Please look at the attached file 2 questions help please urgent. Thanks
D djdownfawl New member Joined Sep 28, 2010 Messages 37 Sep 28, 2010 #1 Please look at the attached file 2 questions help please urgent. Thanks
D Deleted member 4993 Guest Sep 28, 2010 #2 djdownfawl said: Please look at the attached file 2 questions help please urgent. Thanks Click to expand... Please show us your work, indicating exactly where you are stuck - so that we may know where to begin to help you.
djdownfawl said: Please look at the attached file 2 questions help please urgent. Thanks Click to expand... Please show us your work, indicating exactly where you are stuck - so that we may know where to begin to help you.
D djdownfawl New member Joined Sep 28, 2010 Messages 37 Sep 28, 2010 #3 Basically to be honest i dont even know where to start. Please help me.
B BigGlenntheHeavy Senior Member Joined Mar 8, 2009 Messages 1,577 Sep 28, 2010 #4 \(\displaystyle First \ One:\) \(\displaystyle \lim_{x\to1^-}f(x) \ = \ 2 \ and \ \lim_{x\to1^+}f(x) \ = \ 2, \ so \ \lim_{x\to1}f(x) \ = \ 2.\) \(\displaystyle Second \ One:\) \(\displaystyle \lim_{x\to1^-}f(x) \ = \ \frac{3}{2} \ and \ \lim_{x\to1^+}f(x) \ = \ 3, \ hence \ \lim_{x\to1}f(x) \ DNE.\)
\(\displaystyle First \ One:\) \(\displaystyle \lim_{x\to1^-}f(x) \ = \ 2 \ and \ \lim_{x\to1^+}f(x) \ = \ 2, \ so \ \lim_{x\to1}f(x) \ = \ 2.\) \(\displaystyle Second \ One:\) \(\displaystyle \lim_{x\to1^-}f(x) \ = \ \frac{3}{2} \ and \ \lim_{x\to1^+}f(x) \ = \ 3, \ hence \ \lim_{x\to1}f(x) \ DNE.\)