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Wholesale JAKCOM R3 Smart Ring Consumer Electronics Mobile Phone Accessories smart watch Smart Phone 2019 new gadgets
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Technology Innovation in Manufacturing
This text identifies and discusses different technology innovation initiatives (TIIs) such as entrepreneurial capability, technology infrastructure capability, organizational culture and climate, and government initiatives.It further evaluates the relationship between various technology innovation initiatives and manufacturing performances using multi-criteria decision-making techniques such as fuzzy set theory (FST), structural equation modeling (SEM), and analytic hierarchy process (AHP).It will serve as an ideal reference text for graduate students and academic researchers in the field of industrial engineering, manufacturing engineering, mechanical engineering, automotive engineering. This book:• Discusses technology innovation initiatives such as entrepreneurial capability, technology infrastructure capability, and organizational culture. • Highlights technology innovation-strategy model in assisting manufacturing industries for enhancing their performance in today’s competitive environment. • Examines the effect of technology innovation initiatives on the performance of manufacturing industries. • Covers multi-criteria decision-making techniques such as fuzzy set theory, structural equation modeling, and analytic hierarchy process. • Explores the validation of fuzzy-based technology innovation model through structural equation modeling.
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Innovation in Information Technology
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Technology and Innovation Management
Technology and Innovation Management is one of the most sought-after courses offered like MBA or PGDM in Business Schools and various Technology Institutes, today.This book, written with deep ingrained practical insights and well-researched theoretical foundations integrates people, processes and technology to achieve maximum economic benefits to society.The book is designed to be a compendium for students and managers, who wish to understand technology and innovation management to the core.The book explains the relationship between technology innovation and strategy in a simplified manner.Keeping Indian education framework in mind, this book details on practices and principles that are easy to implement.The theories are simple to grasp, and anecdotal stories on Technology and Innovation implementations make it a student-friendly edition, to help achieve success in exams as well as in the professional front.It further explains the core principles of Technology and Innovation Management.S-Curve and the Segment Zero Principle, adopting industry 4.0 and innovation 4.0 to make India a smart and intelligent manufacturing hub in the era of fourth industrial revolution, design thinking for solving complex business problems along with the role and contribution of Government in Technology Development.
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What is an acid residue ion, an oxonium ion, and a hydronium ion?
An acid residue ion is a fragment of a molecule that remains after a hydrogen ion is removed from an acid. An oxonium ion is a positively charged ion formed by the addition of a proton to an oxygen atom. A hydronium ion is a positively charged ion formed by the combination of a water molecule with an extra proton, commonly found in aqueous solutions of acids.
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What are the oxonium ion and the hydroxide ion?
The oxonium ion is a positively charged ion formed when a water molecule gains a hydrogen ion, resulting in the formula H3O+. This ion is commonly found in acidic solutions. On the other hand, the hydroxide ion is a negatively charged ion formed when a water molecule loses a hydrogen ion, resulting in the formula OH-. This ion is commonly found in basic solutions. Both ions play important roles in acid-base chemistry.
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What is an oxonium ion and a hydroxide ion?
An oxonium ion is a positively charged ion formed by the combination of a water molecule and a hydrogen ion (H+). It is also known as a hydronium ion and is commonly found in acidic solutions. A hydroxide ion, on the other hand, is a negatively charged ion composed of one oxygen and one hydrogen atom (OH-). It is a key component of basic solutions and is responsible for the alkaline properties of substances such as sodium hydroxide. Both oxonium and hydroxide ions play important roles in the pH and chemical properties of solutions.
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What is an ion?
An ion is an atom or molecule that has gained or lost one or more electrons, giving it a positive or negative charge. When an atom loses an electron, it becomes a positively charged ion called a cation. Conversely, when an atom gains an electron, it becomes a negatively charged ion called an anion. Ions play a crucial role in chemical reactions and are essential for various biological processes in living organisms.
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Sodium-Ion Batteries : Materials, Characterization, and Technology, 2 Volumes
Presents uparalleled coverage of Na-ion battery technology, including the most recent research and emerging applications Na-ion battery technologies have emerged as cost-effective, environmentally friendly alternatives to Li-ion batteries, particularly for large-scale storage applications where battery size is less of a concern than in portable electronics or electric vehicles.Scientists and engineers involved in developing commercially viable Na-ion batteries need to understand the state-of-the-art in constituent materials, electrodes, and electrolytes to meet both performance metrics and economic requirements.Sodium-Ion Batteries: Materials, Characterization, and Technology provides in-depth coverage of the material constituents, characterization, applications, upscaling, and commercialization of Na-ion batteries.Contributions by international experts discuss the development and performance of cathode and anode materials and their characterization - using methods such as NMR spectroscopy, magnetic resonance imaging (MRI), and computational studies - as well as ceramics, ionic liquids, and other solid and liquid electrolytes.Discusses the development of battery technology based on the abundant alkali ion sodiumFeatures a thorough introduction to Na-ion batteries and their comparison with Li-ion batteriesReviews recent research on the structure-electrochemical performance relationship and the development of new solid electrolytesIncludes a timely overview of commercial perspectives, cost analysis, and safety issues of Na-ion batteriesCovers emerging technologies including Na-ion capacitors, aqueous sodium batteries, and Na-S batteriesThe handbook Sodium-Ion Batteries: Materials, Characterization, and Technology is an indispensable reference for researchers and development engineers, materials scientists, electrochemists, and engineering scientists in both academia and industry.
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APC Smart-UPS C Lithium Ion Smart Connect 8APSMTL1000RMI2UC
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Adventures With Technology And Gadgets
Adventures with Technology and Gadgets is an immersive encounter with more than 15 groundbreaking advances that have changed the way that we live, work and play.When were the first computers invented? How did fibre optic technology transform communications?What if you could protect your belongings with a real-life 'force field'?Scribble in a digital notebook. Pit your wits against robot friends. And walk around in GPS shoes! From the machines that clean our living spaces to the engines that move us from place to place, and from pocket-sized devices to vast hubs of information, grasp the astounding workings of tech and gadgets as never before!The World of Science comics series engages, educates and entertains children, imparting scientific facts, while nurturing the love of Science through dynamic, full-colour comics.All topics covered are in line with the Singapore primary Science syllabus and the Cambridge primary Science curriculum, and also offer beyond-the-syllabus insights designed to stretch inquiring young minds.This book aligns with the following syllabi:
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Patent Law, Green Technology and Innovation
In the era of modern industrial regimes, the role of technology in tackling climate change is pivotal.International goals of climate change mitigation and sustainable development cannot be achieved without the contribution of new technologies.At the same time, the importance of patent protection and an efficient patent system that facilitates technology transfer among international frontiers cannot be overlooked.Many patented technologies are either not accessible for further dissemination or do not hold much technical value.Therefore, advanced systems of collaborative innovation have been developed, especially in the sector of green technology and green innovation. The environmental concerns of the global community cannot be tackled by a single company, person, sector or country.Innovation partnerships and collaborative research will play a vital role in combating global climate concerns and in determining the diffusion of green technologies for maximum impact.This book argues that policy-makers should encourage partnerships in technology rather than focusing on gaining investment and access to green technology to encourage global technological giants to transfer their technology and knowledge to local entities.It analyzes the relationship between patent protection, green innovation and diffusion of green technology against the backdrop of climate change and severe climate crisis. Taking an interdisciplinary approach to align patent law and green technology with the Sustainable Development Goals, it examines the effects of patent protection, technology transfer and compulsory licensing on the diffusion of green technologies while offering a systematic analysis of the relationship between patent protection, green innovation and diffusion of green technology from a global perspective.
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What is the difference between the carbonate ion and the bicarbonate ion?
The main difference between the carbonate ion (CO3^2-) and the bicarbonate ion (HCO3^-) is the number of hydrogen atoms present. The carbonate ion has a charge of -2 and does not contain any hydrogen atoms, while the bicarbonate ion has a charge of -1 and contains one hydrogen atom. Bicarbonate is a conjugate base of carbonic acid, while carbonate is a polyatomic ion on its own.
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What is the difference between a hydronium ion and an oxonium ion?
A hydronium ion (H3O+) is formed when a water molecule (H2O) gains a hydrogen ion (H+), resulting in a positively charged ion. On the other hand, an oxonium ion (also known as a protonated alcohol) is formed when an alcohol molecule gains a proton, resulting in a positively charged ion. While both ions have a positive charge, hydronium ions are specifically formed in aqueous solutions, whereas oxonium ions are formed in the context of organic chemistry reactions involving alcohols.
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How are lattice energy, ion charge, ion radius, and melting temperature related?
Lattice energy is the energy required to separate an ionic solid into its constituent ions. It is directly related to the ion charges and inversely related to the ion radius. Higher ion charges and smaller ion radii result in higher lattice energies. As lattice energy increases, so does the melting temperature of the ionic solid. This is because the stronger the ionic bonds (as indicated by higher lattice energy), the more energy is required to break those bonds, resulting in a higher melting temperature.
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When does an oxonium ion occur and when does a hydroxide ion occur?
An oxonium ion occurs when a water molecule gains a proton, forming H3O+. This typically happens in acidic solutions where there is an excess of protons. On the other hand, a hydroxide ion occurs when a water molecule loses a proton, forming OH-. This occurs in basic solutions where there is a shortage of protons. Both oxonium and hydroxide ions are important in understanding the behavior of acids and bases in chemistry.
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