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778.33 million.
Around 500 AD, with the rise and development of economy, culture, and Buddhism, mathematics in the Punjab region in the northwestern part of the Indian subcontinent was at the forefront and originated in India. The astronomer Ayebiheit made a new breakthrough in simplifying numbers: he wrote down the numbers in cells, and if there was a symbol in the first cell, such as a dot representing 1, then the same dot in the second cell would represent ten, and the dot in the third cell would represent a hundred.
In this way, not only the number symbols themselves, but also the order in which they are located are also important. Indian scholars have introduced the symbol as zero. Suffice it to say that these symbols and representations are the ancestors of today's Arabic numerals.
Around 700 years ago, the Arabs conquered the Punjab region and were surprised to find that the conquered regions were more advanced in mathematics than they were. Later, the Arabs introduced this figure to Spain.
In the 10th century, it was spread to the rest of Europe by Pope Gerbert Aurillac.
Around 1200 AD, European scholars formally adopted these symbols and systems. By the 13th century, under the initiative of the mathematician Fibonacci of Pisa, Italy, ordinary Europeans also began to adopt Arabic numerals, and by the 15th century this phenomenon was quite common. At that time, the shape of Arabic numerals was not exactly the same as modern Arabic numerals, but they were relatively close, and many mathematicians put a lot of effort into making them the way they are written today.
Arabic numerals originated in India, but they were transmitted to the four corners through the Arabs, which is why they came to be called Arabic numerals.
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Seventy-seven thousand eight hundred seventy three thousand.
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The number rewritten as a unit of 10,000 should be dissolved by the number of digits occupied by the unit, and its unit is "10,000", subject to unit 1, and its minimum number is 10,000, which is read as 10,000, that is, the four-digit mantissa is removed, so the four-digit mantissa is removed, that is, the 4 0s are removed, and the unit "10,000" can be added.
A natural number of fierce ants blindly knows the number of mountains, which is called the number of digits. The number of digits in a natural number is called the number of digits. A number with one digit is a single digit, a number with two digits is a two-digit number, and a number with three digits is a three-digit number, ......A number with n digits is an n-digit number.
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Summary. 1823530000 rewritten as a unit of 10,000: 182353 million.
1823530000 rewritten as a unit of 10,000: 182353 million.
1823530000 read "1,823,530,000."
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363300000 was rewritten as 363.3 million. Chain field contains
Solution: Because 10,000 = 10,000, and 363,300,000 10,000 = 36,330.
Then 363300000 = 36330x10000 = 36330x10,000 = 363.3 million.
That is, 363,300,000 is rewritten into 363,300,000.
Conversion relationships between counting units
100 million = 10 x 10 million, 10 million = 10 x 1 million, 1 million = 10 x 100,000, 100,000 = 10 x 10,000.
10,000 = 10x1 thousand, 1,000 = 10x100, 100 = 10x1 ten.
Digital
For a multi-digit number, starting from the right end of the multi-digit number, the first digit is "single digit", the second digit is "ten", the third digit is "hundred", the fourth digit is "thousand", the fifth digit is "ten thousand", the sixth digit is "one hundred thousand", the seventh digit is "million", the eighth digit is "ten million", and the ninth digit is "billion".
The above content reference: Encyclopedia - Digital.
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5,470,500 min, 5475000000;
5475000000 = billion;
5475000000 5.5 billion
Therefore, Shen Feng's answer is: 5475000000; Qiaoxiao Mountain; 55
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1590 5405 10,000 = 10,000.
Move the decimal point of the early silver 15905405 four places to the left, and 15905405 the decimal point in the lower right corner of the single digit 5, omitting the unwritten lead cavity).
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1382760 rewritten in tens of thousands is tens of thousands. Calculation method:
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Ten thousand; The analysis of the solution ideas is as follows:
1.This question should be involved in the third and fourth grades, according to the measurement rules of one, ten, hundred, thousand, thousand, one million, one million, ten million, the number on the question is 47,209,, 7.2 million, and the remaining 9,000. Similarly, scientific notation can also be used to count.
2.Scientific Notation:
Scientific notation is a method of keeping numbers. Zaokong expresses a number as a multiplied by the nth power of 10 in the form of Zhenxiang (1 |a|<10, a is not a fraction, n is an integer), this notation is called scientific notation.
3.For example: 19971400000000=. The power of a calculator or computer to express 10 is generally a stool with e or e, that is.
230184 changed to the number of units in 10,000 is: 230184 = 10,000.
100 million is 10,000 times 10,000.
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