Uploaded May 2025 | Updated September 2026, 2 hours ago
►Fuel Consumption of the Most Iconic Cars of All Time – From Efficient to Extreme Fuel Guzzlers
►The Peel P50 is one of the most fuel-efficient cars ever made. But as we move up to vehicles like the Thrust SSC, dragsters, tractor pullers, and the Shockwave Jet Truck, fuel consumption skyrockets compared to a normal car. This video compares the fuel use of iconic machines — from tiny city cars to record-breaking beasts.
- made with Unreal Engine 5.6
►How top speed Consumption is calculated ?
I used AI to calculate how much fuel a car would use at its top speed. The car is imagined driving full throttle on a flat, straight road with no wind. The AI takes into account real-world factors like engine power, weight, air drag, tire friction, and drivetrain losses to estimate fuel use as accurately as possible.
"ChatGPT, Grok, and Gemini were used for this calculation"
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🎶 MUSIC:
►Trailer: Credits:
Music: On The Target by ArcticFoxMusic
Link to Video: youtu.be/1zc9BXggWn4
►"Alexander Nakarada - Lurking Sloth" is under a Free To Use YouTube license
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Music powered by BreakingCopyright: youtu.be/ZFKmiXRI5hU
►Credits:
Music: Cybersuir by ArcticFoxMusic
Link to Video: youtu.be/Zf-fy6ni18Q
►Credits:
Music: Gemini by Soundridemusic
Link to Video: youtu.be/lmUuG7IlEWM
►Credits:
Music: Imposter by Soundridemusic
Link to Video: youtu.be/npF2Kyr3n2A
►Credits:
Music: Stalker by Soundridemusic
Link to Video: youtu.be/IYS37TfJ0D8
©Timestamps:
00:00-CARS
06:48-GIANT Consumers
#redside #cars #Fuel #consumption #animation
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►Fuel Consumption of the Most Iconic Cars of All Time – From Efficient to Extreme Fuel Guzzlers
►The Peel P50 is one of the most fuel-efficient cars ever made. But as we move up to vehicles like the Thrust SSC, dragsters, tractor pullers, and the Shockwave Jet Truck, fuel consumption skyrockets compared to a normal car. This video compares the fuel use of iconic machines — from tiny city cars to record-breaking beasts.
- made with Unreal Engine 5.6
►How top speed Consumption is calculated ?
I used AI to calculate how much fuel a car would use at its top speed. The car is imagined driving full throttle on a flat, straight road with no wind. The AI takes into account real-world factors like engine power, weight, air drag, tire friction, and drivetrain losses to estimate fuel use as accurately as possible.
"ChatGPT, Grok, and Gemini were used for this calculation"
►Enjoy the ride and don’t forget to like, comment, and subscribe for more comparisons!
⭐SUBSCRIBE: @REDSIDEofficial
🔔 TURN ON NOTIFICATIONS, and be the first to watch every video!
🎶 MUSIC:
►Trailer: Credits:
Music: On The Target by ArcticFoxMusic
Link to Video: youtu.be/1zc9BXggWn4
►"Alexander Nakarada - Lurking Sloth" is under a Free To Use YouTube license
soundcloud.com/creatorchords
Music powered by BreakingCopyright: youtu.be/ZFKmiXRI5hU
►Credits:
Music: Cybersuir by ArcticFoxMusic
Link to Video: youtu.be/Zf-fy6ni18Q
►Credits:
Music: Gemini by Soundridemusic
Link to Video: youtu.be/lmUuG7IlEWM
►Credits:
Music: Imposter by Soundridemusic
Link to Video: youtu.be/npF2Kyr3n2A
►Credits:
Music: Stalker by Soundridemusic
Link to Video: youtu.be/IYS37TfJ0D8
©Timestamps:
00:00-CARS
06:48-GIANT Consumers
#redside #cars #Fuel #consumption #animation
► Follow my Social Networks
TIKTOK: / red.side




![Satellites and Spacecraft size Comparison |🛰
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1-Project 1 - Ambient Background Music
2-Dark Ambient Background Music - He lies broken by your shame
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WIKIPEDIA (SATELLITE)
In the context of spaceflight, a satellite is an artificial object which has been intentionally placed into orbit. Such objects are sometimes called artificial satellites to distinguish them from natural satellites such as Earths Moon.
In 1957 the Soviet Union launched the worlds first artificial satellite, Sputnik 1. Since then, about 8,100 satellites from more than 40 countries have been launched. According to a 2018 estimate, some 4,900 remain in orbit, of those about 1,900 were operational; while the rest have lived out their useful lives and become space debris. Approximately 500 operational satellites are in low-Earth orbit, 50 are in medium-Earth orbit (at 20,000 km), and the rest are in geostationary orbit (at 36,000 km). A few large satellites have been launched in parts and assembled in orbit. Over a dozen space probes have been placed into orbit around other bodies and become artificial satellites to the Moon, Mercury, Venus, Mars, Jupiter, Saturn, a few asteroids, a comet and the Sun.
Satellites are used for many purposes. Among several other applications, they can be used to make star maps and maps of planetary surfaces, and also take pictures of planets they are launched into. Common types include military and civilian Earth observation satellites, communications satellites, navigation satellites, weather satellites, and space telescopes. Space stations and human spacecraft in orbit are also satellites. Satellite orbits vary greatly, depending on the purpose of the satellite, and are classified in a number of ways. Well-known (overlapping) classes include low Earth orbit, polar orbit, and geostationary orbit.
A launch vehicle is a rocket that places a satellite into orbit. Usually, it lifts off from a launch pad on land. Some are launched at sea from a submarine or a mobile maritime platform, or aboard a plane (see air launch to orbit).
Satellites are usually semi-independent computer-controlled systems. Satellite subsystems attend many tasks, such as power generation, thermal control, telemetry, attitude control and orbit control.
WIKIPEDIA (SpaceCraft)
A spacecraft is a vehicle or machine designed to fly in outer space. Spacecraft are used for a variety of purposes, including communications, earth observation, meteorology, navigation, space colonization, planetary exploration, and transportation of humans and cargo. All spacecraft except single-stage-to-orbit vehicles cannot get into space on their own, and require a launch vehicle (carrier rocket)
On a sub-orbital spaceflight, a space vehicle enters space and then returns to the surface, without having gone into an orbit. For orbital spaceflights, spacecraft enter closed orbits around the Earth or around other celestial bodies. Spacecraft used for human spaceflight carry people on board as crew or passengers from start or on orbit (space stations) only, whereas those used for robotic space missions operate either autonomously or telerobotically. Robotic spacecraft used to support scientific research are space probes. Robotic spacecraft that remain in orbit around a planetary body are artificial satellites. Only a handful of interstellar probes, such as Pioneer 10 and 11, Voyager 1 and 2, and New Horizons, are on trajectories that leave the Solar System.
Orbital spacecraft may be recoverable or not. By method of reentry to Earth they may be divided in non-winged space capsules and winged spaceplanes.
Humanity has achieved space flight but only a few nations have the technology for orbital launches: Russia (RSA or Roscosmos), the United States (NASA), the member states of the European Space Agency (ESA), Japan (JAXA), China (CNSA), India (ISRO), Taiwan[1][2][3][4] (National Chung-Shan Institute of Science and Technology, Taiwan National Space Organization (NSPO),[5][6][7] Israel (ISA), Iran (ISA), and North Korea (NADA).
Keywords:
Satellite size comparison 2018 . Satellite and spacecraft size comparison 2018. spacecraft size comparison. Comparison of satellites. comparison of spacecraft. satellites 2018
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