Products related to Storage:
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Cold Storage. Przechowalnia śmierci
Dla miłośników Michaela Crichtona Genialny debiut scenarzysty Jurassic Park, Mision: Impossible i Spider-Mana: przerażająca, karkołomna misja trojga nieznajomych – aby uratować świat, muszą powstrzymać wysoce zakaźny, śmiercionośny organizm. Agent Pentagonu do spraw bezpieczeństwa narodowego i bioterroryzmu, Roberto Diaz, zostaje wysłany w celu zbadania podejrzenia biochemicznego ataku. Odkrywa coś znacznie gorszego niż znana do tej pory człowiekowi broń biochemiczna: organizm o wyjątkowej zdolności do mutacji, którego siła rażenia może doprowadzić do całkowitego zniszczenia życia na Ziemi. Aby nie dopuścić do globalnej katastrofy, Diaz ukrywa próbki niebezpiecznego organizmu w podziemnej chłodni, zbudowanej pod mało używanym magazynem wojskowym. Po dziesięcioleciach tkwienia w zapomnianej piwnicy obcemu organizmowi udaje się wydostać na zewnątrz. Wygłodniały atakuje w śmiertelnym szale. W pierwszej kolejności zagrożeni są niczego nieświadomi strażnicy dawnego obiektu wojskowego: Naomi Williams – samotna matka i Travis Meacham – były skazaniec. Jedyną osobą, która wie, jak powstrzymać zarazę, jest emerytowany już agent Diaz. Wszyscy troje stają przed ryzykownym wyzwaniem. Ich jedyną bronią są łut szczęścia, odwaga oraz… czarne poczucie humoru. Czy to wystarczy, aby ocalić ludzkość?
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Handbook of Energy Storage
The authors of this Handbook offer a comprehensive overview of the various aspects of energy storage. After explaining the importance and role of energy storage, they discuss the need for energy storage solutions with regard to providing electrical power, heat and fuel in light of the Energy Transition. The book’s main section presents various storage technologies in detail and weighs their respective advantages and disadvantages. Sections on sample practical applications and the integration of storage solutions across all energy sectors round out the book. A wealth of graphics and examples illustrate the broad field of energy storage, and are also available online. The book is based on the 2nd edition of the very successful German book Energiespeicher. It features a new chapter on legal considerations, new studies on storage needs, addresses Power-to-X for the chemical industry, new Liquid Organic Hydrogen Carriers (LOHC) and potential-energy storage, and highlights the latest cost trends and battery applications. “Finally – a comprehensive book on the Energy Transition that is written in a style accessible to and inspiring for non-experts.” Franz Alt, journalist and book author “I can recommend this outstanding book to anyone who is truly interested in the future of our country. It strikingly shows: it won’t be easy, but we can do it.” Prof. Dr. Harald Lesch, physicist and television host
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Mathematical modeling of biofuel synthesis and storage
The book is divided into eight chapters, where the reader will find works carried out by the Fuel Analysis Laboratory of the State University of Londrina, addressing the analysis of biofuel mixtures from different raw materials; optimization of alcoholic fermentation of extracts obtained from native Brazilian fruits; mathematical modeling in the efficiency of natural and synthetic antioxidants; the influence of metallic contaminants in oxidation; evaluation of catalysts in the biodiesel production and a proposal of mechanisms for the oxidation reaction in the presence of transition metals.
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Design and Construction of LNG Storage Tanks
Weltweit wird die Nutzung von Erdgas als Primärenergieträger noch über Jahrzehnte unverzichtbar bleiben. Dies gilt sowohl für Industrie- und Schwellenländer als auch für Entwicklungsländer. Bedingt durch die geringen Verunreinigungen gilt Erdgas unter den fossilen Brennstoffen als ein klimaschonender, da CO2-Emissionen armer, aber auch als ein bezahlbarer Energieträger. Um den Transport über weite Strecken wie auch über Ozeane zu ermöglichen - und damit eine wirtschaftliche und politische Alternative zu Pipelines zu erzeugen - wird das Gas unter erheblicher Volumenreduktion verflüssigt und mit Schiffen transportiert. An den Export- und Importhäfen sind Flüssiggastanks zur temporären Lagerung und zur weiteren Nutzung erforderlich. Die Tendenz zu kleineren Verflüssigungs- bzw. Verdampfungsanlagen mit den zugehörigen Lagertanks für die Nutzung als Schiffstreibstoff hat neue Marktteilnehmer hervorgebracht, die oftmals noch nicht über die erforderliche Erfahrung und technische Kompetenz verfügen. Der Verweis auf alle vorhandenen Normen reicht nicht aus, um widerspruchsfreie und dem Stand der Technik entsprechende Vorgaben und Anforderungen zu definieren. Durch die Umstellung auf europäische Normung wurden die Überarbeitung und Anpassung der vorhandenen nationalen Normen auf einen europäischen Standard unumgänglich. Komitees und Normenausschüsse auf nationaler und internationaler Ebene haben die Arbeit aufgenommen, um die Normenreihe EN 14620 zu aktualisieren und zu ergänzen. Aber auch in den USA werden die entsprechenden Vorschriften aktualisiert. Die Überarbeitung der 2011 erstmals erschienenen amerikanischen Vorschrift des American Concrete Institute ACI 376 "Requirements for Design and Construction of Concrete Structures for the Containment of Refrigerated Liquefied Gases" wird im Frühjahr 2019 abgeschlossen und die Vorschrift mit detaillierten Angaben zu Planung und Ausführung im Herbst veröffentlicht. Das vorliegende Buch gibt einen Überblick über den Stand der Technik hinsichtlich Planung und Ausführung von Flüssigerdgastanks (LNG-Tanks). Da die Thematik sehr umfangreich und vielschichtig ist, wird hier eine Einführung in die einzelnen Bereiche gegeben, wie zum Beispiel Anforderungen und Auslegung im Betriebszustand, thermische Auslegung, Flüssigkeits- und Gasdruckprüfung, Untersuchung des Baugrunds und zulässige Setzungen, Berechnung und Modellierung der Betonstruktur sowie die besonderen Einwirkungen aus Feuer, Explosion und Impact. Auch die dynamische Berechnung mit der Theorie der schwappenden Flüssigkeit wird dargestellt.
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How can one forget culture and heritage?
One can forget culture and heritage by not actively engaging with it, by being disconnected from one's roots and community, and by prioritizing other aspects of life over preserving and celebrating one's cultural identity. This can happen through assimilation into a different culture, lack of exposure to one's own cultural traditions and practices, and a lack of interest in learning about one's heritage. Additionally, societal pressures and discrimination can also contribute to the erasure of one's culture and heritage.
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In which language do you need little storage space?
A language that needs little storage space is a language that uses a compact and efficient encoding system for representing data. For example, languages like C and assembly language require little storage space because they directly map to the underlying hardware and have minimal overhead. Additionally, languages like Go and Rust are designed to be memory-efficient and have features that allow for more control over memory usage, making them suitable for applications with limited storage space.
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What is the difference between primary storage, secondary storage, and tertiary storage?
Primary storage, also known as main memory, is the internal memory of a computer that is directly accessible by the CPU. It is used to store data and instructions that are currently being processed by the CPU. Secondary storage, on the other hand, refers to external storage devices such as hard drives, solid-state drives, and optical discs, which are used to store data for long-term use. Tertiary storage is a type of storage that is used for archival purposes and is typically slower and less accessible than primary and secondary storage. Examples of tertiary storage include magnetic tape and optical jukeboxes.
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Which ten modern storage media are not magnetic storage?
Ten modern storage media that are not magnetic storage include: 1. Solid State Drives (SSD) 2. USB flash drives 3. SD cards 4. Blu-ray discs 5. DVD-RW discs 6. Cloud storage 7. Optical discs 8. NAND flash memory 9. RAM (Random Access Memory) 10. Compact Flash cards
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Advances in the Geological Storage of Carbon Dioxide
As is now generally accepted mankind’s burning of fossil fuels has resulted in the mass transfer of greenhouse gases to the atmosphere, a modification of the delicately-balanced global carbon cycle, and a measurable change in world-wide temperatures and climate. Although not the most powerful greenhouse gas, carbon dioxide (CO) drives climate 2 change due to the enormous volumes of this gas pumped into the atmosphere every day. Produced in almost equal parts by the transportation, industrial and energy-generating sectors, atmospheric CO concentrations have 2 increased by about 50% over the last 300 years, and according to some sources are predicted to increase by up to 200% over pre-industrial levels during the next 100 years. If we are to reverse this trend, in order to prevent significant environmental change in the future, action must be taken immediately. While reduced use of fossil fuels (through conservation, increased efficiency and expanded use of renewable energy sources) must be our ultimate goal, short to medium term solutions are needed which can make an impact today. Various types of CO storage techniques have been proposed to fill this 2 need, with the injection of this gas into deep geological reservoirs being one of the most promising. For example this approach has the potential to become a closed loop system, whereby underground energy resources are brought to surface, their energy extracted (via burning or hydrogen extraction), and the resulting by-products returned to the subsurface.
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The Hydraulic Transport and Storage of Extractive Waste
This book offers the guidelines on long-term confinement of fine particulate waste products in a safe and environmentally acceptable location. It seeks to present the state of the art, drawing on combined experience from within the European Union (EU), on good international practice where relevant and on lessons learnt from recent untoward incidents. These guidelines have been developed in parallel with the development of the European Standard on Earthworks (prEN 16907) and the contents have been influenced by the well-publicised need for guidance to all stakeholders on both technical and regulatory aspects of the permitting, design and construction of extractive waste facilities in Europe. The Extractive Waste Directive (EWD) imposes a duty on all operators and regulators to ensure the competent design, operation and closure of such facilities. However, though some guidance has been published on a limited number of related technical elements, the relevance of these contributions has been diminished by the lack of an integrated approach. It is now evident to both regulatory bodies and operators alike that a unified and comprehensive document providing guidance to all stakeholders is required if the future of mining within the EU is to be assured and further untoward incidents avoided. These guidelines seek to address all technical stages of the development of a hydraulic fill project in the context of the EWD, with an emphasis on waste and facility characterisation and on the risk-based assessments which underwrite them. They are intended for use by all stakeholders involved in those European industries which involve the generation, transport and storage of fine particulate waste products requiring long-term confinement in a safe, stable and environmentally acceptable location.
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Nanostructured Materials for Next-Generation Energy Storage and Conversion
Volume 3 of a 4-volume series is a concise, authoritative and an eminently readable and enjoyable experience related to lithium ion battery design, characterization and usage for portable and stationary power. Although the major focus is on lithium metal oxides or transition metal oxide as alloys, the discussion of fossil fuels is also presented where appropriate. This monograph is written by recognized experts in the field, and is both timely and appropriate as this decade will see application of lithium as an energy carrier, for example in the transportation sector. This Volume focuses on the fundamentals related to batteries using the latest research in the field of battery physics, chemistry, and electrochemistry. The research summarised in this book by leading experts is laid out in an easy-to-understand format to enable the layperson to grasp the essence of the technology, its pitfalls and current challenges in high-power Lithium battery research. After introductory remarks on policy and battery safety, a series of monographs are offered related to fundamentals of lithium batteries, including, theoretical modeling, simulation and experimental techniques used to characterize electrode materials, both at the material composition, and also at the device level. The different properties specific to each component of the batteries are discussed in order to offer tradeoffs between power and energy density, energy cycling, safety and where appropriate end-of-life disposal. Parameters affecting battery performance and cost, longevity using newer metal oxides, different electrolytes are also reviewed in the context of safety concerns and in relation to the solid-electrolyte interface. Separators, membranes, solid-state electrolytes, and electrolyte additives are also reviewed in light of safety, recycling, and high energy endurance issues. The book is intended for a wide audience, such as scientists who are new to the field, practitioners, as well as students in the STEM and STEP fields, as well as students working on batteries. The sections on safety and policy would be of great interest to engineers and technologists who want to obtain a solid grounding in the fundamentals of battery science arising from the interaction of electrochemistry, solid-state materials science, surfaces, and interfaces.
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Negotiating Identity in Modern Foreign Language Teaching
This edited book examines modern foreign language teachers who research their own and others’ experiences of identity construction in the context of living and teaching in UK institutions, primarily in the Higher Education sector. The book offers an insight into a key element of the educational and socio-political debate surrounding MFL in the UK: the teachers’ voices and their sense of agency in constructing their professional identities. The contributors use a combination of empirical research and personal reflection to generate knowledge about MFL teachers’ identity that can enhance how they are perceived in the social and educational establishments and raise awareness of key issues affecting the profession. This book will be of particular interest to language teachers, teacher trainers, applied linguists and students and scholars of modern foreign languages.
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Is there a cloud storage with unlimited storage space?
There are several cloud storage providers that offer unlimited storage space, such as Google Workspace, Amazon Web Services, and Microsoft OneDrive for Business. However, it's important to note that these unlimited storage plans often come with certain limitations and restrictions, such as a minimum number of users or specific use cases. Additionally, the pricing for these unlimited plans can be higher compared to standard storage plans. It's important to carefully review the terms and conditions of these unlimited storage plans before choosing one for your needs.
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How can I use iCloud storage as regular storage?
You can use iCloud storage as regular storage by enabling iCloud Drive on your devices and saving your files and documents directly to iCloud Drive. This will allow you to access your files from any of your Apple devices and also from iCloud.com. You can also manage your iCloud storage by upgrading to a higher storage plan if you need more space for your files. Additionally, you can use iCloud Photo Library to store and access your photos and videos across all your devices.
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Why is there no storage space despite having storage space?
There may be no storage space despite having storage space because the existing storage space is not being utilized efficiently. It could be that the available storage space is disorganized or cluttered, making it difficult to find and use the space effectively. Additionally, there may be an excess of items being stored, leading to a lack of available space. It's important to assess the current storage situation and implement organization and decluttering strategies to make the most of the available storage space.
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Instead of internal storage, why should one use cloud storage?
One should use cloud storage instead of internal storage for several reasons. Cloud storage offers the advantage of accessibility from anywhere with an internet connection, making it easy to access files on multiple devices. It also provides a secure backup solution in case of hardware failure or loss. Additionally, cloud storage allows for easy collaboration and sharing of files with others, making it a convenient option for both personal and professional use.
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