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    Portfolio management is becoming the ‘must have’ for organizations to prosper and survive in this decade and beyond.No longer can the organizational focus be one of following best and repeatable practices as resource limitations mean only those programs, projects, and operational work that add business value can and should be pursued.Executives are focusing on strategic ability and managing complexity, which can only be done through a disciplined portfolio process in ensuring the best mix of programs, projects, and operational work is under way.In turn, the portfolio is constantly in flux as difficult decisions are made if a project, for example, is no longer contributing to business value and providing benefits and should be terminated to reallocate resources to one of higher priority.Commitment to this difficult approach is necessary at all levels, and communication is required so everyone knows how their work contributes to the organization’s strategic goals and objectives. Portfolio Management: Delivering on Strategy, Second Edition focuses on the benefits of portfolio management to the organization.Its goal is to provide senior executives a view on how portfolio management can deliver organizational strategy.The emphasis is on the specific aspects within the portfolio management discipline and how each aspect should be managed from a business perspective and not necessarily from a portfolio management perspective.Highlights of the book include:Agile portfolio management Delivering organizational value Portfolio management and uncertainty Portfolio governance Marketing a portfolio Portfolio management success Starting with a review of the project portfolio concept and its development, this book is a reference for executives and practitioners in the field, as well as a students and researchers studying portfolio management.

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  • Applied Fundamentals in Finance : Portfolio Management and Investments
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  • Portfolio Selection : Efficient Diversification of Investments
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  • Behavioral Finance and Your Portfolio : A Navigation Guide for Building Wealth
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  • "Forever diode laser?"

    The term "Forever diode laser" likely refers to a type of diode laser that is designed to have a long lifespan or durability. Diode lasers are known for their efficiency and reliability, and a "Forever diode laser" may be marketed as having an extended operational life without the need for frequent replacements or maintenance. It could be a selling point for businesses or individuals looking for a laser system with long-term performance and cost-effectiveness.

  • 'Plus or minus diode?'

    A diode is a semiconductor device that allows current to flow in one direction only. When a diode is connected in the correct orientation, it allows current to pass through, but when it is connected in the reverse direction, it blocks the current. This property makes diodes useful for rectifying alternating current (AC) into direct current (DC) and for protecting circuits from reverse voltage.

  • What are diode transistors?

    Diode transistors, also known as diodes, are semiconductor devices that allow current to flow in only one direction. They consist of a p-n junction, where one side is doped with a material that has an excess of electrons (n-type) and the other side is doped with a material that has a deficiency of electrons (p-type). This creates a barrier that allows current to flow in one direction and blocks it in the other. Diode transistors are commonly used in electronic circuits for rectification, signal demodulation, and voltage regulation.

  • What is the exact difference between a silicon diode and a germanium diode?

    The main difference between a silicon diode and a germanium diode lies in their forward voltage drop. A silicon diode typically has a higher forward voltage drop of around 0.7 volts, while a germanium diode has a lower forward voltage drop of around 0.3 volts. This difference affects their suitability for different applications, with silicon diodes being more commonly used in high-power applications due to their higher voltage handling capabilities, while germanium diodes are often used in low-power applications due to their lower forward voltage drop.

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  • Digital Assets : A Portfolio Perspective
    Digital Assets : A Portfolio Perspective

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    Network Models in Finance : Expanding the Tools for Portfolio and Risk Management

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  • Grow Your Wealth Faster with Alternative Assets : A Complete Guide to the New Universe of Investment Opportunities
    Grow Your Wealth Faster with Alternative Assets : A Complete Guide to the New Universe of Investment Opportunities

    Expand your investment horizons and increase your returns with alternative assets In Grow Your Wealth Faster with Alternative Assets, one of Australia's leading alternative asset managers, Travis Miller, delivers an eye-opening, jargon-free guide to the lucrative opportunities available in alternative investing.You'll learn how to successfully diversify your portfolio with alternative assets like commercial property, infrastructure, private equity, private credit, agriculture, commodities, and much more.Thanks to new financial technologies and investment platforms, these high-yield alternative investments are increasingly easy and accessible.It's time to learn how your investment strategy can benefit from higher rewards, without taking on more risk.In Grow Your Wealth Faster with Alternative Assets, you'll find a step-by-step method for finding and executing trades.Explore which alternative assets are right for you, and discover how to: Diversify your investment portfolioAssess risk and expected returnsAvoid the traps and pitfallsNavigate fees, finances, and due diligenceGrow Your Wealth Faster with Alternative Assets shares the pros and cons of various asset classes and unpacks why these assets offer such impressive rewards-for the same (or even less) risk than traditional investments.Best of all, it outlines exactly how Australian investors can build wealth faster through exciting, creative new strategies.

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  • Which diode do I need?

    To determine which diode you need, you first need to consider the specific requirements of your circuit. Factors to consider include the voltage and current ratings, as well as the type of diode needed (such as a rectifier diode, Zener diode, or LED). Once you have identified the specifications required for your circuit, you can select a diode that meets those criteria. It is important to consult the datasheet of the diode to ensure it is suitable for your application.

  • What is a diode 2?

    A diode 2 is a type of semiconductor device that allows current to flow in only one direction. It is similar to a regular diode but has different characteristics, such as a higher voltage rating or faster switching speed. Diode 2s are commonly used in electronic circuits to control the direction of current flow and protect sensitive components from reverse voltage.

  • What is a diode 3?

    A diode 3 is a type of diode that has three layers of semiconductor material. It is also known as a three-layer diode or a p-n-p diode. This type of diode is commonly used in electronic circuits for applications such as rectification, signal demodulation, and voltage regulation. Diode 3s have specific electrical properties that make them suitable for these types of applications, such as their ability to conduct current in one direction only.

  • What is a semiconductor diode?

    A semiconductor diode is a two-terminal electronic component that allows current to flow in one direction only. It is made of semiconductor material, typically silicon or germanium, with a junction between two different types of semiconductors. When a voltage is applied across the diode in the forward direction, it allows current to flow easily, but in the reverse direction, it blocks the current flow. Semiconductor diodes are commonly used in various electronic circuits for rectification, signal demodulation, and voltage regulation.

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