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Match the Function with Its Graph y=tan(xπ2)y = - \tan \left( x - \frac { \pi } { 2 } \right)

question 35

Multiple Choice

Match the function with its graph.
29
-1) y=tan(xπ2) y = - \tan \left( x - \frac { \pi } { 2 } \right) 2) y=tan(x+π2) y = \tan \left( x + \frac { \pi } { 2 } \right)
3) y=cot(xπ2) y = - \cot \left( x - \frac { \pi } { 2 } \right) 4) y=cot(x+π2) y = \cot \left( x + \frac { \pi } { 2 } \right)
a)
 Match the function with its graph. 29 -1)   y = - \tan \left( x - \frac { \pi } { 2 } \right)   2)   y = \tan \left( x + \frac { \pi } { 2 } \right)   3)   y = - \cot \left( x - \frac { \pi } { 2 } \right)   4)   y = \cot \left( x + \frac { \pi } { 2 } \right)   a)     b)     c)     d)     A)   1 \mathrm { C } , 2 \mathrm {~B} , 3 \mathrm { D } , 4 \mathrm {~A}  B)   1 \mathrm { D } , 2 \mathrm {~A} , 3 \mathrm { C } , 4 \mathrm {~B}  C)   1 \mathrm {~A} , 2 \mathrm {~B} , 3 \mathrm { C } , 4 \mathrm { D }  D)   1 \mathrm {~A} , 2 \mathrm { D } , 3 \mathrm {~B} , 4 \mathrm { C }

b)
 Match the function with its graph. 29 -1)   y = - \tan \left( x - \frac { \pi } { 2 } \right)   2)   y = \tan \left( x + \frac { \pi } { 2 } \right)   3)   y = - \cot \left( x - \frac { \pi } { 2 } \right)   4)   y = \cot \left( x + \frac { \pi } { 2 } \right)   a)     b)     c)     d)     A)   1 \mathrm { C } , 2 \mathrm {~B} , 3 \mathrm { D } , 4 \mathrm {~A}  B)   1 \mathrm { D } , 2 \mathrm {~A} , 3 \mathrm { C } , 4 \mathrm {~B}  C)   1 \mathrm {~A} , 2 \mathrm {~B} , 3 \mathrm { C } , 4 \mathrm { D }  D)   1 \mathrm {~A} , 2 \mathrm { D } , 3 \mathrm {~B} , 4 \mathrm { C }

c)
 Match the function with its graph. 29 -1)   y = - \tan \left( x - \frac { \pi } { 2 } \right)   2)   y = \tan \left( x + \frac { \pi } { 2 } \right)   3)   y = - \cot \left( x - \frac { \pi } { 2 } \right)   4)   y = \cot \left( x + \frac { \pi } { 2 } \right)   a)     b)     c)     d)     A)   1 \mathrm { C } , 2 \mathrm {~B} , 3 \mathrm { D } , 4 \mathrm {~A}  B)   1 \mathrm { D } , 2 \mathrm {~A} , 3 \mathrm { C } , 4 \mathrm {~B}  C)   1 \mathrm {~A} , 2 \mathrm {~B} , 3 \mathrm { C } , 4 \mathrm { D }  D)   1 \mathrm {~A} , 2 \mathrm { D } , 3 \mathrm {~B} , 4 \mathrm { C }

d)
 Match the function with its graph. 29 -1)   y = - \tan \left( x - \frac { \pi } { 2 } \right)   2)   y = \tan \left( x + \frac { \pi } { 2 } \right)   3)   y = - \cot \left( x - \frac { \pi } { 2 } \right)   4)   y = \cot \left( x + \frac { \pi } { 2 } \right)   a)     b)     c)     d)     A)   1 \mathrm { C } , 2 \mathrm {~B} , 3 \mathrm { D } , 4 \mathrm {~A}  B)   1 \mathrm { D } , 2 \mathrm {~A} , 3 \mathrm { C } , 4 \mathrm {~B}  C)   1 \mathrm {~A} , 2 \mathrm {~B} , 3 \mathrm { C } , 4 \mathrm { D }  D)   1 \mathrm {~A} , 2 \mathrm { D } , 3 \mathrm {~B} , 4 \mathrm { C }


Definitions:

States of Nature

Hypothetical conditions or scenarios in decision theory and economics, representing all possible situations that could affect the outcome of a decision.

EMV

An acronym for Expected Monetary Value, a calculation used in decision making that quantifies the average outcome of a future event in monetary terms.

Payoff Table

A tool used in decision making that shows the outcome or results of different strategies under various conditions.

Expected Value Criterion

A decision-making approach that aims to maximize the expected outcome by taking into account all possible variations in performance.

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