Examples of using Second equation in English and their translations into Turkish
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Colloquial
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Ecclesiastic
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Ecclesiastic
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Computer
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Programming
That's the second equation.
The second equation is pretty straightforward to graph.
Billy, solve the second equation!
This second equation is telling me that explicitly.
I'm just taking the second equation.
So the second equation right here is negative 6t plus g is equal to 6.
And then let's use the second equation.
The second equation here is y plus 2x is equal to 6.5.
Now whats this second equation become?
So we get x is equal to 11 plus y using the second equation.
Shouldn't the second equation read 16 over pi?
No It is not true.So x -1& y=7 does not satisfy the second equation.
So this second equation will become 3 times x.
So let's multiply this equation, this second equation, by negative 2.
Now, the second equation says whatever y is, we had 2 times x, and that should be 6.5.
The first equation is 2y=x+7 and the second equation here is x=y-4.
And if we take this second equation and divide both sides by 3 we get c1 is equal to x2 over 3.
And this green line shows all of the x's and y's that satisfy the second equation. .
And we have the second equation over her, that x=y-4.
This second equation, x is equal to e to the- well this is just going to be the 2pi over 3i power. e to the 2pi over 3i power.
If I multiply this second equation by 2, what do I get?
This second equation told us, if we just rearranged it, that y is equal to 5 plus x, so we can replace y in the second equation with 5 plus x.
What we can do is we can multiply this second equation by negative 1 and then add the 2's.
In each pair, the second equation is also referred to as the Planck-Einstein relation, since it was also proposed by Planck and Einstein.
Using the antisymmetric tensor notation andcomma notation for the partial derivative(see Ricci calculus), the second equation can also be written more compactly as: :formula_17In the absence of sources, Maxwell's equations reduce to: :formula_18which is an electromagnetic wave equation in the field strength tensor.
So the second equation becomes negative 4x-- that's negative 2 times 2x-- plus-- we have negative 2 times negative y-- which is plus 2y is equal to 2.5 times negative 2, is equal to negative 5.
So that's the second equation in slope-intercept form.
We have already used the second equation, the magenta one, now we have to use the top constraint.
The form of the equation is a second order partial differential equation.
Because this is a second order differential equation.