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Rhonda has 2 different jackets, 3 different skirts, 2 different blouses, and 4 different scarfs that can be worn as part of an outfit. If an outfit consists of a jacket, a skirt, and a blouse with or without a scarf, how many different outfits can Rhonda wear?
If P is the product of all of the 100 different numbers of the form $$\frac{m+1}{m}$$, where m is an integer and 1 ≤ m ≤ 100, which of the following statements about P is true?
n is the least possible integer such that 108n is the square of an integer.

Quantity A

n

Quantity B

9


Each copy of a certain textbook in a college bookstore is classified as new or used. The bookstore sells each new copy for $90 and each used copy for another fixed price. For all the copies sold last week, the total revenue from the sales of new copies was equal to the total revenue from the sales of used copies, and the average (arithmetic mean) price per copy was $60. What is the price of each used copy?
The positive numbers a, b, c, d, e, and f are different from each other.

Quantity A

The range of the numbers a, b, c, d, e, and f

Quantity B

The range of the numbers $$a^{2}$$, $$b^{2}$$, $$c^{2}$$, $$d^{2}$$, $$e^{2}$$ and $$f^{2}$$


$$\frac{x}{x-2}$$=$$\frac{x-1}{x+1}$$

Quantity A

x

Quantity B

1


If $$8^{x}$$=16, then x=
The units digit of 2!+4!+6!+8!+10! Is
k is an integer greater than 1.

Quantity A

$$\frac{(k+1)!}{(k-1)!}$$

Quantity B

(k)(k+1)


A combination lock is set to open when the correct direction sequence is selected, either left-right-left or right-left-right, and when the correct three numbers from 1 to 60, inclusive, are selected in the correct order. If each number can be used only once, which of the following gives the number of different combinations that can be set to open the lock?


The figure shows two normal distributions, A and B, with means a and b, respectively.

Quantity A

The standard deviation of distribution A

Quantity B

The standard deviation of distribution B


Set T is the set of all numbers of the form $$\frac{1}{n(n-1)}$$, where n is an integer and 2 < n < 5.

Quantity A

The sum of all the numbers in T

Quantity B

$$\frac{1}{4}$$


When the positive integer p is divided by 7, the remainder is 3. When p is divided by 6, the remainder is 4. Which of the following could be the value of p?

Indicate all such values.
In the xy-plane, which of the following could be the graph of y=kx+b, where k < b < -1?

In company X, 60 percent of the employees are female. 80 percent of the female employees are college graduates, and half of the female college graduates are new employees.

Quantity A

The percent of the employees in Company X who are not female, not college graduates, and not new employees

Quantity B

8%


In the xy-plane, which of the following values are x-intercepts of the graph of the equation $$y= \frac{x−1}{x+3}$$?

Indicate all such values.


In the figure, line segment RM, SM, and TM bisect the angles of △RST.

Quantity A

$$\frac{x+y}{2}$$

Quantity B

33


If a > 1, which of the following could be the value of $$(1+\frac{1}{a})^{-1}$$?

Indicate all such values.
For which of the following can it be concluded that (0, 1)?
N=xyzwt-(x+y+z+w+t)

If N is an even integer and x, y, z, w,and t are integers, which of the following CANNOT be the number of the five integers x, y, z, w, and t that are even?

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