| bio | website | |
|---|---|---|
| location | ||
| age | ||
| visits | member for | 6 months |
| seen | Feb 27 at 19:01 | |
| stats | profile views | 12 |
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Feb 7 |
accepted | Finding analatical function |
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Feb 7 |
comment |
Finding analatical function Thanks :) Can you help how to find domain of the function and also the domain of the derivative of the function. |
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Feb 7 |
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Finding analatical function @julien yep i got it now as the radius of convergence of the power series decides the domain. How to find domain of the function and also the domain of the derivative of the function. |
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Feb 7 |
comment |
Finding analatical function Yes it helped thanks, further more the the radius of convergence of the power series decides the domain. How can we find it :) |
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Feb 7 |
comment |
Finding analatical function @julien sorry i didn't get your point could you please elaborate it a little. |
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Feb 7 |
asked | Finding analatical function |
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Nov 23 |
accepted | Finding general solution of differential equation. |
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Nov 23 |
comment |
Finding general solution of differential equation. okay that becomes $$\frac {y^2}{4}dy = \log xdx$$ am i right? |
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Nov 23 |
asked | Finding general solution of differential equation. |
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Nov 23 |
revised |
Solving initial value problem edited body |
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Nov 23 |
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Solving initial value problem Thanks i didn't notice that :) |
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Nov 23 |
accepted | Solving initial value problem |
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Nov 23 |
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Solving initial value problem Thank you got it :) |
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Nov 23 |
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Solving initial value problem Sorry, I didn't get it, how? |
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Nov 23 |
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Solving initial value problem How do we plug y(0)=3 in equation? |
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Nov 23 |
asked | Solving initial value problem |
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Nov 23 |
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How to check Linear equation Thanks for awesome help :) |
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Nov 23 |
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How to check Linear equation Sorry but i think Iam still doing it wrong, dividing by $$\frac 1y^2$$ gives $$\frac{1}{y^2}\frac{dy}{dx}=x-\frac {x}{y}$$ ? |
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Nov 23 |
comment |
How to check Linear equation Can it be converted to linear form? |
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Nov 23 |
awarded | Supporter |