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Virty [35]
2 years ago
14

Raj is visiting the United States and needs to convert 2,000 rupees to US dollars. Raj will have $ USD.

Mathematics
5 answers:
nika2105 [10]2 years ago
8 1

Answer:

2000 rupees = $26,50 USD

IRISSAK [1]2 years ago
5 1

Answer:

26.5 USD

Step-by-step explanation:

<u><em>Nowadays,</em></u>

1 rupee = 0.013 USD

<em>Multiplying both sides by 2000</em>

2000 rupee = 26.5 USD

Guest1 year ago
1 0

Actually It's 31.88 USD I got the answer and Edg

Guest1 year ago
1 0

It would be $31.88 USD

Guest1 year ago
1 0

its 31.88 us dollars i listen to the first two didnt see the others and got it wrong

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The starting salary for a particular job is 1.2 million per annum. The salary increases each year by 75000 to a maximum of 1.5mi
Vlada [557]
<h2>Answer:</h2>

In the 5th year

<h2>Step-by-step explanation:</h2>

For the first year, the salary is 1.2million = 1,200,000

For the second year, the salary is 1.2million + 75000 = 1,200,000 + 75,000 = 1,275,000

.

.

.

For the last year, the salary is 1.5million = 1,500,000

This gives the following sequence...

1,200,000 1,275,000  .   .   . 1,500,000

This follows an arithmetic progression with an increment of 75,000.

<em>Remember that,</em>

The last term, L, of an arithmetic progression is given by;

L = a + (n - 1)d           ---------------(i)

<em>Where;</em>

a = first term of the sequence

n = number of terms in the sequence (which is the number of years)

d = the common difference or increment of the sequence

<em>From the given sequence,</em>

a = 1,200,000                          [which is the first salary]

d = 75,000                               [which is the increment in salary]

L = 1,500,000                          [which is the maximum salary]

<em>Substitute these values into equation (i) as follows;</em>

1,500,000 = 1,200,00 + (n - 1) 75,000

1,500,000 - 1,200,000 = 75,000(n-1)

300,000 = 75,000(n - 1)

\frac{300,000}{75,000} = n - 1

4 = n - 1

n = 5

Therefore, in the 5th year the maximum salary will be reached.

3 0
2 years ago
Which property does each equation demonstrate? x2 + 2x = 2x + x2 (3z4 + 2z3) – (2z4 + z3) = z4 + z3 (2x2 + 7x) + (2y2 + 6y) = (2
myrzilka [38]

Answer:

1 . Closure

2. Distributive

3. Closure

Step-by-step explanation:

Here, we want to know the type of property exhibited or displayed by each of the equations in the question.

Equation 1 displays the closure property.

What this means that if we make an addition operation either way, we would get same answer. So we say that addition is closed for that equation.

Equation 3 exhibits closure property as well. If we go either way on the addition operation for that equation, we are bound to get the same answer.

Equation 2 exhibits the distributive property.

Each term in the bracket is multiplied by the subtraction symbol before we proceeded to complete the arithmetic operations

5 0
2 years ago
The area of a trapezoid is 140 cm2 and the height is 20 cm. What is the sum of the bases?
Reil [10]
D 7
A million apologies if I’m wrong half of my brain is still on vacation!
6 0
2 years ago
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Which statement is true about the end behavior of the graphed function?
Tems11 [23]

Answer:

(SEE EXPLANATION FIRST)

Answer D is TRUE because on the graph if you were to keep going left even after the picture of the graph ends, the graph will still keep going up infinite

Step-by-step explanation:

If this is the graph you can read the answer

6 0
2 years ago
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What value for c will make the expression a perfect square trinomial? x2 – 7x + c negative StartFraction 49 Over 4 EndFraction n
puteri [66]

Answer: c=\frac{49}{4}

Step-by-step explanation:

You can find the value of "c" that will make it a perfect square trinomial by Completing the square.

Given the following expression provided in the exercise:

x^2 - 7x + c

You can notice that it is written in this form:

ax^2-bx+c

Then, you can identify that the coefficient "b" is:

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Since to complete the square you must add and subtract the half of square of coefficient "b", you can conclude that:

c=(\frac{b}{2})^2

Therefore, substituting "b" into c=(\frac{b}{2})^2, you get:

c=(\frac{-7}{2})^2\\\\c=\frac{49}{4}

6 0
2 years ago
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