The fifth power of a positive integer is that integer multiplied by itself five times, eg:
15 = 1 x 1 x 1 x 1 x 1 = 1
25 = 2 x 2 x 2 x 2 x 2 = 32
35 = 3 x 3 x 3 x 3 x 3 = 243
45 = 4 x 4 x 4 x 4 x 4 = 1024
55 = 5 x 5 x 5 x 5 x 5 = 3125
105 = 10 x 10 x 10 x 10 x 10 = 100000
The fifth square number of a positive integer is equal to 52 = 25.
let x be any positive integer then x4 is the 4th power of that positive integer
It is -32
A negative integer power of a base is the reciprocal of the base raised to the corresponding positive integer power. For example, ( a^{-n} = \frac{1}{a^n} ), where ( a ) is the base and ( n ) is a positive integer. This relationship shows that as the exponent decreases into the negatives, the value of the expression represents a division by the base raised to the positive power.
Yes, a positive integer raised to a negative power is always positive. When a positive integer ( a ) is raised to a negative exponent ( -n ), it is equivalent to ( \frac{1}{a^n} ), where ( n ) is a positive integer. Since ( a ) is positive, ( a^n ) is also positive, and thus ( \frac{1}{a^n} ) remains positive.
It will be the same as its positive counterpart to the tenth power.
Yes.
When a positive integer is raised to the power of 1, it remains unchanged. This means that for any positive integer ( n ), the expression ( n^1 ) equals ( n ). This property holds true for all integers, making it a fundamental aspect of exponentiation.
A negative integer raised to an even power results in a positive integer, not a negative integer. This occurs because multiplying a negative number by itself an even number of times cancels out the negative signs. For example, ((-2)^2 = 4) and ((-3)^4 = 81), both of which are positive. Therefore, the statement is incorrect; a negative integer raised to an even power is always positive.
No, four-fifths (4/5) is not an integer; it is a fraction. An integer is a whole number that can be positive, negative, or zero, while four-fifths represents a value less than one. Therefore, it does not qualify as an integer.
The absoluate value of a positive integer is the integer itself.The absoluate value of a positive integer is the integer itself.The absoluate value of a positive integer is the integer itself.The absoluate value of a positive integer is the integer itself.
The product would be a positive integer.