WebJul 12, 2015 · The question requires a graph, therefore, to graph the solution set draw a NUMBER LINE. On the number line mark the numbers 3 and 13, left to right, Mark a SOLID DOT on 3 and 13, then Web1st step. All steps. Final answer. Step 1/1. we have given the inequality. -6x>12. divide both sides by -6. View the full answer.
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WebExpert Answer. We know that if x >a, it implies …. Solve the absolute value inequality. Graph the solution set. 15-3x> -21 Write the inequality without an absolute value. The inequality 15-3x > 1-2 is equivalent to 5-3x or 5- 3x Select the correct choice below and, if necessary, fill in the answer box to complete your choice. O A. Web3. Graphical Solution of a System of Linear Equations . A `2 ×2` system of equations is a set of 2 equations in 2 unknowns which must be solved simultaneously (together) so that the solutions are true in both equations. We can solve such a system of equations graphically.That is, we draw the graph of the 2 lines and see where the lines intersect. fitzgerald family bakery wraps
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WebAnswer & Explanation. Solved by verified expert. All tutors are evaluated by Course Hero as an expert in their subject area. Answered by amansahu577. The inequality is: -6 > -18. To solve this inequality, we can begin by adding 18 to both sides: -6 + 18 > -18 + 18. Simplifying: WebNov 16, 2024 · Also, you might have noticed that \(x = 3\) is not the only solution to \({x^2} - 9 = 0\). In this case \(x = - 3\) is also a solution. We call the complete set of all solutions the solution set for the equation or inequality. There is also some formal notation for solution sets although we won’t be using it all that often in this course. WebGraph the solution set: {y < (x + 1) 2 y ≤ − 1 2 x + 3. Solution: The first inequality has a parabolic boundary. This boundary is a horizontal translation of the basic function y = x 2 to the left 1 unit. Because of the strict inequality, the boundary is dashed, indicating that it is not included in the solution set. can i have two ein numbers self employed