Random Winds


Book Description

A tragedy on a cold Adirondack day robbed country doctor Enoch Farrell of his three oldest children. Then all his hopes rested with his son, Martin, who dreamed of becoming a doctor too. Intelligent, gifted Martin could have a brilliant future. All that stood in his way was his family's poverty—until he met wealthy, beautiful Mary Fern Meig and her sister, Jessie, and everything changed forever. Moving from a teeming New York hospital to the elite operating theaters of London, Martin Farrell is about to learn the price of success—a secret bargain with the Meigs that could resonate into the next generation . . . and test the strength of a man and a woman's passion across the coming years . . . Praise for Random Winds “Wonderful . . . A convincing, sweeping novel . . . A real page-turner.”—The Philadelphia Inquirer “Impossible to put down.”—South Bend Tribune “Engrossing.”—Publishers Weekly “Richly woven. . . . A twisting and complex story that touches the lives of everyone.”—UPI




Energy Balance Climate Models


Book Description

Energy Balance Climate Models Written by renowned experts in the field, this first book to focus exclusively on energy balance climate models provides a concise overview of the topic. It covers all major aspects, from the simplest zero-dimensional models, proceeding to horizontally and vertically resolved models. The text begins with global average models, which are explored in terms of their elementary forms yielding the global average temperature, right up to the incorporation of feedback mechanisms and some analytical properties of interest. The eff ect of stochastic forcing is then used to introduce natural variability in the models before turning to the concept of stability theory. Other one dimensional or zonally averaged models are subsequently presented, along with various applications, including chapters on paleoclimatology, the inception of continental glaciations, detection of signals in the climate system, and optimal estimation of large scale quantities from point scale data. Throughout the book, the authors work on two mathematical levels: qualitative physical expositions of the subject material plus optional mathematical sections that include derivations and treatments of the equations along with some proofs of stability theorems. A must-have introduction for policy makers, environmental agencies, and NGOs, as well as climatologists, molecular physicists, and meteorologists.







NASA Technical Paper


Book Description







Bare Tree and Little Wind


Book Description

A lyrical, captivating retelling of the Palm Sunday and Easter story from National Book Award nominee Mitali Perkins, author of Rickshaw Girl, that is sure to become a beloved tradition for families of faith. Little Wind and the trees of Jerusalem can't wait for Real King to visit. But Little Wind is puzzled when the king doesn't look how he expected. His wise friend Bare Tree helps him learn that sometimes strength is found in sacrifice, and new life can spring up even when all hope seems lost. This story stands apart for its imagination, endearing characters, and how it weaves Old Testament imagery into Holy Week and the promise of Jesus's triumphant return. While the youngest readers will connect to the curious Little Wind, older children and parents will appreciate the layers of meaning and Scriptural references in the story, making it a book families can enjoy together year after year.




Transportation


Book Description




Quantum Dynamics of Submicron Structures


Book Description

Techniques for the preparation of condensed matter systems have advanced considerably in the last decade, principally due to the developments in microfabrication technologies. The widespread availability of millikelvin temperature facilities also led to the discovery of a large number of new quantum phenomena. Simultaneously, the quantum theory of small condensed matter systems has matured, allowing quantitative predictions. The effects discussed in Quantum Dynamics of Submicron Structures include typical quantum interference phenomena, such as the Aharonov-Bohm-like oscillations of the magnetoresistance of thin metallic cylinders and rings, transport through chaotic billiards, and such quantization effects as the integer and fractional quantum Hall effect and the quantization of the conductance of point contacts in integer multiples of the `conductance quantum'. Transport properties and tunnelling processes in various types of normal metal and superconductor tunnelling systems are treated. The statistical properties of the quantum states of electrons in spatially inhomogeneous systems, such as a random, inhomogeneous magnetic field, are investigated. Interacting systems, like the Luttinger liquid or electrons in a quantum dot, are also considered. Reviews are given of quantum blockade mechanisms for electrons that tunnel through small junctions, like the Coulomb blockade and spin blockade, the influence of dissipative coupling of charge carriers to an environment, and Andreev scattering. Coulomb interactions and quantization effects in transport through quantum dots and in double-well potentials, as well as quantum effects in the motion of vortices, as in the Aharonov-Casher effect, are discussed. The status of the theory of the metal-insulator and superconductor-insulator phase transitions in ordered and disordered granular systems are reviewed as examples in which such quantum effects are of great importance.







Structural Dynamics with Applications in Earthquake and Wind Engineering


Book Description

This book offers a comprehensive introduction to the theory of structural dynamics, highlighting practical issues and illustrating applications with a large number of worked out examples. In the spirit of “learning by doing” it encourages readers to apply immediately these methods by means of the software provided, allowing them to become familiar with the broad field of structural dynamics in the process. The book is primarily focused on practical applications. Earthquake resistant design is presented in a holistic manner, discussing both the underlying geophysical concepts and the latest engineering design methods and illustrated by fully worked out examples based on the newest structural codes. The spectral characteristics of turbulent wind processes and the main analysis methods in the field of structural oscillations due to wind gusts and vortex shedding are also discussed and applications illustrated by realistic examples of slender chimney structures. The user‐friendly software employed is downloadable and can be readily used by readers to tackle their own problems.