ground and vantage locations in space. Features: Systematic overview of the developments in instrumentation observational challenges and inferences derived from ground-based and space-borne solar projects. Advances in the understanding about the solar interior from neutrinos and helioseismology. Recent research results and future directions from ground- and space-based observations. This book may serve as a reference book for scientific researchers interested in multi-wavelength instrumentation and observational aspects of solar physics. It may also be used as a textbook for a graduate-level course. | Physics of the Invisible Sun Instrumentation Observations and Inferences

GBP 130.00
1