Chapter 2: Problem 40
Find the limits. $$ \lim _{x \rightarrow 0^{+}} \frac{|x|}{x} $$
Short Answer
Expert verified
The limit is 1.
Step by step solution
01
Understanding the Problem
We are asked to find the limit of the function \( f(x) = \frac{|x|}{x} \) as \( x \) approaches 0 from the positive side, denoted as \( x \to 0^+ \). This involves analyzing the behavior of \( f(x) \) for values of \( x \) that are positive and close to zero.
02
Analyzing the Function for Positive Values
When \( x > 0 \), it follows that \( |x| = x \). Therefore, for values of \( x \) approaching zero from the positive side, \( f(x) = \frac{x}{x} = 1 \). The function is constant in this region as \( x \) remains positive.
03
Calculating the Right-Hand Limit
Because \( f(x) = 1 \) for all \( x > 0 \), as \( x \to 0^+ \), the function \( f(x) \) will also approach 1. Thus, the right-hand limit is found by evaluating \( \lim_{x \to 0^+} \frac{|x|}{x} = 1 \).
Unlock Step-by-Step Solutions & Ace Your Exams!
-
Full Textbook Solutions
Get detailed explanations and key concepts
-
Unlimited Al creation
Al flashcards, explanations, exams and more...
-
Ads-free access
To over 500 millions flashcards
-
Money-back guarantee
We refund you if you fail your exam.
Over 30 million students worldwide already upgrade their learning with Vaia!
Key Concepts
These are the key concepts you need to understand to accurately answer the question.
Right-hand limit
A right-hand limit describes the behavior of a function as the input approaches a specific value from the right, or from values greater than the point of interest. In the context of our exercise, we're interested in the right-hand limit of the function \( f(x) = \frac{|x|}{x} \) as \( x \) approaches zero. This is denoted as \( x \to 0^+ \), meaning \( x \) is nearing zero while remaining positive.
- This kind of limit is focused on analyzing what happens just to the right of the point in question. For the function mentioned, it only considers small positive values very close to zero.
- Remember that if the function settles into a specific value as you approach this point, that value is the right-hand limit.
Absolute value function
The absolute value function is an interesting concept in mathematics that represents the distance of a number from the zero point on a number line, regardless of direction. This means:
- For a positive number \( x \), the absolute value is simply \( x \).
- For a negative number \( x \), it is the opposite of \( x \) (i.e., \( -x \)) to make sure the result is always positive.
- For zero, the absolute value is 0, since it's already at zero.
Approaching zero
"Approaching zero" is a fundamental concept when discussing limits, describing the action of a variable as it gets infinitely close to zero without actually reaching it. This idea is crucial for defining limits in calculus:
- It helps us understand the behavior of functions near points that might otherwise have undefined values.
- In the exercise, \( x \to 0^+ \) indicates \( x \) is coming close to zero from the right-hand side, or positive territory.
- This exploration doesn't require touching zero but rather examines the pattern as \( x \) becomes arbitrarily near it.