If you can choose one scoop of ice cream and one topping, how many different sundaes can you make?A. 3
B. 2
C. 5
D. 6
E. 8

Answers

Answer 1
Answer:

Answer:

Step-by-step explanation:

What is the answer??????

Answer 2
Answer:

Final answer:

Calculate the total number of sundae combinations by multiplying the number of ice cream scoop choices by the number of topping choices. The specifics are not provided in the question, so the answer varies.

Explanation:

The number of sundae combinations you can make will be determined by the total number of ice cream flavors and the total number of toppings you have to choose from. If we consider each flavor and each topping as a single option, this becomes a problem of counting combinations. The general rule is that if you have 'n' options for one thing (like ice cream scoops) and 'm' options for another thing (like toppings), you multiply them together for the total number of combinations. So far the exact options are not specified in your question, so the correct answer could be any of the options you've provided depending on the specifics of cone and topping choices.

Learn more about Counting Combinations here:

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The number of chips of different colors in Amy's bag is shown below: 8 blue chips 9 pink chips 1 white chip Amy takes out a chip from the bag randomly without looking. She replaces the chip and then takes out another chip from the bag. What is the probability that Amy takes out a pink chip in both draws?

This is ur problem sis u got thisWhich of the following is equivalent to 16a2 – 49
A. (4a – 7) (4a – 7)
B. (4a + 7) (4a – 7)
C. (7 – 4a) (7 – 4a)
D. (7 + 4a) (7 – 4a)

Answers

B. is your correct answer.

Simonne used the following steps to simplify the given expression.12 - 3(-2x + 4)

Step 1: 12 + (–3)·(–2x) + (–3)·(4)
Step 2: 12 + 6x + (–12)
Step 3: 12 + (–12) + 6x
Step 4: 0 + 6x
Step 5: 6x

What property of real numbers was used to transition from Step 3 to Step 4?

Answers

additive inverse property : a + (-a) = 0

Megan invested in ten bonds of total face value of $1.000, issued by Zen Corporation. The bonds paid 10 percer semiannual (5% every 6 months) interest till the maturity date, which of the following is the value of interest earned in the first installment on a single bond? A) $50 B) $100 C) $500 D) $90 E) $75

Answers

Answer:

$50 is the value of interest earned in the first installment on a single bond

Step-by-step explanation:

Applying Interest earned in the first installment on a single bond ;

= PRT/100

P = $1.000

R = 5%

T = 1

Plugging the values in the equation ;

Interest = 1000 x 5 x 1 /100

= $50, hence option A is the correct one.

Find the distance between the two points rounding to the nearest tenth(if neccesary) (0,-9) and (-4,-3)

Answers

Answer:

To find the distance between two points, we can use the formula for the distance between two points in a coordinate plane, which is:

Distance = √((x2 - x1)^2 + (y2 - y1)^2)

Given the coordinates of the two points:

Point 1: (0, -9)

Point 2: (-4, -3)

Let's calculate the distance using the formula:

Distance = √((-4 - 0)^2 + (-3 - (-9))^2)

= √((-4)^2 + (-3 + 9)^2)

= √(16 + 36)

= √52

≈ 7.2 (rounded to the nearest tenth)

Therefore, the distance between the points (0, -9) and (-4, -3) is approximately 7.2 units (rounded to the nearest tenth)

Fish are sold at 10 for $8.64. What will be the cost of 16 fish

Answers

The cost of 16 fish would be $13.824.

How to determine What will be the cost of 16 fish

To find the cost of 16 fish, we can set up a proportion based on the given information:

10 fish cost $8.64

So, 1 fish would cost $8.64 / 10 = $0.864

Now, we can find the cost of 16 fish:

Cost of 16 fish = 16 × $0.864 = $13.824

Therefore, the cost of 16 fish would be $13.824.

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8.64/10 = 0.864 per fish

.864 x 16 = $13.82

the average flow of the niagara river is 0.477 km3 of water per day. what is the rate of water flow in units of liters per minute?

Answers

Step-by-step explanation:

.477 km^3  x 1000 m/km  x1000 m/km  x 1000 m/km  * 100 cm/m * 100 cm/m x 100 cm/m cm^3   / 1000 cm^3/liter   / (24 hrs * 60 min/hr) =

.477 * 1000^3 * 100^3  / 1000 / (24 * 60)  =   331 250 000 Liters/min