Difference between revisions of "8A F11 Q4"
Jump to navigation
Jump to search
(Created page with "'''Question:''' Solve. Provide your solution in interval notation. <math>(x-4)(2x+1)(x-1)<0</math> {| class="mw-collapsible mw-collapsed" style = "text-align:left;" ! Foundat...") |
|||
(2 intermediate revisions by the same user not shown) | |||
Line 46: | Line 46: | ||
|Since we we are solving a strict inequality we do not need to change the parenthesis to square brackets, and the final answer is <math>(-\infty, -\frac{1}{2}) \cup (1, 4)</math> | |Since we we are solving a strict inequality we do not need to change the parenthesis to square brackets, and the final answer is <math>(-\infty, -\frac{1}{2}) \cup (1, 4)</math> | ||
|} | |} | ||
+ | |||
+ | {| class="mw-collapsible mw-collapsed" style = "text-align:left;" | ||
+ | ! Final Answer: | ||
+ | |- | ||
+ | |<math>(-\infty, -\frac{1}{2}) \cup (1, 4)</math> | ||
+ | |} | ||
+ | |||
+ | [[8AF11Final|<u>'''Return to Sample Exam</u>''']] |
Latest revision as of 15:23, 6 April 2015
Question: Solve. Provide your solution in interval notation.
Foundations |
---|
1) What are the zeros of the left hand side? |
2) Can the function be both positive and negative between consecutive zeros? |
Answer: |
1) The zeros are , 1, and 4. |
2) No. If the function is positive between 1 and 4 it must be positive for any value of x between 1 and 4. |
Solution:
Step 1: |
---|
The zeros of the left hand side are , 1, and 4 |
Step 2: |
---|
The zeros split the real number line into 4 intervals: and . |
We now pick one number from each interval: -1, 0, 2, and 5. We will use these numbers to determine if the left hand side function is positive or negative in each interval. |
x = -1: (-1 -4)(2(-1) + 1)(-1 - 1) = (-5)(-1)(-2) = -10 < 0 |
x = 0: (-4)(1)(-1) = 4 > 0 |
x = 2: (2-4)(2(2) + 1)(2 - 1) = (-2)(5)(1) = -10 < 0 |
x = 5: (5 - 4)(2(5) + 1)(5 - 1) = (1)(11)(4) = 44 > 0 |
Step 3: |
---|
We take the intervals for which our test point led to a desired result, (), and (1, 4). |
Since we we are solving a strict inequality we do not need to change the parenthesis to square brackets, and the final answer is |
Final Answer: |
---|