10 000 000 = 10 to the power of 7
A one followed by 32 zeroes. 100 000 000 000 000 000 000 000 000 000 000 100 nonillion 100 thousand billion billion billion
10 to the power of 23 = 100 000 000 000 000 000 000 000 So 3.3022 multiplied by that = 330 220 000 000 000 000 000 000 Which would be said as 330 thousand 220 quintillion. (I think :P)
100, 000, 000 * 10, 000 = 1, 000, 000, 000
The gogolplex ( googolplex in English) is defined like high number 10 with the power gogol. A gogolplex writing would take place so much that there would not be enough of all the universe to write it.It can be noted:{10} ^ {\ rm gogol} ,10^ {10^ {100}} 10^ {\ scriptscriptstyle10 \, 000 \, 000 \, 000 \, 000 \, 000 \, 000 \, 000 \, 000 \, 000 \, 000 \, 000 \, 000 \, 000 \, 000 \, 000 \, 000 \, 000 \, 000 \, 000 \, 000 \, 000 \, 000 \, 000 \, 000 \, 000 \, 000 \, 000 \, 000 \, 000 \, 000 \, 000 \, 000 \, 000} no you got that wrong gogoplex is very high number, there is a number named gogo and it is 1 with 100 zeros and gogoplex has gogo zeros and you need an calculater bigger then the universe to get he number gogoplex!
10 000 000 = 10 to the power of 7
Next power of 10 after 10 000 is 100 000.
It is 100.
1 crore = 100 000 000
A one followed by 32 zeroes. 100 000 000 000 000 000 000 000 000 000 000 100 nonillion 100 thousand billion billion billion
107 = 10 000 000
100 / 10 000 = 0.01
100,000 as a power of ten would be written as 10^5
100 can be written as 10 raised to the power of 2.
10 to the power of 23 = 100 000 000 000 000 000 000 000 So 3.3022 multiplied by that = 330 220 000 000 000 000 000 000 Which would be said as 330 thousand 220 quintillion. (I think :P)
100, 000, 000 * 10, 000 = 1, 000, 000, 000
To write 110 million in expanded notation using exponents, we first need to understand that 110 million is the same as 110,000,000. In expanded notation, we break down the number into its constituent parts based on the place value of each digit. Therefore, 110 million can be expressed in expanded notation using exponents as 1.1 x 10^8, where 1.1 represents the digits before the decimal point and 10^8 represents the place value of the digits after the decimal point.