Bubble Or Breakthrough
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Author | : Conrad Riker |
Publisher | : Conrad Riker |
Total Pages | : 177 |
Release | : 101-01-01 |
Genre | : Humor |
ISBN | : |
Are you intrigued by the world of technology but feel overwhelmed by its complexity? Do you yearn for a comprehensive guide that can take you from the dot-com era to the dawn of A.I. and beyond? Look no further. "Bubble or Breakthrough: A Journey Through Tech Bubbles and Transformative Technologies" is your ultimate source of knowledge, exploring past tech bubbles and examining the technologies that have shaped our world. This book addresses key questions such as: - How can we make sense of past tech bubbles? - What role does technology play in our lives? - Which technologies will shape our future? In this book, you will find: - A detailed overview of past tech bubbles and their outcomes. - An exploration of the rise of the internet and its impact on society. - A comprehensive analysis of online commerce and its evolution. - An examination of big data's effects on business and privacy. - A deep dive into blockchain technology and its applications beyond cryptocurrency. - An understanding of A.I. and machine learning's role in various industries. - A look at the advancements in 3D printing and its potential for decentralized manufacturing. - An insight into the current state and future potential of virtual and augmented reality. - A discussion on biotechnology's impact on medicine and other fields. - A comprehensive view on nanotechnology and its applications in various industries. - An analysis of energy technologies, including renewable and nuclear energy. - A thorough understanding of robotics and automation's potential across industries. If you want to understand technology's impact on our world and its future potential, then buy this book today. It's time to step into the world of tech bubbles and transformative technologies with "Bubble or Breakthrough: A Journey Through Tech Bubbles and Transformative Technologies".
Author | : Ilias S. Kotsireas |
Publisher | : Springer |
Total Pages | : 379 |
Release | : 2016-11-21 |
Genre | : Mathematics |
ISBN | : 3319437097 |
This volume results from the “Second International Conference on Dynamics of Disasters” held in Kalamata, Greece, June 29-July 2, 2015. The conference covered particular topics involved in natural and man-made disasters such as war, chemical spills, and wildfires. Papers in this volume examine the finer points of disasters through: Critical infrastructure protection Resiliency Humanitarian logistic Relief supply chains Cooperative game theory Dynamical systems Decision making under risk and uncertainty Spread of diseases Contagion Funding for disaster relief Tools for emergency preparedness Response, and risk mitigation Multi-disciplinary theories, tools, techniques and methodologies are linked with disasters from mitigation and preparedness to response and recovery. The interdisciplinary approach to problems in economics, optimization, government, management, business, humanities, engineering, medicine, mathematics, computer science, behavioral studies, emergency services, and environmental studies will engage readers from a wide variety of fields and backgrounds.
Author | : Jason William Hartwig |
Publisher | : Academic Press |
Total Pages | : 489 |
Release | : 2015-11-21 |
Genre | : Technology & Engineering |
ISBN | : 0128039906 |
Liquid Acquisition Devices for Advanced In-Space Cryogenic Propulsion Systems discusses the importance of reliable cryogenic systems, a pivotal part of everything from engine propulsion to fuel deposits. As some of the most efficient systems involve advanced cryogenic fluid management systems that present challenging issues, the book tackles issues such as the difficulty in obtaining data, the lack of quality data and models, and the complexity in trying to model these systems. The book presents models and experimental data based on rare and hard-to-obtain cryogenic data. Through clear descriptions of practical data and models, readers will explore the development of robust and flexible liquid acquisition devices (LAD) through component-level and full-scale ground experiments, as well as analytical tools. This book presents new and rare experimental data, as well as analytical models, in a fundamental area to the aerospace and space-flight communities. With this data, the reader can consider new and improved ways to design, analyze, and build expensive flight systems. - Presents a definitive reference for design ideas, analysis tools, and performance data on cryogenic liquid acquisition devices - Provides historical perspectives to present fundamental design models and performance data, which are applied to two practical examples throughout the book - Describes a series of models to optimize liquid acquisition device performance, which are confirmed through a variety of parametric component level tests - Includes video clips of experiments on a companion website
Author | : Frank Morgan |
Publisher | : American Mathematical Soc. |
Total Pages | : 131 |
Release | : 2020-08-03 |
Genre | : Mathematics |
ISBN | : 1470457377 |
Author | : Kenneth J. Baumeister |
Publisher | : |
Total Pages | : 24 |
Release | : 1966 |
Genre | : Drops |
ISBN | : |
Author | : |
Publisher | : |
Total Pages | : 240 |
Release | : 1966 |
Genre | : |
ISBN | : |
Author | : U.S. Nuclear Regulatory Commission |
Publisher | : |
Total Pages | : 96 |
Release | : 1979 |
Genre | : Nuclear energy |
ISBN | : |
Author | : André Pingel |
Publisher | : Cuvillier Verlag |
Total Pages | : 400 |
Release | : 2022-08-04 |
Genre | : Technology & Engineering |
ISBN | : 3736966423 |
Metal screens are commonly used as components for fluid handling in spacecraft and rocket tank designs. In most cases, the screens perform a passive separation of the propellant phases. The separation of the liquid from the gaseous propellant phase, is a special challenge. Liquid-gas phase separation means that the gaseous phase is allowed to enter a phase separation device while the liquid phase is blocked. The technical application of this process is the depressurization in a propellant tank. A certain amount of the gaseous propellant phase is vented from the tank through the gas port. The liquid propellant phase remains in the tank in order to be stored for the engine. However, if the tank causes a liquid movement during the depressurization, a part of the liquid can potentially enter the gas port. In order to prevent the unwanted liquid outflow, a separation of the liquid from the gas is necessary. This is possible with the aid of a double screen element and has already been performed for storable liquids in Earth’s gravity and microgravity as well as for cryogenic liquids in Earth’s gravity. At the current state of the art, the separation of the liquid from the gaseous phase of the cryogenic propellant hydrogen using a double screen element has not been performed in microgravity. However, with regard to a possible application, it is mandatory to investigate the function of the double screen element for the real propellant under relevant environmental conditions. In this work, a cryogenic test facility has been developed and operated successfully under Earth’s gravity and microgravity conditions using the drop tower at the University of Bremen. Hereby, the original, cryogenic propellant phases: liquid and gaseous hydrogen, have been used. The experiments show the appearance of the physical processes which are related to the retention capability of a double screen element against liquid hydrogen. Furthermore, these physical processes can obviously be influenced by an unknown boundary condition at the screens: the screen saturation. This unknown boundary condition in turn can obviously be influenced by a certain stimulus which causes a special, fluid mechanical process. A simplified mathematical and two numerical models have been developed which combine the observed, physical processes in the experiments. Two fitting parameters are introduced which influence the flow through screen pressure loss of the liquid and the gaseous hydrogen phase. After the fitting to experimental data, the two fitting parameters have been interpreted with respect to a possible screen saturation. The results lead to a prediction of the unknown boundary condition and indicate that a partial saturation of the screens with liquid could be present in each considered experiment. This can possibly lead to a major influence of the overall resistance of the double screen element against liquid hydrogen.
Author | : Limin Qiu |
Publisher | : Springer Nature |
Total Pages | : 1176 |
Release | : 2023-11-01 |
Genre | : Science |
ISBN | : 9819961289 |
This book gathers selected papers from the 28th International Cryogenic Engineering Conference and International Cryogenic Materials Conference 2022 (ICEC28-ICMC 2022), held virtually in Hangzhou, China on 25-29 April 2022, due to COVID-19 pandemic. Highlighting the latest findings on cryogenic engineering and cryogenic materials, it covers topics including: large-scale cryogenic components, processes and systems for refrigeration, separation, and liquefaction of cryogenic fluids, small-scale cryocoolers, cryogenic space applications, thermal insulation, thermal-physical properties of cryogenic fluids and materials, superconducting materials, devices, systems and applications, etc. The book offers valuable information and insights for academic researchers, engineers in the industry, and operators in the cryogenic field.
Author | : American Society of Mechanical Engineers. Winter Annual Meeting |
Publisher | : |
Total Pages | : 136 |
Release | : 1985 |
Genre | : Hydraulic transients |
ISBN | : |