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Calculus & Analysis Marathon & Questions (2 Viewers)

Paradoxica

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Re: First Year Uni Calculus Marathon

Here's a fun exercise

Evaluate the following limit without using L'Hôpital's rule.

Also no series expansions of any sort.



You may assume the following preliminary result:

 
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InteGrand

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Re: First Year Uni Calculus Marathon

1/3! = 1/6, via Taylor expansion.
 

leehuan

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Re: First Year Uni Calculus Marathon

Haven't even done Taylor series or ODEs yet. Heck, haven't even done integration techniques at uni.
 

Paradoxica

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Re: First Year Uni Calculus Marathon

Haven't even done Taylor series or ODEs yet. Heck, haven't even done integration techniques at uni.
The limit's proof is completely elementary.

Try using substitution, in the exact same way you would for integration.
 

leehuan

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Re: First Year Uni Calculus Marathon

I have no idea where this question is meant to go but it's not SOS. Just an interesting question that came out of MATH1251 discussion.

 

seanieg89

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Re: First Year Uni Calculus Marathon

Are you talking about subsets of the reals/complex numbers with the standard operation of addition? Then the only finite additively closed set is {0} because if some nonzero z is in it, then nz:=z+...+z (n copies) must be in it for all positive integers n, and these numbers are distinct.

Or are you talking about an abstract set with an addition operation satisfying some axioms?
 

leehuan

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Re: First Year Uni Calculus Marathon

Nah that's right lol the set is {0}
 

InteGrand

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Re: First Year Uni Calculus Marathon

Solve the differential equation .
 

leehuan

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Re: First Year Uni Calculus Marathon

Shit. Forgot about restrictions already even though I asked about it the other day.
 

seanieg89

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Re: First Year Uni Calculus Marathon

 
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seanieg89

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Re: First Year Uni Calculus Marathon

Here's a cool one to think about:

 

seanieg89

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Re: First Year Uni Calculus Marathon

Construct a Taylor Series with pointwise convergence at 0?
Taylor series are indeed the correct lines to think along here, but as an arbitrary Taylor series need not converge anywhere apart from the point it is centred at, this problem is not completely trivial.

Do you have a construction in mind?
 

Paradoxica

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Re: First Year Uni Calculus Marathon

Taylor series are indeed the correct lines to think along here, but as an arbitrary Taylor series need not converge anywhere apart from the point it is centred at, this problem is not completely trivial.

Do you have a construction in mind?
The coefficients of xk will be ak/k!...

If you wanted my naive first contruction...
 

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