answersLogoWhite

0

To find the combinations of 5 bills and 2 bills that sum to 27, we can denote the number of 5-dollar bills as (x) and the number of 2-dollar bills as (y). The equation we need to solve is (5x + 2y = 27) with the constraints (x \geq 0) and (y \geq 0). By testing non-negative integer values for (x), we find that possible combinations are ( (5, 1), (4, 3), (3, 5), (2, 7), (1, 9), (0, 13) ), resulting in a total of 6 combinations.

User Avatar

AnswerBot

1mo ago

What else can I help you with?

Continue Learning about Math & Arithmetic

How many different combinations can you make with 5.00?

The number of different combinations that can be made with $5.00 depends on the denominations of the coins or bills being used. For example, using U.S. currency with pennies, nickels, dimes, quarters, and dollar bills, there are numerous combinations. If considering only pennies, nickels, and dimes, there are 126 combinations. If you include all denominations, the combinations increase significantly, often requiring programming or combinatorial calculations to determine the exact number.


How many different combinations can you make out of 2 different things?

Two make combinations you would take 2x1=2 combinations only


How many different combinations can someone make with 8 shirts and 6 pants?

To find the total number of different combinations of shirts and pants, you multiply the number of shirts by the number of pants. With 8 shirts and 6 pants, the calculation is 8 x 6, resulting in 48 different combinations.


How many different ways can you make $1.25 by using dollar and half dollarsguarters guarters?

To make $1.25 using only dollar bills and quarters, you can use one $1 bill and one quarter, or you can use five quarters (which equals $1.25). Therefore, there are a total of two different combinations: one with a dollar and a quarter and another with just quarters.


How many different combinations can you make 1-10?

To find the number of different combinations of the numbers 1 to 10, we can consider the combinations of choosing any subset of these numbers. The total number of combinations for a set of ( n ) elements is given by ( 2^n ) (including the empty set). For the numbers 1 to 10, ( n = 10 ), so the total number of combinations is ( 2^{10} = 1024 ). This includes all subsets, from the empty set to the full set of numbers.

Related Questions

How many different combinations can you make with 5.00?

The number of different combinations that can be made with $5.00 depends on the denominations of the coins or bills being used. For example, using U.S. currency with pennies, nickels, dimes, quarters, and dollar bills, there are numerous combinations. If considering only pennies, nickels, and dimes, there are 126 combinations. If you include all denominations, the combinations increase significantly, often requiring programming or combinatorial calculations to determine the exact number.


How many different combinations can you make out of 2 different things?

Two make combinations you would take 2x1=2 combinations only


How many different combinations can someone make with 8 shirts and 6 pants?

To find the total number of different combinations of shirts and pants, you multiply the number of shirts by the number of pants. With 8 shirts and 6 pants, the calculation is 8 x 6, resulting in 48 different combinations.


How many different ways can you make $1.25 by using dollar and half dollarsguarters guarters?

To make $1.25 using only dollar bills and quarters, you can use one $1 bill and one quarter, or you can use five quarters (which equals $1.25). Therefore, there are a total of two different combinations: one with a dollar and a quarter and another with just quarters.


How many different combinations can you make 1-10?

To find the number of different combinations of the numbers 1 to 10, we can consider the combinations of choosing any subset of these numbers. The total number of combinations for a set of ( n ) elements is given by ( 2^n ) (including the empty set). For the numbers 1 to 10, ( n = 10 ), so the total number of combinations is ( 2^{10} = 1024 ). This includes all subsets, from the empty set to the full set of numbers.


How many combinations can you make with 1.20 1.80 and 0.60 and lead up to 6.00 total?

14 combinations.


John has 5 spoons and 4 forks How many different combinations of silverware could he make?

20 different combinations of silverware


How many combinations can you make with apple orange banana cherries pear peach?

25 different combinations.


How many different combinations of quarters and dimes and nickels make up 1.25?

42 combinations.


How many different combinations can you make with 4 shirts and 4 pairs of pants and 4 hats?

To find the total number of combinations, you can multiply the number of options for each item of clothing. With 4 shirts, 4 pairs of pants, and 4 hats, the total combinations would be (4 \times 4 \times 4 = 64). Thus, you can create 64 different outfits using these items.


How many different combinations of numbers can you make using 1 2 10 25 and 100?

Their is 25 combinations


How many combinations can you make from 3 different flavors and 6 different toppings?

18