u meant 3x - 5y=100? if it is, well: y = 3/5x - 20
In exponential form, 10 squared is written as (10^2). This notation represents the number 10 multiplied by itself, which equals 100. Therefore, (10^2 = 100).
Seventeen tens written in unit form is 170. This is because each "ten" represents a value of 10, so 17 tens equals 17 multiplied by 10, which is 170.
If: 3x-5y+10 = 0 Then: -5y = -3x-10 And: y = 0.6x+2 in slope-intercept form
The number 110,000 in standard form is written as 1.1 × 10^5. In standard form, a number is expressed as a coefficient between 1 and 10 multiplied by a power of ten, which effectively represents its scale.
The standard form of 6,000,000 is written as ( 6 \times 10^6 ). This notation represents the number in a more compact way, emphasizing its value in terms of powers of ten.
10 to the negative three, written as (10^{-3}), is equal to (0.001) in standard form. This represents one thousandth, or (1/1000).
The expression (10e6) represents (10 \times 10^6), which equals 10,000,000. In standard form, it is written as 10 million.
In exponential form, 10 squared is written as (10^2). This notation represents the number 10 multiplied by itself, which equals 100. Therefore, (10^2 = 100).
Seventeen tens written in unit form is 170. This is because each "ten" represents a value of 10, so 17 tens equals 17 multiplied by 10, which is 170.
If: 3x-5y+10 = 0 Then: -5y = -3x-10 And: y = 0.6x+2 in slope-intercept form
The number 110,000 in standard form is written as 1.1 × 10^5. In standard form, a number is expressed as a coefficient between 1 and 10 multiplied by a power of ten, which effectively represents its scale.
205,000 in standard form is written as 2.05 x 10^5. This notation represents the number 2.05 multiplied by 10 raised to the power of 5, which is equivalent to moving the decimal point five places to the right. Standard form is a way to represent large numbers more efficiently by using powers of 10.
In standard form, 80,000 is written as 8.0 x 10^4. This is because standard form is a way of writing numbers as the product of a number between 1 and 10 and a power of 10. In this case, 8.0 is between 1 and 10, and 10^4 represents the four zeros in 80,000.
0.02 in standard form is 2 x 10^-2. In scientific notation, standard form represents a number as a coefficient multiplied by a power of 10. In this case, 0.02 is written as 2 (the coefficient) multiplied by 10 raised to the power of -2 (since the decimal point is moved two places to the right to convert 0.02 to standard form).
The standard form of 6,000,000 is written as ( 6 \times 10^6 ). This notation represents the number in a more compact way, emphasizing its value in terms of powers of ten.
1 and 2 tenths can be written as a decimal as 1.2. This is because the "1" represents one whole unit, and the "2 tenths" represents 0.2 when converted to a decimal. So, when combined, it becomes 1.2.
10 written in word form is exactly how it is read - ten. Other forms: Expanded form: 10 (simple) Standard form: 10 (also simple)