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To express 270 in exponential form, we can factor it into its prime factors. The prime factorization of 270 is (2 \times 3^3 \times 5). Therefore, in exponential form, it can be represented as (2^1 \times 3^3 \times 5^1).
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 expression (5 \times 5 \times 5 \times 5) can be written in exponential form as (5^4). This indicates that the base number 5 is multiplied by itself four times.
It is: 2^5 times 3 = 96 or 9.6*10^1 = 96
The exponential form of 2000 can be expressed as (2^4 \times 5^3). This means 2000 can be represented as (16 \times 125), where 16 is (2^4) and 125 is (5^3). Alternatively, it can also be written in terms of its base-10 logarithm as (2000 = 2 \times 10^3).
To express 270 in exponential form, we can factor it into its prime factors. The prime factorization of 270 is (2 \times 3^3 \times 5). Therefore, in exponential form, it can be represented as (2^1 \times 3^3 \times 5^1).
The exponential form of 53 is 5^3. In exponential form, the base (5) is raised to the power of the exponent (3), which means 5 is multiplied by itself 3 times. So, 5^3 is equal to 5 x 5 x 5, which equals 125.
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.
Two (2). 3^5 5^3
The expression (5 \times 5 \times 5 \times 5) can be written in exponential form as (5^4). This indicates that the base number 5 is multiplied by itself four times.
54 = 625
the prime factorization of 675 in exponential form is 3 to the 3rd power times 5 to the 2nd
It is: 2^5 times 3 = 96 or 9.6*10^1 = 96
The exponential form of 2000 can be expressed as (2^4 \times 5^3). This means 2000 can be represented as (16 \times 125), where 16 is (2^4) and 125 is (5^3). Alternatively, it can also be written in terms of its base-10 logarithm as (2000 = 2 \times 10^3).
To write 150 in exponential form, you first express it as a product of its prime factors. The prime factorization of 150 is (2 \times 3 \times 5^2). Therefore, you can write 150 as (2^1 \times 3^1 \times 5^2). In exponential notation, it is typically represented as (150 = 2^1 \times 3^1 \times 5^2).
The exponential form of 3x3x5x5x5 is 3^2 * 5^3. This is because we can rewrite the repeated factors as powers of the base numbers. In this case, there are 2 factors of 3 and 3 factors of 5, so we express it as 3^2 (3 squared) times 5^3 (5 cubed).
The answer is 5^3*2