The Very Witching Time of Night


Book Description

The book covers unusual and often surprising areas of horror film history: (1) The harrowingly tragic life of Dracula's leading lady, Helen Chandler, as intimately remembered by her sister-in-law. (2) John Barrymore's 1931 horror vehicles Svengali and The Mad Genius, and their rejection by the public. (3) The disastrous shooting of 1933's Murders in the Zoo, perhaps the most racy of all Pre-Code horror films. (4) A candid interview with the son of legendary horror star Lionel Atwill. (5) The censorship battles of One More River, as waged by Frankenstein director James Whale. (6) The adventures (and misadventures) of Boris Karloff as a star at Warner Bros. (7) The stage and screen versions of the horror/comedy Arsenic and Old Lace. (8) Production diaries of the horror noirs Cat People and The Curse of the Cat People. (9) Frankenstein Meets the Wolf Man revisited. (10) Horror propaganda: The production of Hitler's Madman. (11) Horror star John Carradine and the rise and fall of his Shakespearean Repertory Company. (12) The Shock! Theatre television phenomenon. And (13) A Tribute to Carl Laemmle, Jr., producer of the original Universal horror classics, including an interview with his lady friend of almost 40 years.




The Witching Hours


Book Description

The Witching Hours is an anthology of comics written and illustrated, by women and non-binary persons. Our aim is to explore the range of what a witch can be as well as celebrate powerful and magical women. This book features 11 stories ranging from fantasy to horror to slice of life, written and drawn by some of the best comics creators in Western Canada.




Switching Time


Book Description

"[A]n absorbing journey through a psychiatrist’s dauntingly challenging first case of multiple personality disorder--from the beginning of therapy to stable integration and recovery." -- Colin Ross, author of Multiple Personality Order and The Osiris Complex In 1989, Karen Overhill walks into psychiatrist Richard Baer’s office seeking help for her depression and a persistent memory problem: she routinely loses parts of her day, finds herself in places she doesn't remember going to, and is told about conversations she doesn’t remember having. While trying to discover the root cause of her memory loss, Baer works to gain Karen's trust, but it's years before he learns the true extent of the trauma buried in her past. What she eventually reveals is nearly beyond belief, a narrative of a childhood spent grappling with unimaginable horror. Then Baer receives an envelope in the mail. It’s marked with Karen’s return address but contains a letter from a little girl who writes that she’s seven years old and lives inside of Karen. Soon Baer receives letters from others claiming to be parts of Karen. Under hypnosis, these alternate Karen personalities reveal themselves in shocking variety. One “alter” is a young boy filled with frightening aggression; another an adult male who considers himself Karen’s protector; a third a sassy flirt who seeks dominance over the others. It’s only by compartmentalizing her pain, guilt, and fear in this fashion that Karen has been able to function since childhood. Realizing that his patient represents an extreme case of multiple personality disorder, Baer faces the daunting task of creating a therapy that will make Karen whole again. As powerful as Sybil or The Three Faces of Eve, Switching Time is the first complete account of such therapy to be told from the perspective of the treating physician, a stunningly devoted healer who worked selflessly for decades so that Karen could one day live as a single human being.




Witching Time


Book Description

It’s Mabon, and Llewellyn’s friends—Marigold and Rain—are running a harvest festival on their farm. Llewellyn and Raven open a vendor’s booth to join in the fun. But Raven soon discovers the farm has a deadly past. When she encounters the spirit of a teenaged girl who was thought to have been a runaway, she quickly discovers the girl was killed. As she attempts to prove the girl was the victim of a deadly ritual gone awry, a series of terrifying paranormal events begins to occur. Raven soon realizes that the spirit of the killer is still lurking on the land, and the race is on. Raven must prove that the girl was murdered before the killer’s ghost strikes again, because he’s willing to sacrifice anyone and anything who threatens to reveal the secrets of his past. Keywords: Fae, Gods and Goddesses, Demigods, witches, vampires, romance, urban fantasy, fantasy, magic, shapeshifters, faerie, Fae, fairy, weres, coyote shifter, stag shifter, ghosts, dragons, psychic, elemental magic, wolf shifters, strong women, kickass heroine, steamy, gargoyle, cats, mystery, demigod romance, fae romance, steamy, dwarves, amazons, elementals, mythic fantasy, surprising allies, other realms, changes in life, challenging foes, fantastic friendships, Pacific North West, spells, magical creatures, Celtic, Norse, Finnish, mythology




The Witching Hours: The Vampire Knife


Book Description

The first book in a spooky new series for only the bravest of readers--perfect for fans of The Spiderwick Chronicles. Now in paperback! Siblings Anna and Max love scary stories, but when they find an enchanted knife on a dark and stormy night in Transylvania, truth becomes stranger than fiction. Suddenly, they find themselves dragged into a world of monsters and magic...a world where it soon becomes all too clear that vampires are not just a fairy tale. The first book in a spooky new series for only the bravest of readers--perfect for fans of The Spiderwick Chronicles. Now in paperback! And when Max mysteriously vanishes, it's up to Anna to find him. But can the siblings find a way to survive their own scary story? This deliciously creepy book is a modern Brothers Grimm tale, full of adventure and fun frights that will have readers jumping in their seats and ripping through the pages to find out what happens next.




The Witching Hour


Book Description

NEW YORK TIMES BESTSELLER • From the beloved author of the Vampire Chronicles, the first installation of her spellbinding Mayfair Chronicles—the inspiration for the hit television series! “Extraordinary . . . Anne Rice offers more than just a story; she creates myth.”—The Washington Post Book World Rowan Mayfair, a beautiful woman, a brilliant practitioner of neurosurgery—aware that she has special powers but unaware that she comes from an ancient line of witches—finds the drowned body of a man off the coast of California and brings him to life. He is Michael Curry, who was born in New Orleans and orphaned in childhood by fire on Christmas Eve, who pulled himself up from poverty, and who now, in his brief interval of death, has acquired a sensory power that mystifies and frightens him. As these two, fiercely drawn to each other, fall in love and—in passionate alliance—set out to solve the mystery of her past and his unwelcome gift, an intricate tale of evil unfolds. Moving through time from today’s New Orleans and San Francisco to long-ago Amsterdam and a château in the Louis XIV’s France, and from the coffee plantations of Port au Prince, where the great Mayfair fortune is made and the legacy of their dark power is almost destroyed, to Civil War New Orleans, The Witching Hour is a luminous, deeply enchanting novel. The magic of the Mayfairs continues: THE WITCHING HOUR • LASHER • TALTOS




Switching Kinetics and Charge Transport in Organic Ferroelectrics


Book Description

The continued digitalization of our society means that more and more things are getting connected electronically. Since currently used inorganic electronics are not well suited for these new applications because of costs and environmental issues, organic electronics can play an important role here. These essentially plastic materials are cheap to produce and relatively easy to recycle. Unfortunately, their poor performance has so far hindered widespread application beyond displays. One key component of any electronic device is the memory. For organic electronics several technologies are being investigated that could serve as memories. One of these are the ferroelectrics, materials that have a spontaneous electrical polarization that can be reversed with an electric field. This bistable polarization which shows hysteresis makes these materials excellent candidates for use as memories. This thesis focuses on a specific type of organic ferroelectric, the supramolecular discotics. These materials consist of disk?like molecules that form columns in which all dipolar groups are aligned, giving a macroscopic ferroelectric polarization. Of particular interest are the benzenetricarboxamides (BTA), which are used as a model system for the whole class of discotic ferroelectrics. BTA uses a core?shell architecture which allows for easy modification of the molecular structure and thereby the ferroelectric properties. To gain a deeper understanding of the switching processes in this organic ferroelectric BTA, both microscopic and analytical modeling are used. This is supported by experimental data obtained through electrical characterization. The microscopic model reduces the material to a collection of dipoles and uses electrostatics to calculate the probability that these dipoles flip. These flipping rates are the input for a kinetic Monte Carlo simulation (kMC), which simulates the behavior of the dipoles over time. With this model we simulated three different switching processes on experimental time and length scales: hysteresis loops, spontaneous depolarization, and switching transients. The results of these simulations showed a good agreement with experiments and we can rationalize the obtained parameter dependencies in the framework of thermally activated nucleation limited switching (TA?NLS). The microscopic character of the model allows for a unique insight into the nucleation process of the polarization switching. We found that nucleation happens at different locations for field driven polarization switching as compared to spontaneous polarization switching. Field?driven nucleation happens at the contacts, whereas spontaneous depolarization starts at defects. This means that retention times in disordered ferroelectrics could be improved by reducing the disorder, without affecting the coercive field. Detailed analysis of the nucleation process also revealed a critical nucleation volume that decreases with applied field, which explains the Merz?like field?dependence of the switching time observed in experiments. In parallel to these microscopic simulations we developed an analytical framework based on the theory of TA?NLS. This framework is mainly focused on describing the switching transients of disordered ferroelectrics. It can be combined with concepts of the Preisach model, which considers a non?ideal ferroelectric as a collection of ideal hysterons. We were able to relate these hysterons and the distribution in their up? and down?switching fields to the microscopic structure of the material and use the combined models to explain experimentally observed dispersive switching kinetics. Whereas ferroelectrics on their own could potentially serve as memories, the readout of ferroelectric memories becomes easier if they are combined with semiconductors. We have introduced several molecular materials following the same design principle of a core?shell structure, which uniquely combine ferroelectricity and semiconductivity in one material. The experimental IV?curves of these materials could be described using an asymmetric Marcus hopping model and show their potential as memories. The combination of modeling and experimental work in this thesis thereby provides an increased understanding of organic ferroelectrics, which is crucial for their application as memories.




Consensus Tracking of Multi-agent Systems with Switching Topologies


Book Description

Consensus Tracking of Multi-agent Systems with Switching Topologies takes an advanced look at the development of multi-agent systems with continuously switching topologies and relay tracking systems with switching of agents. Research problems addressed are well defined and numerical examples and simulation results are given to demonstrate the engineering potential. The book is aimed at advanced graduate students in control engineering, signal processing, nonlinear systems, switched systems and applied mathematics. It will also be a core reference for control engineers working on nonlinear control and switched control, as well as mathematicians and biomedical engineering researchers working on complex systems. - Discusses key applications and the latest advances in distributed consensus tracking methods - Offers a clear and comprehensive overview on the recent development of multi-agent systems with switching topologies - Offers graduate students and beginning engineers a core reference on complex systems analysis and cooperative control




Autonomous Safety Control of Flight Vehicles


Book Description

Aerospace vehicles are by their very nature a crucial environment for safety-critical systems. By virtue of an effective safety control system, the aerospace vehicle can maintain high performance despite the risk of component malfunction and multiple disturbances, thereby enhancing aircraft safety and the probability of success for a mission. Autonomous Safety Control of Flight Vehicles presents a systematic methodology for improving the safety of aerospace vehicles in the face of the following occurrences: a loss of control effectiveness of actuators and control surface impairments; the disturbance of observer-based control against multiple disturbances; actuator faults and model uncertainties in hypersonic gliding vehicles; and faults arising from actuator faults and sensor faults. Several fundamental issues related to safety are explicitly analyzed according to aerospace engineering system characteristics; while focusing on these safety issues, the safety control design problems of aircraft are studied and elaborated on in detail using systematic design methods. The research results illustrate the superiority of the safety control approaches put forward. The expected reader group for this book includes undergraduate and graduate students but also industry practitioners and researchers. About the Authors: Xiang Yu is a Professor with the School of Automation Science and Electrical Engineering, Beihang University, Beijing, China. His research interests include safety control of aerospace engineering systems, guidance, navigation, and control of unmanned aerial vehicles. Lei Guo, appointed as "Chang Jiang Scholar Chair Professor", is a Professor with the School of Automation Science and Electrical Engineering, Beihang University, Beijing, China. His research interests include anti-disturbance control and filtering, stochastic control, and fault detection with their applications to aerospace systems. Youmin Zhang is a Professor in the Department of Mechanical, Industrial and Aerospace Engineering, Concordia University, Montreal, Québec, Canada. His research interests include fault diagnosis and fault-tolerant control, and cooperative guidance, navigation, and control (GNC) of unmanned aerial/space/ground/surface vehicles. Jin Jiang is a Professor in the Department of Electrical & Computer Engineering, Western University, London, Ontario, Canada. His research interests include fault-tolerant control of safety-critical systems, advanced control of power plants containing non-traditional energy resources, and instrumentation and control for nuclear power plants.




Optical Switching


Book Description

OPTICAL SWITCHING Comprehensive coverage of optical switching technologies and their applications in optical networks Optical Switching: Device Technology and Applications in Networks delivers an accessible exploration of the evolution of optical networks with clear explanations of the current state-of-the-art in the field and modern challenges in the development of Internet-of-Things devices. A variety of optical switches—including MEMS-based, magneto, photonic, and SOA-based—are discussed, as is the application of optical switches in networks. The book is written in a tutorial style, easily understood by both undergraduate and graduate students. It describes the fundamentals and recent developments in optical switch networks and examines the architectural and design challenges faced by those who design and construct emerging optical switch networks, as well as how to overcome those challenges. The book offers ways to assess and analyze systems and applications, comparing a variety of approaches available to the reader. It also provides: A thorough introduction to switch characterization, including optical, electro optical, thermo optical, magneto optical, and acoustic-optic switches Comprehensive explorations of MEMS-based, SOA-based, liquid crystal, photonic crystal, and optical electrical optical (OEO) switches Practical discussions of quantum optical switches, as well as nonlinear optical switches In-depth examinations of the application of optical switches in networks, including switch fabric control and optical switching for high-performance computing Perfect for researchers and professionals in the fields of telecommunications, Internet of Things, and optoelectronics, Optical Switching: Device Technology and Applications in Networks will also earn a place in the libraries of advanced undergraduate and graduate students studying optical networks, optical communications, and sensor applications.