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Tatiana [17]
3 years ago
12

Jackson had $53 in his account. He bought a video game. He now has -$12 in his

Mathematics
1 answer:
balandron [24]3 years ago
4 0

Answer:

$65

Step-by-step explanation:

Add 53 and 12 together to see how much it costed.

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A video game sells at Arnolds for $14.99. Arnold's marks the game up at 40% of the selling price. What is the cost of the game t
BARSIC [14]
To answer this question, you do

14.99*40/100

This equals 5,996.

Therefore, the answer is A.
4 0
3 years ago
Read 2 more answers
Which of the following statements is(are) NOT applicable to typologies? a. They are typically nominal composite measures. b. The
DedPeter [7]

Answer: The following statements is not applicable to typologies, <u><em>"They may be used effectively as independent or dependent variables."</em></u>

Typology is a complex measurement that affect the categorization of observations in terms of their property on multiple variables.They are typically nominal composite measures.They involve a set of categories or types. They are often used when researchers wish to summarize the intersection of two or more variables.

6 0
3 years ago
Before paying employee bonuses and state and federal taxes, a company earns profits of $60,000. The company pays employees a bon
wariber [46]

Answer:

\left[\begin{array}{ccc}1&0.05&0.05\\0.05&1&0\\0.4&0.4&1\end{array}\right] *\left[\begin{array}{c} x_1\\x_2\\x_3\end{array}\right] = \left[\begin{array}{c} 3000\\3000\\24000\end{array}\right]

Step-by-step explanation:

Given:

- Profits earned = $ 60, 000

- Bonus after tax = 5%

- State tax after bonus is = 5%

- Federal tax after bonus and state tax is = 40%

Find:

A linear equation system to find the amounts paid in bonuses, state tax, and federal tax.

Solution:

Define variables:

- x_1 : amount paid for bonuses

- x_2: amount paid for state tax

- x_3: amount paid for federal tax

- Since bonuses are paid after taxes at 5 %:

                                   x_1 = 0.05(60,000 - x_2 - x_3)

                                   3000 = x_1 + 0.5x_2 + 0.5x_3

- State taxes are paid after bonuses:

                                   x_2 = 0.05*(60000 - x_1)

                                   x_2 + 0.05x_2 = 3000

- Finally federal tax are paid:

                                   x_3 = 0.4*(60,000 - x_1 - x_2)

                                  x_3 + 0.4x_2 + 0.4x_3 = 24,000

- Therefore the system is:

                                  x_1 + 0.5x_2 + 0.5x_3= 3000  

                                   x_2 + 0.05x_2 = 3000

                                   x_3 + 0.4x_2 + 0.4x_3 = 24,000

Therefore the system can be expressed as an equation below:

                            \left[\begin{array}{ccc}1&0.05&0.05\\0.05&1&0\\0.4&0.4&1\end{array}\right] *\left[\begin{array}{c} x_1\\x_2\\x_3\end{array}\right] = \left[\begin{array}{c} 3000\\3000\\24000\end{array}\right]

4 0
3 years ago
How would you write in standard form 8 thousands+1200 hundreds
Alex_Xolod [135]
It is basically 8 thousand plus one thousand two hundred so your answer would be 9200
4 0
3 years ago
Of the 64 people who answered "yes" to a question, 6 were male. Of the 70 people that answered "no" to the question, 8 were male
kotegsom [21]

Answer:

The probability that the person answered "yes" or was male is 0.537

Step-by-step explanation:

The union of events is equivalent to the disjunction "or". Given two events A and B, the union of events, denoted by A∪B, is defined as the event formed by all the elements that are in A or B. That is, the event A∪B is verified when one of the two or both occurs.

Considering two events A and B with probabilities P (A) and P (B), respectively, the probability of their union is given by:

P(A∪B)= P(A) + P(B) - P(A∩B)

In this case:

  • A: the person answered "yes"
  • B: the person was male

So, being the probability calculated as the number of favorable cases divided by the total number of possible cases, then in this case it is known that the number of people who answered yes is 64, while the number of people who responded is not 70. Therefore , the total number of people who answered is equal to 64 + 70 = 134. So, the probability of answering yes is:

P(A)=\frac{64}{134}=0.478

On the other hand, you know that out of 64 people who answered yes, the number of being male is 6. And out of 70 people who answered no, the number of being male is 8. So the probability that men answer yes is calculated as:

P (A∩B) =\frac{6}{134}= 0.045

Finally, with the total number of men equal to 6 + 8 = 14, the probability of being male is:

P(B)=\frac{14}{134} = 0.104

Then:

P(A∪B)= P(A) + P(B) - P(A∩B)

P(A∪B)= 0.478 + 0.104 - 0.045

Solving:

P(A∪B)= 0.537

<u><em>The probability that the person answered "yes" or was male is 0.537</em></u>

3 0
4 years ago
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