1000+700+20+8
To write 0.00049 in expanded form, you break it down into its place values. It can be expressed as (4 \times 0.0001 + 9 \times 0.00001). Therefore, the expanded form of 0.00049 is (0.0004 + 0.00009).
Expanded Form means you expand the whole equation 12*12*12 Exponential Notaion means you need a base (12) and an exponent (3) 12^3 Standard Form is the answer you get from solving the problem 1728
The expanded form of 5 times 162 can be expressed as (5 \times 162 = 5 \times (100 + 60 + 2)). This simplifies to (5 \times 100 + 5 \times 60 + 5 \times 2), which equals (500 + 300 + 10). Therefore, the expanded form is (500 + 300 + 10).
12 = 2*2*3
To express the numbers 10 and 54,000 in expanded form, you break them down into their place values. For 10, the expanded form is (10^1) or simply (10). For 54,000, the expanded form is (50,000 + 4,000 + 0 + 0) or (5 \times 10^4 + 4 \times 10^3).
a different way to right numbers for example 245 in expanded form is (2 times 100) plus (4 times 10) plus (5 times 1)
To write 12 million in expanded form, you would break down the number based on its place value. In this case, 12 million is composed of 10 million and 2 million. So, in expanded form, 12 million would be written as 10,000,000 + 2,000,000.
To write 8 tenths in expanded form, you represent it as (0.8) or (\frac{8}{10}). In expanded form, it can be expressed as (8 \times 0.1), which shows that 8 tenths is the same as 8 times one-tenth.
6 times 6 times 6
One hundred and two thousandth can be written in expanded form as (0.102). This represents (1 \times 0.1) (one-tenth) plus (0 \times 0.01) (zero hundredths) plus (2 \times 0.001) (two thousandths). Therefore, the expanded form is (1 \times 0.1 + 0 \times 0.01 + 2 \times 0.001).
12+.6,000+100+50
124 = 20,736