Just like we went from a single to a double integral, we can add another dimension to create a triple integral. One (hard-to-visualize) interpretation of a triple integral is the hyper-volume of a 4-dimensional region. We can interpret triple integrals in other ways depending on the context of the problem. 1. Compute the probability P(Y > X). And draw a graph showing how we get the bounds. Note: the answer fpr P(Y>X) is 7/27
Just like we went from a single to a double integral, we can add another dimension to create a triple integral. One (hard-to-visualize) interpretation of a triple integral is the hyper-volume of a 4-dimensional region. We can interpret triple integrals in other ways depending on the context of the problem. 1. Compute the probability P(Y > X). And draw a graph showing how we get the bounds. Note: the answer fpr P(Y>X) is 7/27
Calculus For The Life Sciences
2nd Edition
ISBN:9780321964038
Author:GREENWELL, Raymond N., RITCHEY, Nathan P., Lial, Margaret L.
Publisher:GREENWELL, Raymond N., RITCHEY, Nathan P., Lial, Margaret L.
Chapter4: Calculating The Derivative
Section4.3: The Chain Rule
Problem 4YT: YOUR TURN Find dy/dx if y=5x2-6x-2.
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Just like we went from a single to a double
create a triple integral. One (hard-to-visualize) interpretation of a triple integral is the
hyper-volume of a 4-dimensional region. We can interpret triple integrals in other ways
depending on the context of the problem.
1. Compute the probability P(Y > X). And draw a graph showing how we get the bounds. Note: the answer fpr P(Y>X) is 7/27
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