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In general, a person will not be exposed to more rain than the water they have drunk. This is true even for people who live in rainforests with abundant rainfall. A person drinks about one liter of water a day, and it is impossible to get such rainfall every day.
I've been drenched in more rain than you drink" is an exaggeration, mainly trying to show that your experience is quite rich, although the rain is less, but it adds up to more water than you drink, highlighting that you have experienced a lot of wind and rain. Similar sentences are:
1.I eat more salt than you eat.
2.I've crossed more bridges than you've walked.
These are exaggerated claims, highlighting the richness of human experience and not to be taken seriously.
I hope this explanation helps.
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That's impossible, because a person will take in a lot of water every day, but it can't rain every day, even if he runs to get wet as soon as it rains, he can't get more water than he drinks.
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It is impossible for a person to be drenched in more rain than to drink water. The first is how often you get in the rain, and if it rains, you won't be out there all the time. You'll try to find a place to shelter from the rain, or hold an umbrella.
And if you drink water, I guess you have to drink it every day. Because if you don't drink water, so does your body, you just can't bear it. You can go without eating for a few days, but if you don't drink water for a few days, it's absolutely fine.
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Without this possibility, people drink a lot of water every day, but people can't get wet in the rain every day, and they will hold an umbrella or wear a raincoat when it rains.
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Has there been more rain than water? What do you think of this? If you are in the desert area of the Inner Mongolia Plateau, it must be more water to drink, less rain, if you are in the south, in Guiyang, you may be drenched in rain, as if you drink more water, so there is no unified answer to this question, it depends on the environment you live in, and the geographical location you are in.
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The normal daily water intake of a person is 1200ml, what about a month, a year? It can't rain every day, and you're catching it all, and there's no rain protection.
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Impossible, a person's normal water intake is usually 1000ml, and the rain is only occasional, it is impossible to get wet often or every day, even if you need outdoor work, you also need a raincoat and cloak or the like, so it is impossible for a person to be in the rain more than the water he has drunk.
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Is it possible for a person to have more rain than the water he has drunk, it is impossible to drink more water, and the rain you have drunk cannot enter the body on the surface of the body, so it is impossible to drink more water.
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Your current experiences have no foundation of knowledge, no precipitation, they can only be experiences, not experiences. Most of the people in their forties and fifties are experienced. For example, you may still be confused about the future, but if you talk to your elders in their forties and fifties, they will read more clearly, and if you read more books, you will find that their way of thinking is the same as in some books.
But they are the summaries of their experience, and the depth of their thoughts is certainly not comparable to that of a 20-year-old you.
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You must truly experience birth, old age, sickness, death, sorrow, joy, separation, and reunion, so that you can truly be considered mature. People in their twenties don't generally have such a rich experience.
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How is that possible? Someone who is only 20 years old. How can it be that there is a lot of rain?
It's far worse than a 40-year-old person, you have only been an adult for two years, and when you were a child, your parents were there to shelter you from the wind and rain. And from 20 to 40 years old you should go on your own.
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It's not that you're older, you're wiser. Today's young people are generally more educated and educated than the older generation. More suitable for modern society. We know more about mobile phones and computers than our elders. These things will bring efficiency to our lives.
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As the saying goes, what mountain to go, what song to sing. People who are not under a certain age will not understand.
For example, elementary school students don't understand why adults smoke and drink, and it's obviously very uncomfortable. Conversely, adults cannot convince children of the joy in it.
So, don't overestimate yourself and do what you should do at what age you should do.
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Go to the service industry, especially the kind of place where your colleagues are older than you, and you will know after two months with them.
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Maturity comes at a heavy price.
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As much, I think there should be one bowl on each of the two stone slabs, one still and the other moving in the rain, and there should be the same amount of water on the bowl at the same time. Of course, this is a simulated rain scene, where the raindrops should be parallel to each other, and the diagonal fall is also completely parallel, which is unrealistic in reality, so in fact, there will be a very small difference in the rain that is drenched.
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Lots of exercise. Because the speed at which rain falls is constant, if you are exercising, the degree of wetness is related to your speed, and the faster it is, the wetter it will be! For example, in 1 second, the rain will remain in the air, and if the speed of the person is faster, the larger the space will be skimmed, and the amount of contact with the rain will increase, so the degree of dryness and wetness is related to the speed!
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It's more time to move.
Because when you move, the rain beam is no longer vertically downward.
The effect is equivalent to walking in windy rain.
There are many parts that get wet naturally.
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There is a lot of rain on the move.
Suppose a person is abstracted into a cylinder, and at rest it receives only raindrops from above, but in motion it receives not only the same amount of raindrops from top down, but also the front raindrops on the sides of the cylinder.
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When you move more, you will be less still.
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It is more when moving, and it is proportional to the speed within a certain range.
Let's think of it this way: the movement of people in the rain, that is, the relative movement of people relative to raindrops, can be understood as the relative movement of rain to people, and the speed is fast, that is, more raindrops fall on people in a unit of time.
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As much as there is no relative motion in the horizontal direction.
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But if there's no wind, then the people on the move are drenched.
Because the rain goes straight down, people only have their heads and shoulders.
And the person who walks around is frontal, head and shoulders drenched.
If the wind is blowing head-on to people, then it's still moving a lot.
If the wind is facing away from people, then there are many people standing.
Same as above.
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If there is no wind, then there will be less area at rest.
If there is wind and the rain is slanting, there may be less movement in the rain-soaked area.
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The same time, for sure, is more when moving
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There are many times to move because the object is moving.
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Theoretically, as much! Horizontal movement is relatively independent.
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If you're walking in the rain, it's going to be pretty much the same as standing in the rain, but if you're running in the rain, you're going to get wetter than standing in the rain, and I've tried that.
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One day my father asked me to carry something with him, and it started to rain halfway through, and I regretted that why didn't I listen to my mother and bring an umbrella? Dad said, "It's okay, we won't be able to get wet when we walk through the rain."
Haha, just have fun.
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I've watched the show on ** TV, and the rain in the forest is more when I run than when I walk.
But it doesn't seem to take the wind into account.
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Move more. Physics. The theory of relativity.
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Let's move, I think that if you move, the contact surface with the rain will be larger.
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Run, because of the fast speed of running, the rain in front of you will be stained on your body, and when you walk, only your head will be drenched a little more, and the area will not be so large.
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Just as much. If it's raining, just hold the bucket and try it.
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Let the amount of rainfall per unit time per unit volume in space be n( kg (m 3 s) ) the volume v of the person, and the person staying in the rain for t, then the mass of the person in the rain is: m=nvt
If you ask which one gets wet faster, it's faster to get wet as you run past.
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There are two reasons why running on a rainy day is more rainy than walking:
1. For the rain in front of you, it has nothing to do with speed, no matter how fast you go, it will rain all the rain in one volume. (Even though the rain will fall, but the same amount of rain is added in front of you, then you can see that the rain is suspended in the air, so the amount of rain you are showering is proportional to the volume of space you brush (the density of raindrops is constant)).
2. For the rain directly above, it is only proportional to your rain time, you are in any position, there is so much rain on you per unit time, so to reduce the rain above, you must shorten the exposure time, then, the faster you reach the destination, the less time you consume, the more you can reduce the rain above.
But if you don't have an umbrella and walk a long distance, you need to calculate whether the amount of rain you can reduce by running hard is worth it, and in the case of long distances, it doesn't matter if you run or not when the fixed amount of rain in front of you is enough to make you soak.
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When the theoretical emperors made the formula, did they take into account the problem of wind speed and direction? When it's windy, it's not just overhead! In this case, the amount of rain depends on the time of day!
Moreover, the premise of the formula is that the amount of rainfall is constant, but in fact it is not achievable, and in the case of variable measurements, it is important to narrow down the impact of the measurement on the outcome (just as the rain may fall heavier or smaller, so the shorter the time, the less influence the variables will have on the outcome), so it is better to run or run on a rainy day! And the longer you stay in the rain, the more likely you are to get sick
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