What are the advantages of Aurora????

Updated on Car 2024-05-29
4 answers
  1. Anonymous users2024-02-11

    Straight-line top speed 0 - 100 km/h 0 - 180 km/h body size Body weight Minimum turning radius High-speed turning radius Steering runaway speed Drift sliding friction coefficient Drift steering coefficient Small jet force Small jet duration N20 Jet Power (Single) N20 Jet duration (single) N20 Jet power (team) N20 Jet duration (team) N20 Shot duration (team) N20 Gathering coefficient 213 km h s s m 1176 kg m m 187 km h 7527 n s n s 8021 n 4 s pros I think it feels good. Better than both razor and excellence. Actually, B car.

    As long as it's not too much garbage. It's all about the same in comparison. You look at the data.

    Straight flat speed, fast is not much faster. Less will not go less. The key is to look at the feel.

    Downsides. ,.This car is more men's.

    I opened it and it felt good. It felt like it was going around the corner with my pin. The main thing is that the car is too big.

    Dislike.

  2. Anonymous users2024-02-10

    Horsepower +3 Air intake +4 Suspension +3 Ignition +5 Do you want to play props or race Props add about 1 point of suspension Engine and ignition are mainly equipped with these two Gas collection is basically not used It doesn't matter if you add fuel or not If you are racing, add about 1 point of suspension, and you can slowly increase the suspension as the speed increases Personally, I think that 3 has come to an end, and there is no need to add it Engine and ignition should be appropriate, such as between 5 and 8 Fuel and intake should be added more, but don't overdo it.

  3. Anonymous users2024-02-09

    1. Diversity.

    The aurora borealis is characterized by its diversity and is regarded as one of the most beautiful wonders in nature. It is colorful, different shapes, incomparably beautiful, this is because the high-altitude body is composed of a variety of elements, and the color of the gas of different elements that are bombarded with tremor is different, so the aurora is gorgeous and colorful, and the changes are endless. Sometimes it appears for a very short time, like a festive firework flashing in the air and disappearing without a trace; Sometimes it can be in the air for hours.

    2. There is a time training section defeat.

    The most likely period for the occurrence of aurora is before the spring and autumn equinoxes, and the frequency of occurrence in spring and autumn is more frequent than in summer and winter. In addition, the frequency and brightness of auroras also increase when there are many sunspots or when the solar cycle is in a phase when coronal ejections increase and the solar wind intensifies.

    3. Occurrence area.

    Auroras mostly appear in high latitudes, especially in the polar regions, and rarely appear in the middle and low combustion latitude change areas, especially near the equatorial region, because the plasma continuously ejected by the sun, when the plasma blows near the earth, it is affected by the earth's magnetic field, enters the polar regions of the earth, and then bombards the upper atmosphere, it can appear.

  4. Anonymous users2024-02-08

    Summary. Hello, here is to help you find out: Aurora is a colorful plasma phenomenon.

    Hello, here is to help you find out: Aurora is a colorful plasma phenomenon.

    It occurs when a stream of charged particles (solar wind) enters the Earth's magnetic field, and a brilliant and beautiful glow appears at night in the high altitude near the north and south poles of the Earth. It is known as the Southern Lights at the South Pole and the Northern Lights at the North Pole. Earth's aurora is produced by the excitation (or ionization) of molecules or atoms in the upper atmosphere by a stream of high-energy charged particles (solar wind) from the Earth's magnetosphere or the Sun.

    Auroras often appear in the sky above the geomagnetic pole at latitude, generally in the form of bands, arcs, curtains, and radials, and these shapes are sometimes stable and sometimes change continuously. There are three conditions for the formation of auroras: the atmosphere, the magnetic field, and high-energy charged particles.

    Modern physics has a detailed description of the principle of auroras, which are caused by charged energetic particles from the magnetosphere and the solar wind that are brought into the earth's atmosphere by the geomagnetic field and collide with atoms in the upper atmosphere (thermosphere). Auroras occur not only on Earth, but also on other planets with magnetic fields in the solar system.

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