Your English writing platform
Discover LudwigSuggestions(1)
Exact(8)
Considering the equation:.
Considering the Equation (2), the form of this equation corresponds to that of Equation (1).
In this case, the interpolation operation is conducted considering the equation as follows: v = ∇ g (11).
Considering the equation as follows { J = ξ S 1 + β ( J + S ) + r 1 J − r 1 c J, S = r 1 c J + r 2 S, (4).
By considering the equation (chi=frac{varphi_{zz}}{varphi_{z}}), the simplest solution for (varphi z)) is (varphi=c_{1}z).
Considering the Equation (14) for the (t i, f k,i ) points and substituting it into (23), we obtain, after a straightforward calculation carried out in Appendix 2, the following expression, D ^ y ̃ y ̃ = E [ D ̄ y ̃ y ̃ ] = N K A R ss A H + N K σ Δ a 2 T r ( R ss ) + σ n 2 I (25).
Similar(52)
Besides, the system output is completed by considering the equations for the flux and the poloidal field.
Consider the equation (4.9).
We consider the equation (3.4).
For, consider the equation (2.10).
Now consider the equation (3.11).
Write better and faster with AI suggestions while staying true to your unique style.
Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com