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Calculus: Early Transcendentals
8th Edition
ISBN:9781285741550
Author:James Stewart
Publisher:James Stewart
Chapter1: Functions And Models
Section: Chapter Questions
Problem 1RCC: (a) What is a function? What are its domain and range? (b) What is the graph of a function? (c) How...
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How to integrate the formula in the picture with respect to y? The bounds are negative infinity to infinity. 

Certainly! Below is the transcription of the mathematical expression found in the image:

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**Answer:**  
\[ e^{-\left( \frac{[x - (a_0 + b_0)]^2}{4s_a^2 s_b^2} + \frac{(2y)^2}{4s_a^2 s_b^2 (2s_a^2 + 2s_b^2)} \right)} \]

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This expression appears to be part of a probability distribution or a statistical model, possibly related to Gaussian functions given the exponential and squared terms. The notation suggests parameters such as means (\(a_0\), \(b_0\)) and variances (\(s_a^2\), \(s_b^2\)).
Transcribed Image Text:Certainly! Below is the transcription of the mathematical expression found in the image: --- **Answer:** \[ e^{-\left( \frac{[x - (a_0 + b_0)]^2}{4s_a^2 s_b^2} + \frac{(2y)^2}{4s_a^2 s_b^2 (2s_a^2 + 2s_b^2)} \right)} \] --- This expression appears to be part of a probability distribution or a statistical model, possibly related to Gaussian functions given the exponential and squared terms. The notation suggests parameters such as means (\(a_0\), \(b_0\)) and variances (\(s_a^2\), \(s_b^2\)).
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