Vector Calculus Shmector Calculus
Vector Calculus Shmector Calculus
I have a midterm exam tomorrow in a course I haven't started yet. Time to crack the books, I spose.
Not really looking for help, just venting.
Not really looking for help, just venting.
Colin Kennedy
[email protected]
[email protected]
I'm a bit of a slack student...
You might also guess from the speed of my reply here that I'm at a computer now, instead of at the books. Good times.
You might also guess from the speed of my reply here that I'm at a computer now, instead of at the books. Good times.
Colin Kennedy
[email protected]
[email protected]
That'd work for me, but I'm a math student, and I need to do the course.
At least I haven't been to class three times!
At least I haven't been to class three times!
Colin Kennedy
[email protected]
[email protected]
I know people are going to think I'm crazy but, Calculus is one of my most favorite subjects. I think it's awesome.
Calculus 2 is a little less exciting, but still pretty fun.
f(x) = footbag
g(x) = Lavers^2
z(x) = f(x) + g'(x) = 2fun!!!
Wow, I'm a geek....
Calculus 2 is a little less exciting, but still pretty fun.
f(x) = footbag
g(x) = Lavers^2
z(x) = f(x) + g'(x) = 2fun!!!
Wow, I'm a geek....
Ben Skaggs
Amateurs practice until they can get it right.
Professionals practice until they can't get it wrong.
No, I don't play soccer. Yes, there are competitions. 4 years. Lots of practice.
Amateurs practice until they can get it right.
Professionals practice until they can't get it wrong.
No, I don't play soccer. Yes, there are competitions. 4 years. Lots of practice.
Some friends came by (I was at school when I was posting earlier) and were on their way to trivia night at the campus bar. Of course, I went with.
A team of 5 guys and 1 girl won femanist trivia night. Those were some beers well earned.
Still haven't started vector.
A team of 5 guys and 1 girl won femanist trivia night. Those were some beers well earned.
Still haven't started vector.
Colin Kennedy
[email protected]
[email protected]
? Seems like an odd forum to have the edit function disabled.
Anyways, Ben, when differentiating g(x) there, you're differentiating with respect to x, so Lavers is treated as a constant. So g'(x) is unfortunately zero, instead of the 2 Lavers which I assume you intended, allowing for footbag + 2 Lavers = 2 fun. (How often do you guys have 2fun? I always try, but I usually settle at just one.)
So don't worry - you're not that much of a geek.
Anyways, Ben, when differentiating g(x) there, you're differentiating with respect to x, so Lavers is treated as a constant. So g'(x) is unfortunately zero, instead of the 2 Lavers which I assume you intended, allowing for footbag + 2 Lavers = 2 fun. (How often do you guys have 2fun? I always try, but I usually settle at just one.)
So don't worry - you're not that much of a geek.
Colin Kennedy
[email protected]
[email protected]
Actually, if you were doing implicit differentiation then it would be g'(x) = 2Lavers * dLavers (assuming Lavers is a variable), but I figured I'd try and make a cool answer like 2Fun (too fun) without geting too confusing.
It would be the same as if you had like:
g(x) = x + z
g'(x) = 1 * dx + 1 * dz
or more commonly:
y = x^2
dy = 2x * dx -----> dy/dx = 2x
It would be the same as if you had like:
g(x) = x + z
g'(x) = 1 * dx + 1 * dz
or more commonly:
y = x^2
dy = 2x * dx -----> dy/dx = 2x
Ben Skaggs
Amateurs practice until they can get it right.
Professionals practice until they can't get it wrong.
No, I don't play soccer. Yes, there are competitions. 4 years. Lots of practice.
Amateurs practice until they can get it right.
Professionals practice until they can't get it wrong.
No, I don't play soccer. Yes, there are competitions. 4 years. Lots of practice.
True enough, but still a little shakey. First, to be a little more precise, implicite differentiation defines Lavers as function of x, rather than as a 'variable', which is potentially confusing since we're dealing with a function of x, and can also lead to the mistaken assumption that you made.
Now, d(Lavers^2)/dx = 2 Lavers * d(Lavers)/dx is correct, but you can't say that this equals 2 Lavers without assuming that d(Lavers)/dx = 1, which is a big nono. If that were the case, then it would follow that Lavers = x + c , where c is some arbitrary constant. Somehow we've gained information about Lavers that simply wasn't there before, which is always a pretty good tip that something's off.
Now, d(Lavers^2)/dx = 2 Lavers * d(Lavers)/dx is correct, but you can't say that this equals 2 Lavers without assuming that d(Lavers)/dx = 1, which is a big nono. If that were the case, then it would follow that Lavers = x + c , where c is some arbitrary constant. Somehow we've gained information about Lavers that simply wasn't there before, which is always a pretty good tip that something's off.
Colin Kennedy
[email protected]
[email protected]
- travismontoya
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comastalker
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Lavers could also be an irrational value with Rod being the imaginary and x being the real part...
depends on definition...
depends on definition...
-Richard Vock-
"And today the great Yertle, The Marvelous he,
Is King of the Mud. That is all he can see.
And the turtles, of course...all turtles are free
As turtles and, maybe, all creatures should be."
- Dr. Seuss
"And today the great Yertle, The Marvelous he,
Is King of the Mud. That is all he can see.
And the turtles, of course...all turtles are free
As turtles and, maybe, all creatures should be."
- Dr. Seuss
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Mathochist
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comastalker
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comastalker
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Ooo! You just jogged my memory on a relatively obscure fact concerning mathmatical notation. Comastalker, what is the german word for the integers ({0, +/-1, +/-2, ...})? I recall hearing that it starts with a z, and that's why Z is used to denote them?
I dunno. It might have been a different language, or for that matter, a different set.
I dunno. It might have been a different language, or for that matter, a different set.
Colin Kennedy
[email protected]
[email protected]
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comastalker
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yep, it's "Zahl";
the "N" is for "natürliche Zahl"
(I think it's the positive integers including 0)
the "N" is for "natürliche Zahl"
(I think it's the positive integers including 0)
-Richard Vock-
"And today the great Yertle, The Marvelous he,
Is King of the Mud. That is all he can see.
And the turtles, of course...all turtles are free
As turtles and, maybe, all creatures should be."
- Dr. Seuss
"And today the great Yertle, The Marvelous he,
Is King of the Mud. That is all he can see.
And the turtles, of course...all turtles are free
As turtles and, maybe, all creatures should be."
- Dr. Seuss