Concept explainers
Find the inclination (in radians and degrees) of the line whose equation is given
Answer to Problem 37E
The inclination of the given straight line is
Explanation of Solution
Given:
The equation of given line is
Let m be the slope of the given line.
The equation of given line is
Rewriting the above equation in the form
Where,
On rearranging equation (1) we get,
On comparing equation (1) and (2) we get,
The graph of the line of given equation is
Let
Now, the inclination of the equation is determined from the equation
Now,
And in degrees,
So, the inclination of the given straight line is
Chapter 10 Solutions
EBK PRECALCULUS W/LIMITS
- #2arrow_forward2. We want to find the inverse of f(x) = (x+3)² a. On the graph at right, sketch f(x). (Hint: use what you know about transformations!) (2 points) b. What domain should we choose to get only the part of f (x) that is one- to-one and non-decreasing? Give your answer in inequality notation. (2 points) - c. Now use algebra to find f¯¹ (x). (2 points) -4- 3- 2 1 -4 -3 -2 -1 0 1 -1- -2- --3- -4 -N- 2 3 4arrow_forward1. Suppose f(x) = 2 4 == x+3 and g(x) = ½-½. Find and fully simplify ƒ(g(x)). Be sure to show all x your work, write neatly so your work is easy to follow, and connect your expressions with equals signs. (4 points)arrow_forward
- Find the one sided limit Tim f(x) where f(x)= (2x-1 X>1+ *arrow_forwardFind the limit lim X-700 4 13x-15 3x4+x³-12arrow_forwardFind the slope of the line secant to the curve F(x) = 13-x³ (from x=1 to x=2]arrow_forwardFind the ONe sided limit lim 2x X-2 1-xarrow_forwardFor each function, identify all points of discontinuity and label them as removable, jump, or infinite. A) f(x) = x-4 (X+15)(x-4) B) f(x) = (x²-1 x ≤2 14-2x 2arrow_forwardFind the one sided limit 2 lim Flx) where f(x) = (x²-4_xarrow_forwardarrow_back_iosSEE MORE QUESTIONSarrow_forward_iosRecommended textbooks for you
- Calculus: Early TranscendentalsCalculusISBN:9781285741550Author:James StewartPublisher:Cengage LearningThomas' Calculus (14th Edition)CalculusISBN:9780134438986Author:Joel R. Hass, Christopher E. Heil, Maurice D. WeirPublisher:PEARSONCalculus: Early Transcendentals (3rd Edition)CalculusISBN:9780134763644Author:William L. Briggs, Lyle Cochran, Bernard Gillett, Eric SchulzPublisher:PEARSON
- Calculus: Early TranscendentalsCalculusISBN:9781319050740Author:Jon Rogawski, Colin Adams, Robert FranzosaPublisher:W. H. FreemanCalculus: Early Transcendental FunctionsCalculusISBN:9781337552516Author:Ron Larson, Bruce H. EdwardsPublisher:Cengage Learning
Calculus: Early TranscendentalsCalculusISBN:9781285741550Author:James StewartPublisher:Cengage LearningThomas' Calculus (14th Edition)CalculusISBN:9780134438986Author:Joel R. Hass, Christopher E. Heil, Maurice D. WeirPublisher:PEARSONCalculus: Early Transcendentals (3rd Edition)CalculusISBN:9780134763644Author:William L. Briggs, Lyle Cochran, Bernard Gillett, Eric SchulzPublisher:PEARSONCalculus: Early TranscendentalsCalculusISBN:9781319050740Author:Jon Rogawski, Colin Adams, Robert FranzosaPublisher:W. H. FreemanCalculus: Early Transcendental FunctionsCalculusISBN:9781337552516Author:Ron Larson, Bruce H. EdwardsPublisher:Cengage LearningDifferential Equation | MIT 18.01SC Single Variable Calculus, Fall 2010; Author: MIT OpenCourseWare;https://www.youtube.com/watch?v=HaOHUfymsuk;License: Standard YouTube License, CC-BY