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Hehe, when you're your age, you like beautiful things, beautiful women, handsome guys. But the feelings at this time can only be said to be ignorant liking, just keep it in your heart, and you will know that you are a little naïve when you think about it later. There is no need to remember unforgettable, and there will be more to come:
It's good to be young, full of anticipation for the future Let it be, not necessarily break it.
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I don't think the gains outweigh the losses in high school relationships. (There are a few high school or junior high school people who fell in love and got married) as long as you can grasp it well, if you don't grasp it well, forget it.
If you want to store it, find an opportunity to ask her out and take a picture together.
The latter approach is a bit selfish :
If possible, tell her that you like her, but that this relationship will not be fulfilled until after graduation. (By the way, I got her first kiss) after graduation, I want to talk about whether I look at it.
In this way, both the material and the spiritual have the ...... you want
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Just keep it in your heart.
Let's help me analyze it.,I'm struggling with 3.
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I advise you not to remember.
I remember too many bad things. First, if you fall in love later, this thing is just a bomb. Second, this one has no results, what else to record, if you really like her, your heart is the best memory.
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At this time, the relationship is the best, don't go any further, it will be meaningless to say it.
Don't think about these things, put your mind elsewhere.
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Notes or the web can also store memories!
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Lock them up inside and take them out after a while.
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1 U disk. 2 Burn a cigarette butt on your arm.
3 Pierce your ears.
4 Tattoos.
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Ask yourself if you want to remember.
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Categories: Education, Science, >> Science & Technology.
Analysis: It was previously thought that memories in the brain were stored in RNA, but this has since been denied.
How memories are stored is a controversial question today.
The classical theory is that the brain acts as a storehouse for memories. Fragments of memories are stored in the brain like goods. This is called"Warehouse model".The classic definition of memory can be expressed as:
human memory is a system for storing and retrieving information, information that is , of course, acquried through our senses"(baddeley,1997)
Human memory is a system for storing and accessing information collected by the senses (Badney, 1997).
According to this theory, it is possible that memories are broken into pieces and stored in neurons (but not RNA).Many traditional AI technologies are based on this theory, such as various state search methods.
But now many modern scientists have proposed a new theory of memory. They believe that memories are dynamic, not static, stored in the brain
memory is best viewed as a set of skills serving perception and action (macleod, 1997)
Memory is best seen as the skill that connects perception and behavior (McLeod, 1997).
According to this theory, memory is not something stored in the neuronal cell body, but a state in which the antennae of neuronal cells are expressed. When our perception (seeing, touching) becomes an electrical signal, these antennae distribute the signal to one level after another, knowing and finally to the muscles, triggering behaviors.
The modern theory holds that memory is the relationship represented by these dynamically changing tentacles. This relationship connects our actions to our senses so that we will"Situational injury"Memories are born from this.
The change in antennae is directly related to the passing antennae. If a tentacle is not triggered by an electrical signal for a long time, the antennae will"Atrophy", the associated memory will be weakened. If the tentacles receive a long ** or a very violent ** sudden ** tentacle manuscript horns become very strong, and the memory is very deep.
The distribution of antennal function is highly immediate, so it is difficult to imagine that the state of the antennae can be inherited from the RNA. Therefore, it is still difficult to prove the inheritance of memory, unless we prove that the same antennae in the human brain with the same neurons in the same location remember the same information. If this is the case, memory inheritance (memory preservation into RNA) is possible.
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You won't forget your wedding anniversary in the future, or rather, you'll never forget anything again. Because in the next few decades, people will be able to store all their memories in a small device that can be hung around their necks.
This little installation will remember everything that people have saved in digital form, and it can preserve the footage that your father took for you on the day you were born. Your electronic transcripts, your health records and bank statements, all your life records can be kept safely on one hard drive. I can reproduce it for you at any time if you want.
This is not the future of the science fiction writers, and in the opinion of a group of British scientists, it has already begun. According to the British "Focus" magazine, for the past two years, computer scientists, psychologists, neuroscientists and sociologists of the "Life Memory" network have been working on how to use the increasing amount of information that humans have saved in digital form.
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The human brain understands it as a database, and our memories are stored in various tables, for example, the content related to "Zhihu" is stored in one or several tables called "Zhihu related records". So every time you go to Zhihu, your brain will select this table(s), and of course, when you talk about a certain topic of Zhihu with your colleagues and classmates, you are actually searching for this table(s). The brain will perform the following operations every time it receives information about Zhihu:
Search the related table to see if the record exists, if it does not exist, create a new record to the corresponding table, and increase the index weight of the record (the next search will be prioritized). The brain then sorts these records according to the index weights from highest to lowest, with the highest weights at the top for easy search next time. Over time, those old records that have not been retrieved for a long time will slowly decay to the back of the record sequence, and they will not be easy to be retrieved, and to put it bluntly, they are not easy to be remembered.
Of course, as an efficient database, only one index is unreasonable, so the index of the brain is very numerous, very complicated, such as the index of "Zhihu", the index of "beauty", the index of "love", the index of "money" and so on. As for why it is "forgotten" now, it is easier to explain why it will suddenly be remembered in the future: these "forgotten" ones are actually only because they are put at the end of most indexes and are not easily retrieved.
One day, it may suddenly trigger an index that is rarely used, and this index happens to quickly retrieve the "forgotten" memory.
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Good memories, sad memories, memories of the skills of solving equations, memories of English words, there is no doubt that they are all stored in our brains. But where exactly are they?
In the 50s of the last century, scientists discovered that the "hippocampus" in the brain plays a crucial role in storing information - if the hippocampus is removed, the previous memories will disappear along with it. But how do nerve cells in the hippocampus hold the information in place? Scientists have discovered that some molecules are involved in the formation of memories.
In addition, synaptic formation of nerve cells is also associated with memory. However, scientists do not yet know enough about the workings of memory – a mechanism that is so important for understanding ourselves.
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