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Hiking Boots Brooches Outdoor Forest Adventure Badges Mountain Climbing Adventure Enthusiasts
Hiking Boots Brooches Outdoor Forest Adventure Badges Mountain Climbing Adventure Enthusiasts
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Weber DGV Carburettor - Synchronous
The Weber 32/36 DGV 5A twin choke carburettor is a popular fitment on the Ford 1.6 and 2.0 OHC (Pinto) engine but is also used as an upgrade for other engines such as the Ford X-flow, Vauxhall/Opel 1.6, 1.9 and 2.0 CIH and Land rover 2.25. Genuine Spanish manufactured Weber carburettorIdeal as a replacement or as an upgradeManual chokeSynchronous throttle version available for higher performance enginesThe Weber 32/36 DGV twin choke 5A carburettor is available in the standard version where the two venturis open progressively or in a synchronous version where both venturis open at the same rate (similar to the 38 DGAS carburettors). This version is more suited to tuned engines. The carburettors come jetted to suit a Ford 1.6 OHC engine, however jets are available separately to suit many other applications.
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Parameter Estimation of Permanent Magnet Synchronous Machines
Comprehensive reference delivering basic principles and state-of-the-art parameter estimation techniques for permanent magnet synchronous machines (PMSMs) Parameter Estimation of Permanent Magnet Synchronous Machines reviews estimation techniques of the parameters of PMSMs, introducing basic models and techniques, as well as issues and solutions in parameter estimation challenges, including rank deficiency, inverter nonlinearity, and magnetic saturation.This book is supported by theories, experiments, and simulation examples for each technique covered.Topics explored in this book include: Electrical and mechanical parameter estimation techniques, including those based on current/voltage injection and position offset injection, under constant or variable speed and load for sensored or sensorless controlled PMSMs, accounting for magnetic saturation, cross-coupling, inverter nonlinearity, temperature effects, and moreRecursive least squares, the Kalman filter, model reference adaptive systems, Adaline neural networks, gradient-based methods, particle swarm optimization, and genetic algorithmsApplications of parameter estimation techniques for improvement of control performance, sensorless control, thermal condition monitoring, and fault diagnosis Parameter Estimation of Permanent Magnet Synchronous Machines, is an essential reference for professionals working on the control and design of electrical machines, researchers studying electric vehicles, wind power generators, aerospace, industrial drives, automation systems, robots, and domestic appliances, as well as advanced undergraduate and graduate students in related programs of study.
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Beyond Strategic Kaizen : Performing Synchronous Profitable Operations
Currently, the challenge for manufacturing organizations is how to achieve their expected profit by continuously improving productivity or reducing costs.Manufacturing organizations have been using different improvement approaches to achieving cost reduction and productivity improvement for years by eliminating various losses and waste structures, such as excess inventory, excessive workforce, excessive capacity, excessive utility consumption, and so on.But is the problem solved? Unfortunately, no! Often manufacturing companies focus on maximizing the flow and meeting customer needs but forget their real aim – to make a profit for their stakeholders.Too many organizations meet customer expectations by seeking to continuously synchronize the flow to market demand but forget to check that they are doing it profitably enough to ensure business continuity and prosperity.When the financial results show that they are not so profitable, it is already too late.Moreover, the strategic direction of systematic improvements according to the sales trend – depending on the current degree of production capacity utilization and its dynamic effects on cost structures – is deficient in many manufacturing companies.So, would the failure of strategic and profitable systematic improvements be an option?Of course not!If the ultimate goal of the organization is to create target profit for stakeholders, then the behavior and strategic systematic improvements must be directed to those scenarios, strategies, tasks, problems, and “production levers” that are best based on creating the target profit.That’s what Strategic Kaizen thinking does – the simultaneous and consistent achievement of systematic operational and financial improvements in a strategic and operational manner.It achieves both synchronous operations at market demand by fulfilling takt time and profitable operations in accordance with profit demand by fulfilling takt profit.In short, the Strategic Kaizen mission is striving for the fulfillment of the ideal state of operations called synchronous profitable operations.In this book, the author, while presenting in detail the seven processes of Strategic Kaizen methodology, exposes the answer to historically incomplete thinking of productivity improvements for target profitability.The uniqueness of the book is reinforced by the detailed presentation of the successful application of the Strategic Kaizen thinking over the years in two multinational manufacturing organizations operating in highly competitive markets, addressing the synchronous profitable operations for both the sales increase scenario and the sales decrease scenario.Moreover, it presents examples of the practical application of the “white-collar” Strategic Kaizen. Essentially, by adopting the Strategic Kaizen methodology presented in detail in this book to consistently achieve the ideal state of a manufacturing organization, organizations will enter a new paradigm of thinking of strategic improvements – Strategic Kaizen thinking – to meet annual and multiannual target profits in a unique and effective way that operates according to its own strategic and operational management system.
Price: 36.00 £ | Shipping*: 0.00 £
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What is a synchronous motor?
A synchronous motor is an electric motor in which the rotation of the shaft is synchronized with the frequency of the supply current. This means that the motor's rotor rotates at the same speed as the rotating magnetic field produced by the stator. Synchronous motors are known for their high efficiency and power factor, making them suitable for applications where precise speed control and power factor correction are important, such as in industrial and commercial settings. These motors are commonly used in applications such as industrial machinery, compressors, and pumps.
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Which platform allows synchronous playback?
The platform that allows synchronous playback is a feature of many video conferencing and streaming platforms, such as Zoom, Google Meet, and Microsoft Teams. This feature enables all participants to watch and listen to the same content at the same time, which is useful for conducting virtual meetings, webinars, and online events where synchronized viewing is necessary. This allows for a more cohesive and interactive experience for all participants.
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What is a synchronous modulo counter?
A synchronous modulo counter is a type of digital counter that follows a specific counting sequence based on a modulo value. The counter advances through a sequence of states in a synchronous manner, meaning that the state changes occur at the same time in response to a clock signal. The modulo value determines the number of states in the counting sequence, and when the counter reaches the maximum state, it resets back to the initial state. This type of counter is commonly used in digital systems for tasks such as frequency division, timing, and control applications.
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Where are synchronous and asynchronous motors used?
Synchronous motors are commonly used in applications where precise speed control is required, such as in industrial machines, robotics, and synchronous clocks. On the other hand, asynchronous motors, also known as induction motors, are widely used in household appliances, pumps, fans, and conveyor systems due to their simple design and cost-effectiveness. Both types of motors have their own advantages and are chosen based on the specific requirements of the application.
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Severn Ergonomic Medium Back Multi-Functional Synchronous Operator
Modest, sturdy and reliable, this ergonomic medium back chair is host to a range of features which allow adjustment to suit the users preference. A medium height contoured backrest with a 3D curvature incorporates lumbar and spine support. A
Price: 415.20 £ | Shipping*: 0.00 £ -
Sandown High Back Luxurious Leather Faced Synchronous Executive
This high back executive armchair leaves little to desire. It is upholstered with sumptuous Italian leather facing and stylishly finished with detailed stitching. The generously proportioned seat with slight waterfall front and backrest with
Price: 616.80 £ | Shipping*: 0.00 £ -
Santiago High Back Italian Leather Faced Synchronous Executive
This executive armchair with a tall backrest is exceptionally appealing. It features luxurious Italian leather upholstery and is elegantly adorned with intricate stitching. The seat is generously sized, designed with a gentle slope at the front, and
Price: 600.00 £ | Shipping*: 0.00 £ -
Severn Ergonomic Medium Back Multi-Functional Synchronous Operator
Modest, sturdy and reliable, this ergonomic medium back chair is host to a range of features which allow adjustment to suit the users preference. A medium height contoured backrest with a 3D curvature incorporates lumbar and spine support. A
Price: 415.20 £ | Shipping*: 0.00 £
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What is the difference between simultaneous and synchronous?
Simultaneous refers to events or actions that occur at the same time, while synchronous refers to events or actions that are coordinated to occur at the same time. Simultaneous implies that multiple things are happening at once, without necessarily being planned or coordinated. Synchronous, on the other hand, suggests a deliberate effort to ensure that events or actions are happening at the same time.
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What is the difference between synchronous and asynchronous motors?
Synchronous motors operate at a constant speed determined by the frequency of the power supply, while asynchronous motors operate at a variable speed depending on the load. Synchronous motors require an external power source to create a rotating magnetic field, while asynchronous motors create their own rotating magnetic field. Additionally, synchronous motors are more efficient and have a power factor close to unity, while asynchronous motors have a slightly lower efficiency and power factor.
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Is the three-phase commutator machine synchronous or asynchronous?
The three-phase commutator machine is asynchronous. This is because the rotor of the machine does not rotate at the same speed as the rotating magnetic field produced by the stator. As a result, the rotor "slips" behind the rotating magnetic field, causing it to operate asynchronously. This asynchrony allows the machine to generate torque and is a key characteristic of asynchronous machines.
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With what type of coupling is synchronous communication associated?
Synchronous communication is associated with tight coupling. In synchronous communication, the sender and receiver must be in sync and actively communicating at the same time, which requires a high level of coordination and dependency between the components. This tight coupling can make the system more efficient in terms of performance, but it also makes it more prone to issues if one component fails or experiences delays.
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