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Summary. Hello, there are two possibilities for this.
One is that you have always been at the same distance.
The second is that if you change your address, it still shows the same distance, because he has not been posting a message, so your distance is calculated according to the location selected by the other party's last release.
Momo moves the other party for a day, but the distance remains the same.
Hello, there are two possibilities for this. One is that you have always been at the same distance. The second is that if you change your address, or the judgment lead shows the same distance, it is because, he has not been posting, and the distance is calculated according to the location selected by the other party's last release.
Hope it helps.
<> is the dynamic distance unchanged?
Right. It won't change.
If you don't send it, it won't be updated.
A day later, the distance changed.
It hasn't changed before.
Explain the update dynamics.
Oooh. Thank you.
Uh-huh. You are welcome.
Sometimes the system has a relationship.
Yes, sometimes the system is stuck and will not be updated in time.
Sometimes bugs happen
Ask about custom messages].
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1. "Distance" refers to how far the user's location is from the user's current location to log in to Momo, which is calculated through base stations or WiFi nodes such as 3G and 4G data.
2. "Time" refers to the moment when the "distance" between the location where the user logs in to Momo and the place where the user now logs in to Momo.
3. Momo is the first mobile phone application based on iPhone, Android and Windows Phone developed by Momo Technology, and users can more conveniently discover nearby people through geographic location information and interact with people in real time.
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It is far from the pedestrian street of the new county town of Shuibian Town, Xiajiang County.
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Time is the time of landing, and distance is the distance between you.
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The phenomenon of the same Momo being too high and not being at the same time is due to the fact that the sound will be hindered and attenuated in the process of propagation, resulting in different sound pressure levels when the sound reaches different places, resulting in the difference between the distance and the distance of the sound.
In the process of sound propagation, it will encounter a variety of obstacles, such as air, buildings, terrain, etc., which will hinder the propagation of sound, so that the sound will have different sound pressure levels when it reaches different distances. In addition, the distance over which sound travels is also affected by factors such as ambient temperature, humidity, wind speed, etc.
In real life, we can use amplifiers, horns and other equipment to expand the range and sound pressure level of sound, so that the sound can reach a longer distance. At the same time, acoustic design is also needed to be considered when designing buildings, public places, etc., to ensure the transmission effect of sound.
In short, the phenomenon of the same Momo height, different distances at the same time is due to the influence of hindrance and attenuation of sound in the process of propagation, which is related to the distance, obstacles, and environmental factors of sound propagation. To solve this problem, there are a few things we can do to increase the range of sound propagation and increase the sound pressure level.
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The phenomenon of the same height and different distances at the same time is due to the curvature of the earth. The earth is a sphere, and the transmitted signal of Momogao is transmitted in a straight line, so the signal will encounter the influence of the curvature of the earth during propagation, resulting in different propagation distances of the signal. This phenomenon also exists in terrestrial communications, such as our commonly used radio and mobile phone signals, which will be affected by the curvature of the earth, so that the signal propagation speed and distance at different distances are different.
In addition, the propagation distance of the signal is also related to the state of the Earth's atmosphere. Due to the existence of gas layers with different densities and refractive indices in the atmosphere, these gas layers will have an impact on the propagation of electromagnetic mode deficit waves, resulting in different speed and distance of signal propagation.
In short, the phenomenon of the same Momo height and different distances at the same time is caused by the influence of the curvature of the earth and the atmosphere, which is also a common phenomenon in ground communication.
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The phenomenon of the same height and the same time singing this different distance may be due to the curvature of the earth. The Earth is an almost spherical celestial body, and the distance from the ground to the center of the earth varies from place to place, which leads to the curvature of the Earth's surface. The signal is also affected by the curvature of the earth during transmission, so there may be temporal differences in the signal received at different distances.
In addition, the same Momo tower is high, but there may also be differences in signal transmission distance in different locations. This may be related to factors such as the building, topography, and environment, such as the obstruction of the building, the undulation of the terrain, and the electromagnetic interference of the environment.
In order to solve these problems, the communication company Punch Group often sets up multiple base stations in different locations to make signal transmission more stable and reliable. At the same time, some technical means, such as signal boosters and antenna optimizers, are also used to improve the quality and efficiency of signal transmission.
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The same Momo height and different distances at the same time are due to the fact that the sound will be affected by air, temperature, humidity and other factors in the process of propagation, resulting in changes in the speed of sound propagation. Specifically, when the temperature and humidity of the medium (air) of the sound propagation are different, the speed of sound propagation will also be different, which leads to the same Momo height being heard at different distances at different times.
In addition, sound propagation is also affected by factors such as terrain, buildings, obstacles, etc., which can change the path of sound propagation, resulting in different time and conditions when the sound is heard in different locations.
Extension: The speed of sound propagation is related to the density and elasticity of the medium, and the speed of sound is different in different media. For example, sound travels at a speed of about 343 m-s in air and 1,497 m-s in water.
Therefore, the speed at which sound travels in different media is also different.
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The phenomenon of the same height and different distances at the same time is due to the fact that the earth is a sphere, not a plane. Therefore, at the same moment, due to the curvature of the earth, the farther away from the line of sight, the higher the scene will be presented. That's why when you look at buildings and mountains from a distance, they look taller, but when you get closer, they appear lower.
In addition to the curvature of the Earth, climate and atmosphere also have an impact on the phenomenon of different distances at the same time at the same height. For example, when you observe the same Momo height on a foggy day, it will look shorter than on a sunny day, because the fog will block your view.
In practical applications, we need to understand the reasons for the different distances between the same temporal clusters at the same Momo height, which helps us to measure altitude or early closure more accurately, and better understand the visual effect when observing distant scenes.
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The same Momo height and different distances at the same time are because the earth is a sphere, not a plane, so the position of different places on the earth will affect the propagation distance of the signal received by its blind holes, and then affect the arrival time of the signal.
Specifically, people at different distances on the same Momo receive different signal propagation distances, because the signal needs to pass through the influence of factors such as the earth's atmosphere and the curvature of the earth, and these factors will affect the propagation speed and path of the signal, which in turn leads to different arrival times of the signals received by people at different distances.
In addition, different communication signals will also be affected by different propagation factors, such as electromagnetic waves will be affected by weather, atmosphere, terrain, landform and other factors in the propagation process, resulting in different distance signal propagation distance and propagation speed, which is also one of the reasons why people at different distances on the same Momo receive different signals.
In general, the signals received by people at different distances on the same Momo are different due to the curvature of the earth and the influence of different propagation factors. When we use communication equipment, we need to pay attention to these factors in order to better use and receive communication signals.
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The same Momo height and different distances at the same time are mainly because the earth is a sphere, and artificial satellites operate in orbits at different altitudes, and the distance from the earth's surface is different, so it will lead to different times of signals received at the same time, resulting in different arrival times of satellite signals at different distances at the receiving end, which in turn leads to the time difference of the signal.
It should be added that the closer the satellite is to the receiver, the shorter the signal transmission time, and conversely, the farther the satellite is from the receiver, the longer the signal transmission time. At the same time, due to the different speeds of the earth's rotation and satellite motion, the arrival time of the satellite signal will also be affected, resulting in different times for satellites at the same altitude to receive the detected signal at different locations.
In satellite communication, we need to consider the time difference of signal transmission, so as to synchronize the time and ensure the correctness and reliability of the communication. At the same time, we also need to accurately calculate and ** the satellite orbit to ensure the accuracy of the transmission and reception of satellite signals.
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From a physical point of view, the same Momo height at the same time and different distances is due to the characteristics of sound wave propagation. Sound waves are propagated by the vibration of the medium, and the speed of sound is related to the density and elasticity of the medium, and the change of air density and temperature will affect the speed of sound, resulting in different speeds of sound wave propagation, resulting in the phenomenon of different distances at the same time at the same height.
In specific application scenarios, for example, when people speak outdoors, due to the different speed of sound propagation between different distances, there will be time differences in the sound heard by people at different distances, which leads to the time when people speaking at the same time hear different sounds in listeners at different distances.
Expansion: In addition to the characteristics of sound wave propagation, there may also be a lack of balance of other factors that lead to the phenomenon that the same Momo is at the same height and at different distances at the same time. For example, the presence of obstacles in the environment can hinder the propagation of sound waves, resulting in changes in the intensity of the sound and the distance traveled.
In addition, different people also have differences in their ability to perceive sound, which will also have a certain impact on the same Momo height at the same time and at different distances.
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The phenomenon of the same height and different distances at the same time is caused by the curvature of the earth and the refraction effect of the atmosphere.
When we use communication software such as Momo to make a call, the signal will be sent from the sender in the form of electromagnetic waves, and when the electromagnetic waves propagate in the air, they will be affected by factors such as air density, temperature difference, and humidity, resulting in refraction. This refraction phenomenon causes the electromagnetic waves to bend, which causes the propagation path of the signal to be shifted.
In addition, the curvature of the earth can also contribute to this phenomenon. Because the Earth is a sphere, when electromagnetic waves propagate, they will be obstructed by the Earth's surface, causing the distance and direction of signal propagation to collapse and change. This phenomenon causes differences in the arrival time of signals at the same height at different distances.
Therefore, when we use communication software such as Momo to make a call, the time when the signal on the same Momo height arrives at different distances may be deviated, which is the phenomenon of different distances at the same time at the same Momo height.
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The situation of the same Momo height and different distances at the same time is caused by the curvature of the earth. Since the Earth is a three-dimensional object that approximates a sphere, the distance between two points on the Earth's surface varies with the positional relationship of the two points. At the same altitude, the closer you are to the center of the Earth, the shorter the distance, and the farther you are from the center of the Earth, the longer the distance.
Therefore, the non-macroscopic same distance at the same height is due to the difference in the distance of these sites from the center of the earth.
In the fields of aviation, aerospace, etc., scientists usually use the Great Circle Route to plan the route to ensure the shortest distance of the flight. The Great Circle Course is the shortest path on the spherical surface that connects the two points, and it travels along the curvature of the surface of the ground covering the trouser ball, rather than in a straight line. This method ensures the shortest flight time and lowest fuel consumption for the flight.
In addition to the curvature of the Earth, there are other factors that can affect different distances at the same altitude, such as the shape of the Earth is not a perfectly regular sphere, the thickness and density of the atmosphere, and so on. But in general, the curvature of the earth is the most important factor affecting different distances at the same altitude.
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There are two reasons why the cavity grip Momo distance display is unknown:
The first kind of stove round answer: the other party is in a state of invisibility;
The second type: was blocked by the other party.
Momo is a location-based mobile social tool. So that the user can know the people near him through Momo, send text messages, voice, ** and accurate geographical location for free to better communicate with the people around him; You can use Momo to create and join nearby interest groups, messages, and nearby events and Momo bars.
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Someone else may have reported you.