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  • Glass sunglasses Oakley Turbine Prizm
    Glass sunglasses Oakley Turbine Prizm

    The Turbine™ sunglasses enhance your active look with its interchangeable icons and anti-slip Unobtainium™ areas. In addition to the sleek lines made of comfortable and ultra-light O Matter™, and a lens shape inspired by the popular Hijinx™ sunglasses, these glasses provide durability and performance perfect for sports and everyday wear.PRIZM BLACKLIGHT TRANSMISSION: 11 %LIGHTING CONDITIONS: BRIGHT LIGHTBASE LENS COLOR: GRAYINFORMATION INDEX: 3Size: XXL (151mm)Lens height: 44 mmFrame width: 151 mmTemple length: 132 mmLens width: 65 mmBridge width: 17 mmHigh bridge model: offers better security and greater comfort if you have a high nose bridge and low cheekbones. A good choice if your nose is above your pupils.

    Price: 158.99 £ | Shipping*: 19.9900 £
  • Polarized glass sunglasses Oakley Turbine Prizm
    Polarized glass sunglasses Oakley Turbine Prizm

    The Turbine™ sunglasses elevate the active look with its interchangeable icons and anti-slip Unobtainium™ zones. In addition to sleek lines made from comfortable and ultra-light O Matter™, and a lens shape inspired by the popular Hijinx™ sunglasses, these glasses offer durability and performance perfect for sports and everyday life.PRIZM RUBY POLARIZEDLIGHT TRANSMISSION: 17%LIGHT CONDITION: BRIGHT LIGHTBASE LENS COLOR: BRONZEINFORMATION INDEX: 3Size: XXL (151mm)Lens height: 44 mmFrame width: 151 mmArm length: 132 mmLens width: 65 mmBridge width: 17 mmHigh bridge model: offers better security and greater comfort if you have a high nose bridge and low cheekbones. A good choice if your nose is above your pupils.

    Price: 201.05 £ | Shipping*: 19.9900 £
  • Mountain Warehouse Mens Turbine Gilet (Blue) Nylon - Size Small
    Mountain Warehouse Mens Turbine Gilet (Blue) Nylon - Size Small

    Material: 100% Nylon. Design: Logo, Quilted. Contrast Zip Pull. Fabric Technology: Insulating, Lightweight. Sleeve-Type: Sleeveless. Neckline: Zip Neck. Pockets: 2 Side Pockets, 1 Chest Pocket, Zip. Fastening: Full Zip.

    Price: 23.20 £ | Shipping*: 2.99 £
  • Mountain Warehouse Mens Turbine II Hybrid Padded Gilet (Black) - Size Small
    Mountain Warehouse Mens Turbine II Hybrid Padded Gilet (Black) - Size Small

    Filling: Microfibre. Design: Logo, Quilted. Fabric Technology: Durable, DWR Finish, Isotherm, Lightweight, Water Repellent, Water Resistant. Insulated. Sleeve-Type: Sleeveless. Neckline: Standing Collar. Pockets: 2 Side Pockets, 1 Chest Pocket, Zip. Fastening: Full Zip.

    Price: 38.95 £ | Shipping*: 2.99 £
  • How much power does a wind turbine have?

    The power output of a wind turbine can vary depending on its size and design. On average, a single wind turbine can generate anywhere from 1.5 to 3 megawatts of power. Larger wind turbines used in commercial wind farms can have a power output of up to 8 megawatts or more. The power output of a wind turbine is influenced by factors such as wind speed, blade length, and generator efficiency.

  • How tall is the tallest wind turbine in Germany?

    The tallest wind turbine in Germany is located in Brunsbüttel and stands at a height of 241.5 meters (792 feet). This impressive structure is part of the Windtestfeld Nord project and is one of the tallest wind turbines in the world. Its height allows it to harness stronger winds at higher altitudes, increasing its energy production efficiency.

  • What flows through the turbine of a hydroelectric power plant?

    Water flows through the turbine of a hydroelectric power plant. The force of the flowing water causes the turbine blades to spin, which in turn rotates a generator to produce electricity. The amount of electricity generated depends on the volume of water flowing through the turbine and the height from which it falls, known as the head.

  • What is a wind turbine?

    A wind turbine is a device that converts the kinetic energy of the wind into mechanical energy, which is then used to generate electricity. It consists of large blades attached to a rotor, which spins when the wind blows. The spinning rotor is connected to a generator that produces electricity. Wind turbines are typically grouped together in wind farms to generate large amounts of renewable energy.

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  • Mountain Warehouse Womens/Ladies Turbine Hybrid Gilet (Black) - Size 10 UK
    Mountain Warehouse Womens/Ladies Turbine Hybrid Gilet (Black) - Size 10 UK

    Outer Materials: 100% Nylon. Lining Material: 100% Polyester. Design: Logo, Quilted. Fabric Technology: DWR Finish, Isotherm, Lightweight, PFC Free, Water Resistant. Bulk Free, Chin Guard, High Warmth, Padded. Sleeve-Type: Sleeveless. Neckline: Standing Collar. Pockets: 2 Side Pockets, Concealed Zip. Fastening: Full Zip. Waistline: Elasticated.

    Price: 32.15 £ | Shipping*: 2.99 £
  • Mountain Warehouse Mens Turbine Gilet (Black) Nylon - Size 2XL
    Mountain Warehouse Mens Turbine Gilet (Black) Nylon - Size 2XL

    Material: 100% Nylon. Design: Logo, Quilted. Contrast Zip Pull. Fabric Technology: Insulating, Lightweight. Sleeve-Type: Sleeveless. Neckline: Zip Neck. Pockets: 2 Side Pockets, 1 Chest Pocket, Zip. Fastening: Full Zip.

    Price: 27.25 £ | Shipping*: 2.99 £
  • Mountain Warehouse Mens Turbine Gilet (Cobalt Blue) Nylon - Size Small
    Mountain Warehouse Mens Turbine Gilet (Cobalt Blue) Nylon - Size Small

    Material: 100% Nylon. Design: Logo, Quilted. Contrast Zip Pull. Fabric Technology: Insulating, Lightweight. Sleeve-Type: Sleeveless. Neckline: Zip Neck. Pockets: 2 Side Pockets, 1 Chest Pocket, Zip. Fastening: Full Zip.

    Price: 31.30 £ | Shipping*: 2.99 £
  • Mountain Warehouse Mens Turbine Gilet (Cobalt Blue) Nylon - Size 2XS
    Mountain Warehouse Mens Turbine Gilet (Cobalt Blue) Nylon - Size 2XS

    Material: 100% Nylon. Design: Logo, Quilted. Contrast Zip Pull. Fabric Technology: Insulating, Lightweight. Sleeve-Type: Sleeveless. Neckline: Zip Neck. Pockets: 2 Side Pockets, 1 Chest Pocket, Zip. Fastening: Full Zip.

    Price: 23.20 £ | Shipping*: 2.99 £
  • How are turbine blades manufactured?

    Turbine blades are typically manufactured using advanced techniques such as precision casting or additive manufacturing. In precision casting, a wax pattern of the blade is created and then coated with ceramic material to form a mold. The mold is then heated to melt the wax and leave a cavity in the shape of the blade, which is then filled with molten metal to form the final blade. Additive manufacturing, on the other hand, involves building up the blade layer by layer using a 3D printing process. Both methods require high precision and quality control to ensure the blades meet the strict performance requirements for use in turbines.

  • What is the difference between a high-pressure turbine and a low-pressure turbine?

    The main difference between a high-pressure turbine and a low-pressure turbine lies in their location within a gas turbine engine. High-pressure turbines are located closer to the combustion chamber and are responsible for driving the compressor, while low-pressure turbines are positioned further downstream and are typically larger in size, focusing on extracting energy from the hot gases to drive the engine's output shaft. High-pressure turbines operate at higher temperatures and pressures, while low-pressure turbines operate at lower temperatures and pressures, reflecting their respective roles in the engine's power generation process.

  • How many households can a wind turbine power with electricity daily?

    The number of households that a wind turbine can power with electricity daily depends on the size and capacity of the turbine. On average, a single large wind turbine can power around 300-400 households per day. However, this number can vary based on factors such as the wind speed, efficiency of the turbine, and energy consumption of the households.

  • At which speed does the PN300N-08N turbine have maximum power?

    The PN300N-08N turbine has maximum power at a wind speed of around 12 meters per second. At this speed, the turbine is able to efficiently convert the kinetic energy of the wind into electrical power, reaching its peak power output. This is the optimal operating condition for the turbine to generate the most electricity and maximize its energy production.

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