d/dx(x^5) + d/dx(y^5) = d/dx(5)
5x^4 + 5y^4 * y' = 0
5x^4 = -5y^4 * y'
y' = 5x^4/(-5y^4)
y' = x^4/(-y^4)
y'' = [-y^4 * d/dx(x^4) - x^4 * d/dx(-y^4)]/(y^8)
y'' = [-4y^4 * x^3 + 4x^4y^3 * y']/(y^8)
substitute y'
y'' = [-4y^4 * x^3 + 4x^4 * y^3 * (x^4/(-y^4))]/(y^8)
y'' = [-4y^4 * x^3 - 4x^8/(y)]/(y^8)
multiply by y
y'' = -4[y^5 * x^3 + x^8)]/y^9
substitute y^5 = 5 - x^5
y'' = -4[(5 - x^5) * x^3 + x^8]/y^9
y'' = -4[5x^3 - x^8 + x^8]/y^9
y'' = -20x^3/y^9
Sorry, I haven't quite had time to try LaTeX yet...