The digital world is characterized by its immediacy, its density of information and its omnipresence, in contrast to the concrete world. Significant changes will occur in our society as AI becomes integrated into many aspects of our lives. This book focuses on this vision of universalization by dealing with the development and framework of AI applicable to all. It develops a moral framework based on a neo-Darwinian approach – the concept of Ethics by Evolution – to accompany AI by observing a certain number of requirements, recommendations and rules at each stage of design, implementation and use. The societal responsibility of artificial intelligence is an essential step towards ethical, eco-responsible and trustworthy AI, aiming to protect and serve people and the common good in a beneficial way.
Through a series of case studies you are invited to meet, and learn firsthand from, the people and teams that have delivered a number of very different innovations successfully across a diverse group of banks; big and small, long established and brand new, from the east and west! Banks featured include: Bank of America, BBVA, Citi, Crédit Agricole, Danske Bank, Deutsche Bank, ING, J.P. Morgan, Lloyds Bank, Metro Bank, N26, National Australia Bank, Royal Bank of Canada, Santander, Standard Chartered and Swedbank. This book will equip you with ideas, tools and actionable hands-on advice. You will discover the untold stories about how these banks delivered new solutions to consumers and businesses, products as well as services, across the spectrum of buy, build and partner. Here are some of the innovation challenges you can overcome by learning from those that already did: Working around legacy systems Limited tech resources and budget Secure budget and buy-in from the exec team Creating a culture that embrace innovation Compete with fintechs and big tech for new talent Validating actual customer demand Increasing speed to market whilst satisfying risk and compliance Retain control when partnering with third parties Making the right priorities When to shut something down Once you have bought this book you can register on www.howbanksinnovate.com to access more in-depth material from all of the banks featured, full-length interviews and videos.
Discover the power of Microsoft Teams with this intuitive and timely new guide Microsoft Teams is unlocking the potential of remote work and virtual meetings at a time when they couldn’t be more necessary. Its feature-rich interface and ease-of-use promise to bring your team together—as long as you can harness its full suite of capabilities. In Teach Yourself VISUALLY Microsoft Teams , Microsoft experts and authors Matt Wade and Sven Seidenberg turn their years of engineering and IT experience loose on the virtual collaboration software now used by over one hundred million people across the globe. Using the book’s huge collection of vibrant and full-sized images and walkthroughs, you’ll see exactly what you need to do in order to: Realize the key benefits of Teams by using its messaging and video-conferencing capabilities to stay connected with your colleagues Manage multiple teams and channels to use Teams across your organization Extend the functionality of Teams by using additional apps and add-ons Learn valuable tips, best practices, and work-arounds to make the most of and avoid the landmines in Teams Rapidly becoming the central hub for working in Microsoft 365, Microsoft Teams promises to transform the way you work and communicate. And you’ll master it faster and easier by using this ultimate guide to get the most out of Microsoft’s latest and greatest software!
Designing and controlling complex shapes like porous volumes and rough surfaces is a challenge. Fractal geometry is an interesting approach which considerably simplify the problem. Even though underlying concepts reduce the set possible shapes, they generate a surprising variety of shapes. In this book we present a formalism to design such complex objects for geometric aided geometry design applications. The goal of this formalism is to provide to the end user the possibility to manipulate fractal objects as a standard euclidean object with standard tools of CAD system. This formalism encompass curves, surfaces, volumes, as well as NURBS and subdivision surfaces. All theoretical and practical aspects are developed, from the design up to 3D printing.
P rovides a comprehensive discussion of planar transmission lines and their applications, focusing on physical understanding, analytical approach, and circuit models Planar transmission lines form the core of the modern high-frequency communication, computer, and other related technology. This advanced text gives a complete overview of the technology and acts as a comprehensive tool for radio frequency (RF) engineers that reflects a linear discussion of the subject from fundamentals to more complex arguments. Introduction to Modern Planar Transmission Lines: Physical, Analytical, and Circuit Models Approach begins with a discussion of waves on transmission lines and waves in material medium, including a large number of illustrative examples from published results. After explaining the electrical properties of dielectric media, the book moves on to the details of various transmission lines including waveguide, microstrip line, co-planar waveguide, strip line, slot line, and coupled transmission lines. A number of special and advanced topics are discussed in later chapters, such as fabrication of planar transmission lines, static variational methods for planar transmission lines, multilayer planar transmission lines, spectral domain analysis, resonators, periodic lines and surfaces, and metamaterial realization and circuit models. Emphasizes modeling using physical concepts, circuit-models, closed-form expressions, and full derivation of a large number of expressions Explains advanced mathematical treatment, such as the variation method, conformal mapping method, and SDA Connects each section of the text with forward and backward cross-referencing to aid in personalized self-study Introduction to Modern Planar Transmission Lines is an ideal book for senior undergraduate and graduate students of the subject. It will also appeal to new researchers with the inter-disciplinary background, as well as to engineers and professionals in industries utilizing RF/microwave technologies.