|10dx 1

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...
Question

find the indefinite integral of the picture attached. 

The image displays a definite integral, which is used to calculate the area under a curve between two specified points. The expression is:

\[
\int_{1}^{11} 10 \, dx
\]

This represents the integral of the constant function \(10\) with respect to \(x\), evaluated from the lower limit of \(1\) to the upper limit of \(11\).

To solve this integral, you multiply the constant by the difference in the upper and lower limits. Therefore,

\[
10 \times (11 - 1) = 10 \times 10 = 100
\]

The result of the integral is \(100\). This calculation gives the total area under the line \(y = 10\) from \(x = 1\) to \(x = 11\), forming a rectangle with height \(10\) and width \(10\).
Transcribed Image Text:The image displays a definite integral, which is used to calculate the area under a curve between two specified points. The expression is: \[ \int_{1}^{11} 10 \, dx \] This represents the integral of the constant function \(10\) with respect to \(x\), evaluated from the lower limit of \(1\) to the upper limit of \(11\). To solve this integral, you multiply the constant by the difference in the upper and lower limits. Therefore, \[ 10 \times (11 - 1) = 10 \times 10 = 100 \] The result of the integral is \(100\). This calculation gives the total area under the line \(y = 10\) from \(x = 1\) to \(x = 11\), forming a rectangle with height \(10\) and width \(10\).
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