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What are rotor blades?
Rotor blades are the rotating wings of a helicopter or an aircraft that generate lift and thrust. They are attached to the rotor hub and spin around a central axis to create the necessary aerodynamic forces for flight. Rotor blades come in various shapes and sizes depending on the type of aircraft and its intended use. Proper maintenance and balance of rotor blades are crucial for safe and efficient flight operations. **
Where is the rotor located?
The rotor is located inside the distributor of an internal combustion engine. It is a key component in the ignition system and is responsible for distributing high voltage electricity to the spark plugs in the correct firing order. The rotor spins inside the distributor cap, making contact with the ignition coil and sending the electrical charge to the appropriate spark plug at the precise moment for combustion. **
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Products related to Rotor:
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BREMI 7353 Distributor rotor armManufacturer Restriction: System DUCELLIER; Manufacturer Restriction: SYSTEM MARELLI, SYSTEM DUCELLIER; no interference suppression: ; Engine Code: E6J/701, C1G 730; Construction Year to: 12/1992; Construction Year from: 01/1989, 04/1987, 01/1991; Vehicle Identification Number (VIN) from: F001140628-; for OE number: 77 01 033 622; TecDoc Engine Number: 3212, 3184; Vehicle Identification Number (VIN) to: -F003490915,99 £*Shipping: 8,45 £Secure redirect to the provider
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FACET 3.7758 Distributor rotor armAlternative Repair Kit: HT.0732; Supplementary Info: Made in Italy - OE Equivalent; TecDoc Engine Number: 3014, 3015, 3024, 3070, 3097, 3101, 3103, 3104, 3106, 3110, 3114, 3116, 3120, 3123, 3126, 3127, 3128, 3129, 3130, 3131, 3135, 3136, 3141, 3143, 3144, 3145, 3147, 3149, 3151, 3152, 3154, 3158, 3161, 3175, 3176, 3179, 3219, 4853, 4856, 5054, 5445; Manufacturer Restriction: Femsa6,29 £*Shipping: 8,45 £Secure redirect to the provider
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EPS 1.406.025R Distributor rotor armResistance Rotor [ohm]: 5000; Alternative Repair Kit: KR.0507, KR.0517, KR.0533; Supplementary Info: Made in Italy - OE Equivalent; TecDoc Engine Number: 1196, 1198, 1199, 1203, 1204, 1233, 1239, 12429, 1251, 12750, 1342, 1344, 1345, 1346, 1362, 1380, 1453, 1460, 17074, 17086, 1796, 20957, 2140, 2150, 22533, 22543, 23, 28853, 2973, 3099, 33, 35, 3677, 3686, 3917, 3919, 3936, 4070, 4074, 4354, 43953, 4469, 4472, 4474, 4495, 4496, 5029, 5030, 910; Construction Year from: 04/1974; Construction Year to: 08/1982, 10/1984, 12/1974; Vehicle Identification Number (VIN) from: 14-E-003891; Engine Number from: 185001; Engine Number to: 309582; Manufacturer Restriction: Bosch6,59 £*Shipping: 8,45 £Secure redirect to the provider
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What is the role of the rotor in the physics of circular motion?
The rotor plays a crucial role in the physics of circular motion by providing the centripetal force necessary to keep an object moving in a circular path. As the rotor spins, it generates a force that pulls the object towards the center of the circle, preventing it from flying off in a straight line. This centripetal force is essential for maintaining the object's velocity and direction in circular motion. The rotor's speed and size determine the magnitude of the centripetal force acting on the object. **
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What is the significance of the rotor in the physics of circular motion?
The rotor is significant in the physics of circular motion because it is the part of a rotating system that experiences centripetal acceleration. This acceleration is directed towards the center of the circular path and is necessary to keep the rotor moving in a circular motion. The rotor's mass and distance from the center of rotation also affect the amount of centripetal force required to keep it in motion, making it an important factor in understanding the dynamics of circular motion. Additionally, the rotor's angular velocity and moment of inertia are key parameters in determining the rotational motion of the system. **
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What can a helicopter rotor withstand?
A helicopter rotor is designed to withstand a variety of forces and conditions. It can withstand the aerodynamic forces generated during flight, including lift and drag. It is also designed to withstand the stresses of high-speed rotation and the forces of gravity. Additionally, helicopter rotors are engineered to withstand the impact of air turbulence and gusts, as well as the forces of maneuvering and landing. Overall, helicopter rotors are built to withstand the demanding conditions of flight and provide safe and reliable operation. **
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What is the rotor doing here?
The rotor is a key component of a helicopter, and it is likely shown in the context of a discussion or demonstration about how helicopters work. The rotor is responsible for generating lift and propulsion by creating a difference in air pressure as it spins. It is an essential part of the helicopter's ability to hover, take off, and maneuver in the air. **
How do you calculate the rotor speed?
The rotor speed of a rotating object can be calculated using the formula: Rotor Speed (RPM) = (60 x Frequency) / Number of Poles Where Frequency is the electrical frequency in Hertz and Number of Poles is the number of magnetic poles in the motor. This formula relates the electrical frequency to the mechanical speed of the rotor in revolutions per minute (RPM). By knowing the frequency and the number of poles, one can calculate the rotor speed of the motor. **
What do you think of the Mazenauer Rotor?
The Mazenauer Rotor is an innovative wind turbine design that aims to increase energy efficiency and reduce noise levels. Its unique blade configuration allows for better performance in low wind conditions, making it a promising option for areas with varying wind speeds. The rotor's ability to self-adjust based on wind direction and speed could potentially lead to higher energy production and lower maintenance costs in the long run. Overall, the Mazenauer Rotor appears to be a promising advancement in wind turbine technology. **
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VALEO 664203 Distributor rotor armManufacturer Restriction: DUCELLIER; Ignition Distributor/Rotor: no interference suppression; Weight [kg]: 0,021; TecDoc Engine Number: 11307, 11308, 12428, 12430, 21861, 22449, 22606, 2749, 2758, 2762, 2775, 2779, 2783, 2822, 2826, 2827, 2836, 2837, 2839, 2842, 2844, 2851, 2856, 2857, 2865, 2870, 2871, 2872, 2877, 2878, 2879, 2903, 3044, 3053, 3055, 3114, 3115, 3116, 3123, 3126, 3127, 3130, 3131, 3133, 3134, 3137, 3138, 3141, 3143, 3144, 3145, 3147, 3151, 3152, 3153, 3156, 3157, 3162, 3163, 3168, 3172, 32312, 3307, 3310, 3311, 3325, 3326, 3327, 3336, 3346, 3347, 3348, 3370, 3371, 34200, 34327, 3672, 3674, 3680, 3685, 3689, 3690, 38542, 38543, 38544, 4833, 4834, 4836, 4845, 4854, 4929, 5064, 5080, 5102, 5142, 5160, 5164, 5194, 5427, 588, 589, 590, 593, 607, 628, 654, 655, 6567, 661, 666, 6793, 683, 8480, 8490, 8507, 9392, 9551, 9552; Construction Year from: 01/1982, 01/1983, 01/1985, 01/1986, 01/1987, 01/1990, 02/1981, 02/1983, 02/1994, 03/1987, 04/1979, 04/1984, 04/1989, 04/1990, 04/1991, 05/1987, 05/1989, 05/1992, 06/1981, 06/1982, 06/1986, 06/1987, 06/1988, 06/1989, 06/1990, 06/1991, 06/1992, 07/1980, 07/1982, 07/1983, 07/1984, 07/1985, 07/1986, 07/1988, 07/1989, 07/1990, 07/1991, 08/1982, 08/1984, 08/1986, 08/1987, 08/1988, 08/1989, 08/1990, 08/1994, 09/1979, 09/1984, 09/1985, 09/1986, 09/1989, 09/1990, 09/1991, 09/1992, 10/1966, 10/1981, 10/1983, 10/1986, 10/1989, 11/1986, 11/1989; Construction Year to: 01/1992, 01/1994, 02/1983, 02/1988, 02/1989, 02/1991, 02/1994, 02/1996, 03/1992, 03/1993, 03/1996, 04/1985, 04/1991, 04/1992, 05/1986, 05/1988, 05/1989, 05/1990, 05/1999, 06/1984, 06/1985, 06/1986, 06/1988, 06/1989, 06/1990, 06/1992, 06/1993, 06/1994, 06/1995, 07/1981, 07/1982, 07/1984, 07/1985, 07/1986, 07/1987, 07/1988, 07/1989, 07/1990, 07/1994, 07/1996, 08/1979, 08/1985, 08/1989, 08/1990, 08/1993, 08/1994, 08/1996, 09/1985, 09/1986, 09/1988, 09/1989, 09/1990, 09/1991, 09/1992, 09/1996, 09/1998, 10/1986, 10/1995, 11/1981, 11/1992, 12/1970, 12/1974, 12/1983, 12/1984, 12/1985, 12/1987, 12/1988, 12/1989, 12/1990, 12/1992, 12/1994; Vehicle Identification Number (VIN) from: 244363; Vehicle Identification Number (VIN) to: F014062; Engine Code: 141B.000, 156 A2.000, 156 A2.100, 156A3.000, 156C.000, 160 A3.000, 160A3.000, 169 B, 170 B, 170 B,170D-U8, 171/A, 829A5, 829A5,J6RA600, 840.26,C6J.7.50, 841.7.17, 841.7.18, 9L6, A5L.7.17, A6M.7.25, A7L.23, A7L.23,A5L.7.50, B14-4S, B20700, C1E 700, C1E 760, C1E 762, C1E 762,C1E 764, C1E 764, C1G 720, C1G 720,C1G 722, C1G 730, C1G.7.02, C1J 742, C1J 768,C1J.7.80, C1J 770, C1J.7.15, C1J.7.68, C1J.7.70, C2J 717,C2J 766, C2J 717,C2J 794, C2J 717,C2J.7.18, C2J 794,C2J.7.20, C2J.7.08,C2J.7.20, C2J.7.56, C2J.7.67, C2J.7.67,C2J.7.68, C2J.7.68,C2J.7.95, C2J.7.70,C2L.7.17, C2J.7.84, C2J.7.95, C2J.7.97, C2L.7.14, C2L.7.17, C3G.7.00, C6J.7.28, DV, E1, F1, G1,G1A, G11/646, G13/636, G1A, G1A,G1B,G2S, G1B, G2, G2S, J2A, J5R 716, J5R 716,J5R.7.17, J5R 726, J5R.7.17, J5R.7.26, J6R.7.11, J6R.7.14,J6R.7.16, J6R.7.15, J6R.7.34...5,99 £*Shipping: 8,45 £Secure redirect to the provider
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BERU EVL134 Distributor rotor armManufacturer Restriction: System BOSCH; Manufacturer Restriction: BOSCH; Resistor [ohm]: 1000; Material: Polyester; Mounting Type: Plugged; Support plate diameter [mm]: 10,2; Construction Year to: 01/1990, 05/1988, 04/1989, 08/1995, 02/1991, 07/1994, 07/1991, 02/1995, 03/1990, 11/1992, 03/1994, 06/1996, 04/1996, 10/1998, 04/1994, 08/1996, 05/1997, 08/1992, 11/1990, 09/1991, 12/1995, 08/2000; Construction Year from: 08/1986, 09/1985, 01/1987, 09/1989, 01/1989, 08/1990, 08/1985, 08/1984, 01/1993, 02/1985, 10/1985, 01/1985, 01/1991, 09/1994, 03/1990, 07/1990, 10/1991, 09/1993, 03/1994, 10/1990, 06/1996, 08/1983, 09/1990, 05/1985, 10/1988, 03/1998; Catalytic Converter Type: with three-way catalytic converter, for vehicles with catalytic converter preparation, for vehicles with catalytic converter; Ignition Distributor Number: Bosch, 034 905 205 H, 0 237 520 048, 052 905 225 C, 030 905 205 AB; Engine Number to: 14180385; TecDoc Engine Number: 306, 233, 1361, 5159, 9367, 4989, 4979, 4963, 4975, 5027, 4971, 10609, 9519, 16253, 4002, 5533, 13891, 12949, 10867; Vehicle Identification Number (VIN) from: 8A-M-000 001, 50-N-000 001, 241000, 80-M-100 001; Engine Code: 2E, ADY, AGG, AKR, 2E, ADY, 2E, ADY, AGG, B 230 K, AEA, AEE, AHS, ABD, AEX, AKV; Vehicle Identification Number (VIN) to: 1G-L-320 0006,29 £*Shipping: 8,45 £Secure redirect to the provider
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BREMI 7353 Distributor rotor armManufacturer Restriction: System DUCELLIER; Manufacturer Restriction: SYSTEM MARELLI, SYSTEM DUCELLIER; no interference suppression: ; Engine Code: E6J/701, C1G 730; Construction Year to: 12/1992; Construction Year from: 01/1989, 04/1987, 01/1991; Vehicle Identification Number (VIN) from: F001140628-; for OE number: 77 01 033 622; TecDoc Engine Number: 3212, 3184; Vehicle Identification Number (VIN) to: -F003490915,99 £*Shipping: 8,45 £Secure redirect to the provider
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What are rotor blades?
Rotor blades are the rotating wings of a helicopter or an aircraft that generate lift and thrust. They are attached to the rotor hub and spin around a central axis to create the necessary aerodynamic forces for flight. Rotor blades come in various shapes and sizes depending on the type of aircraft and its intended use. Proper maintenance and balance of rotor blades are crucial for safe and efficient flight operations. **
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Where is the rotor located?
The rotor is located inside the distributor of an internal combustion engine. It is a key component in the ignition system and is responsible for distributing high voltage electricity to the spark plugs in the correct firing order. The rotor spins inside the distributor cap, making contact with the ignition coil and sending the electrical charge to the appropriate spark plug at the precise moment for combustion. **
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What is the role of the rotor in the physics of circular motion?
The rotor plays a crucial role in the physics of circular motion by providing the centripetal force necessary to keep an object moving in a circular path. As the rotor spins, it generates a force that pulls the object towards the center of the circle, preventing it from flying off in a straight line. This centripetal force is essential for maintaining the object's velocity and direction in circular motion. The rotor's speed and size determine the magnitude of the centripetal force acting on the object. **
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What is the significance of the rotor in the physics of circular motion?
The rotor is significant in the physics of circular motion because it is the part of a rotating system that experiences centripetal acceleration. This acceleration is directed towards the center of the circular path and is necessary to keep the rotor moving in a circular motion. The rotor's mass and distance from the center of rotation also affect the amount of centripetal force required to keep it in motion, making it an important factor in understanding the dynamics of circular motion. Additionally, the rotor's angular velocity and moment of inertia are key parameters in determining the rotational motion of the system. **
Similar search terms for Rotor
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FACET 3.7758 Distributor rotor armAlternative Repair Kit: HT.0732; Supplementary Info: Made in Italy - OE Equivalent; TecDoc Engine Number: 3014, 3015, 3024, 3070, 3097, 3101, 3103, 3104, 3106, 3110, 3114, 3116, 3120, 3123, 3126, 3127, 3128, 3129, 3130, 3131, 3135, 3136, 3141, 3143, 3144, 3145, 3147, 3149, 3151, 3152, 3154, 3158, 3161, 3175, 3176, 3179, 3219, 4853, 4856, 5054, 5445; Manufacturer Restriction: Femsa6,29 £*Shipping: 8,45 £Secure redirect to the provider
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EPS 1.406.025R Distributor rotor armResistance Rotor [ohm]: 5000; Alternative Repair Kit: KR.0507, KR.0517, KR.0533; Supplementary Info: Made in Italy - OE Equivalent; TecDoc Engine Number: 1196, 1198, 1199, 1203, 1204, 1233, 1239, 12429, 1251, 12750, 1342, 1344, 1345, 1346, 1362, 1380, 1453, 1460, 17074, 17086, 1796, 20957, 2140, 2150, 22533, 22543, 23, 28853, 2973, 3099, 33, 35, 3677, 3686, 3917, 3919, 3936, 4070, 4074, 4354, 43953, 4469, 4472, 4474, 4495, 4496, 5029, 5030, 910; Construction Year from: 04/1974; Construction Year to: 08/1982, 10/1984, 12/1974; Vehicle Identification Number (VIN) from: 14-E-003891; Engine Number from: 185001; Engine Number to: 309582; Manufacturer Restriction: Bosch6,59 £*Shipping: 8,45 £Secure redirect to the provider
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EPS 1.406.026R Distributor rotor armResistance Rotor [ohm]: 5000; Alternative Repair Kit: KR.0508; Supplementary Info: Made in Italy - OE Equivalent; TecDoc Engine Number: 14728, 14729, 22449, 259, 260, 263, 26412, 26413, 265, 2758, 2775, 2777, 2871, 2899, 2900, 2901, 2903, 32312, 3506, 3507, 3508, 3509, 3510, 3512, 3513, 3528, 3530, 3553, 3554, 368, 38574, 4082, 4092, 4093, 4097, 4104, 4105, 4115, 4207, 4214, 4347, 4368, 45567, 4723, 4725, 4834, 4836, 5001, 5002, 5008, 5009, 5010, 5367, 5380, 5396, 9381; Construction Year from: 01/1976, 01/1978, 01/1985, 01/1991, 02/1980, 03/1973, 05/1978, 05/1980, 07/1981, 07/1985, 08/1979, 08/1980, 08/1983, 08/1984, 10/1981, 10/1984; Construction Year to: 01/1991, 06/1984, 07/1977, 07/1979, 07/1992, 10/1982, 12/1981, 12/1985, 12/1990; Ignition Distributor Number: 0237009624; Manufacturer Restriction: Bosch6,29 £*Shipping: 8,45 £Secure redirect to the provider
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EPS 1.406.121R Distributor rotor armResistance Rotor [ohm]: 1000; Alternative Repair Kit: KR.0515, KR.0545, KR.0551, KR.0554, KR.0558; Supplementary Info: Made in Italy - OE Equivalent; TecDoc Engine Number: 102, 10609, 10847, 10848, 10867, 109, 110, 111, 11354, 11448, 116, 117, 1171, 1177, 1178, 1181, 1183, 1188, 120, 12028, 12513, 12514, 12515, 1252, 1275, 1281, 1282, 1288, 1290, 12948, 12949, 1301, 1304, 1306, 1308, 1319, 1327, 1329, 1332, 1334, 1337, 13388, 13394, 13469, 1351, 1355, 1356, 1357, 1359, 1361, 1362, 1364, 1365, 1368, 1369, 1370, 13768, 13770, 13772, 13891, 1421, 1422, 1423, 1424, 14828, 14913, 15288, 15370, 15488, 15489, 15490, 15496, 15610, 15613, 15614, 16253, 16542, 16543, 17553, 17581, 17585, 17612, 17613, 18088, 18089, 18752, 20490, 2061, 2065, 2078, 2080, 2081, 2086, 2091, 2092, 2093, 211, 221, 222, 223, 22544, 22919, 233, 234, 236, 238, 240, 243, 256, 261, 2659, 2737, 283, 295, 296, 301, 302, 303, 306, 308, 311, 316, 318, 323, 327, 328, 341, 3515, 3518, 3519, 3520, 3523, 3524, 3525, 3553, 3554, 3570, 3574, 3576, 3578, 3591, 3595, 3596, 37, 3820, 3925, 3927, 3930, 3948, 3955, 3994, 3995, 3998, 4001, 4002, 4004, 4007, 4015, 4017, 4019, 4021, 4059, 4094, 41, 4133, 4139, 4140, 4143, 4151, 4153, 4154, 4191, 4193, 4194, 4198, 43581, 4447, 4448, 4450, 4451, 4466, 4474, 4483, 4569, 4570, 4653, 4655, 4656, 4657, 4719, 4739, 4740, 4764, 4765, 4780, 4782, 4783, 4785, 4787, 4788, 4798, 4801, 4803, 4811, 4819, 4890, 4892, 4893, 4895, 4897, 4957, 4963, 4965, 4968, 4971, 4973, 4975, 4976, 4979, 4980, 4981, 4982, 4983, 4984, 4986, 4988, 4989, 50, 5001, 5019, 5021, 5023, 5027, 5050, 5150, 5159, 52, 5369, 5372, 5374, 55, 5532, 5533, 5534, 5536, 5537, 56, 57, 8405, 93, 9344, 9367, 9375, 9380, 9381, 9382, 9383, 9384, 9386, 9389, 9441, 9447, 9519, 9688, 9991; Construction Year from: 01/1990, 06/1994, 09/1993, 10/1984; Construction Year to: 01/1998, 04/1994, 07/1986; Vehicle Identification Number (VIN) from: 31-L-400001, 8A-M-000001; Engine Number from: GK012823; Engine Number to: 14137012; Engine Code: 1F; Ignition Distributor Number: 0237521024, 034905205H, 050905205AH, 1367382, 1367382,1367468; Manufacturer Restriction: Bosch; Catalytic Converter Type: for vehicles with catalytic converter; Left-/right-hand drive vehicles: for right-hand drive vehicles; Country Specific Design: Switzerland; Model Year from: 19876,29 £*Shipping: 8,45 £Secure redirect to the provider
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What can a helicopter rotor withstand?
A helicopter rotor is designed to withstand a variety of forces and conditions. It can withstand the aerodynamic forces generated during flight, including lift and drag. It is also designed to withstand the stresses of high-speed rotation and the forces of gravity. Additionally, helicopter rotors are engineered to withstand the impact of air turbulence and gusts, as well as the forces of maneuvering and landing. Overall, helicopter rotors are built to withstand the demanding conditions of flight and provide safe and reliable operation. **
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What is the rotor doing here?
The rotor is a key component of a helicopter, and it is likely shown in the context of a discussion or demonstration about how helicopters work. The rotor is responsible for generating lift and propulsion by creating a difference in air pressure as it spins. It is an essential part of the helicopter's ability to hover, take off, and maneuver in the air. **
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How do you calculate the rotor speed?
The rotor speed of a rotating object can be calculated using the formula: Rotor Speed (RPM) = (60 x Frequency) / Number of Poles Where Frequency is the electrical frequency in Hertz and Number of Poles is the number of magnetic poles in the motor. This formula relates the electrical frequency to the mechanical speed of the rotor in revolutions per minute (RPM). By knowing the frequency and the number of poles, one can calculate the rotor speed of the motor. **
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What do you think of the Mazenauer Rotor?
The Mazenauer Rotor is an innovative wind turbine design that aims to increase energy efficiency and reduce noise levels. Its unique blade configuration allows for better performance in low wind conditions, making it a promising option for areas with varying wind speeds. The rotor's ability to self-adjust based on wind direction and speed could potentially lead to higher energy production and lower maintenance costs in the long run. Overall, the Mazenauer Rotor appears to be a promising advancement in wind turbine technology. **
* All prices are inclusive of VAT and, if applicable, plus shipping costs. The offer information is based on the details provided by the respective shop and is updated through automated processes. Real-time updates do not occur, so deviations can occur in individual cases. ** Note: Parts of this content were created by AI.