A college theater has a seating capacity of 2000. It reserves x tickets for students and y tickets for general admission. For parts (a)-(d) write an inequality to represent the given statement. a. The total number of seats available is at most 2000. b. The college wants to reserve at least 3 times as many student tickets as general admission tickets. c. The number of student tickets cannot be negative. d. The number of general admission tickets cannot be negative. e. Graph the solution set to the system of inequalities from parts (a)-(d).
A college theater has a seating capacity of 2000. It reserves x tickets for students and y tickets for general admission. For parts (a)-(d) write an inequality to represent the given statement. a. The total number of seats available is at most 2000. b. The college wants to reserve at least 3 times as many student tickets as general admission tickets. c. The number of student tickets cannot be negative. d. The number of general admission tickets cannot be negative. e. Graph the solution set to the system of inequalities from parts (a)-(d).
Solution Summary: The author explains that the required inequality is x+yle 2000. The number of student tickets cannot be negative.
A college theater has a seating capacity of
2000.
It reserves
x
tickets for students and
y
tickets for general admission. For parts (a)-(d) write an inequality to represent the given statement.
a. The total number of seats available is at most
2000.
b. The college wants to reserve at least
3
times as many student tickets as general admission tickets.
c. The number of student tickets cannot be negative.
d. The number of general admission tickets cannot be negative.
e. Graph the solution set to the system of inequalities from parts (a)-(d).
Only 100% sure experts solve it correct complete solutions ok
rmine the immediate settlement for points A and B shown in
figure below knowing that Aq,-200kN/m², E-20000kN/m², u=0.5, Depth
of foundation (DF-0), thickness of layer below footing (H)=20m.
4m
B
2m
2m
A
2m
+
2m
4m
sy = f(x)
+
+
+
+
+
+
+
+
+
X
3
4
5
7
8
9
The function of shown in the figure is continuous on the closed interval [0, 9] and differentiable on the open
interval (0, 9). Which of the following points satisfies conclusions of both the Intermediate Value Theorem
and the Mean Value Theorem for f on the closed interval [0, 9] ?
(A
A
B
B
C
D
Elementary Statistics: Picturing the World (7th Edition)
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