10 = 2 * 5 (exponents are not needed).
To write 5000 in exponential form, you first express it as a product of its prime factors. The prime factorization of 5000 is (5^4 \times 2^3). Therefore, in exponential form, it can be represented as (5^4 \times 2^3) or approximately (5 \times 10^3) if using scientific notation.
The number 43,200 can be expressed in exponential form as (4.32 \times 10^4). This representation shows the number in scientific notation, where 4.32 is the significant figure and (10^4) indicates the decimal place shift. Additionally, in terms of prime factorization, 43,200 can be written as (2^6 \times 3^2 \times 5^2).
The exponential form of 1600 can be expressed as ( 1600 = 16 \times 100 = 16 \times 10^2 ). Since ( 16 ) is ( 2^4 ) and ( 100 ) is ( 10^2 ) or ( (2 \times 5)^2 = 2^2 \times 5^2 ), we can combine these to express 1600 as ( 2^4 \times 10^2 ) or ( 2^4 \times (2 \times 5)^2 ). Thus, the overall prime factorization in exponential form is ( 2^6 \times 5^2 ).
The exponential form for 1,000,000 is 10^6.
In scientific notation it is 9.65*10^2 and as a product of its prime factors it is 5*193 = 965
2 x 10 to the third power
2 x 5 = 10. No exponents are needed.
10 = 21 x 51
To write 5000 in exponential form, you first express it as a product of its prime factors. The prime factorization of 5000 is (5^4 \times 2^3). Therefore, in exponential form, it can be represented as (5^4 \times 2^3) or approximately (5 \times 10^3) if using scientific notation.
The exponential form for 153 is 3^2 * 17^1, which represents the prime factorization of the number. This means that 153 can be expressed as 3 raised to the power of 2 multiplied by 17 raised to the power of 1. Exponential form helps break down a number into its prime factors and is useful in various mathematical calculations and problem-solving scenarios.
The number 43,200 can be expressed in exponential form as (4.32 \times 10^4). This representation shows the number in scientific notation, where 4.32 is the significant figure and (10^4) indicates the decimal place shift. Additionally, in terms of prime factorization, 43,200 can be written as (2^6 \times 3^2 \times 5^2).
2 x 5 is the prime factorization of 10.
The exponential form of 1600 can be expressed as ( 1600 = 16 \times 100 = 16 \times 10^2 ). Since ( 16 ) is ( 2^4 ) and ( 100 ) is ( 10^2 ) or ( (2 \times 5)^2 = 2^2 \times 5^2 ), we can combine these to express 1600 as ( 2^4 \times 10^2 ) or ( 2^4 \times (2 \times 5)^2 ). Thus, the overall prime factorization in exponential form is ( 2^6 \times 5^2 ).
2 and 5 are already prime. The prime factorization of 10 is 2 x 5.
The prime factorization of 10 is 2 x 5. What about 1!
Since the number 10 has the prime factorization of 2 x 5, any multiple of 10 has the numbers 2 and 5 in their prime factorization.
The prime factorization of 10 is 2 x 5. The prime factorization of 100 is 2^2 x 5^2. The prime factorization of 1000 is 2^3 x 5^3.