(f(g(t)))'=f'(g(t)) x g'(t)
y=sqrt(3x-5) here f(t)=sqrt(t) and g(t)=3t-5, f'(t)=1/(2 sqrt(t)) and g'(t) = 3
So y'= f'(g(x)) x g'(x) = 1/(2 sqrt(3x-5) x 3 = 3/(2 sqrt(3x-5))
No.
Square root of 6.25 equals ± 2.5
3
No. The square root of 6 = 2.449
The square root of 6798 almost equals 82.449984839295
No.
You are asking for the square root of 117649 - which is 343 (which you could get by using the square root function on most calculators).
Square root of 6.25 equals ± 2.5
The square root of 12 equals the square root of 4 times 3. The square root of 4 is 2. The square root of 12 equals 2 times the square root of 3.
The square root operation is not a function because for each value of y there can be 2 values of x - the principal square root and its negative. This can only be rectified by limiting the range of the opearation to the principal or positive square root. Furthermore, it also depends on the domain of the function. If y<4 then the square root is not defined within Real numbers. So, for y ≥ 4, x = +sqrt(y-4) is a function.
The square root of 65536 is 256. This is because the square root of a number is a value that, when multiplied by itself, gives the original number. In this case, 256 multiplied by 256 equals 65536. The square root function is the inverse of squaring a number.
The square root of 1.44 is 1.2
It is: the square root of 185 times the square root of 185 equals 185
The square root of 400 is 20, as 20 multiplied by 20 equals 400. The square root of 196 is 14, as 14 multiplied by 14 equals 196. Therefore, the expression simplifies to 20 - 14, which equals 6.
The function f(x)=100 has no roots, as f(x) never equals 0. The square root of 100 is 10. The cube root of 100 is about 4.64.
3
No. The square root of 6 = 2.449