Please answer the attached question about Riemann integrals
Answer
Answers can only be viewed under the following conditions:
- The questioner was satisfied with and accepted the answer, or
- The answer was evaluated as being 100% correct by the judge.
2K
-
It’s saying the answers are wrong ):
-
How many digits does it need? Should it be rounded?
-
-
Just uploaded what it’s telling me (:
-
OK, let me check.
-
-
Use the updated numbers. I rounded to 2-digit. Your question wants 4-digits.
-
Awesome ! That worked 🤗
-
Great! Please let me know before you post your questions next time. Thanks.
-
-
The new feature allows you to ask direct questions for me. Just go to my profile and click on “Ask Direct Question”.
The answer is accepted.
Join Matchmaticians Affiliate Marketing
Program to earn up to a 50% commission on every question that your affiliated users ask or answer.
- answered
- 544 views
- $9.00
Related Questions
- Find the absolute extrema of $f(x,y) = x^2 - xy + y^2$ on $|x| + |y| \leq 1$.
- In what direction the function $f(x,y)=e^{x-y}+\sin (x+y^2)$ grows fastest at point $(0,0)$?
- Optimization Quick Problem
- Evaluate $\int ...\int_{R_n}dV_n(x_1^2 + x_2^2 + ... + x_n^2)$ , where $n$ and $R_n$ is defined in the body of this question.
- Application of Integrals
- Show that the MLE for $\sum_{i=1}^{n}\left(\ln{2x_i} - 2\ln{\lambda} - \left(\frac{x_i}{\lambda}\right)^2\right)$ is $\hat{\lambda} = \sqrt{\sum_{i=1}^{n}\frac{x_i^2}{n}}$.
- Integral of trig functions
- Does $\lim_{n \rightarrow \infty} \frac{2^{n^2}}{n!}$ exist?