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Brilliant_brown [7]
3 years ago
9

Find three consecutive positive integers such that the product of the first and third interger is 17 more than 3 times the secon

d interger
Mathematics
1 answer:
Komok [63]3 years ago
3 0

Answer:

5, 6, 7

Step-by-step explanation:

In order to solve for the three integers, we can assign a variable and set up an equation:

first integer: x

second integer: x + 1

third integer: x + 2

Given that 'the product of the first and third integer is 17 more than 3 times the second integer':

x(x + 2) = 3(x + 1) + 17

Distribute: x² + 2x = 3x + 3 + 17

Combine like terms: x² - x - 20 = 0

Factor: (x - 5)(x + 4) = 0

Set them equal to '0' and solve:

x - 5 = 0      x + 4 = 0

x = 5               x = -4

Since the problem asks for positive integers, x must equal 5:

first = 5

second = 5 + 1 = 6

third = 5 + 2 = 7

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Solution:

Given expression:

$(1.0125)^{4 x}=\frac{3}{2}

To solve the expression:

$(1.0125)^{4 x}=\frac{3}{2}

<em>If f(x) = g(x) then ln(f(x)) = ln(g(x)).</em>

Using the above condition, we can write

$\ln \left(1.0125^{4 x}\right)=\ln \left(\frac{3}{2}\right)

Apply log rule: \log _{a}\left(x^{b}\right)=b \cdot \log _{a}(x)

$4 x \ln (1.0125)=\ln \left(\frac{3}{2}\right)

Divide both side of the equation by 4 \ln (1.0125).

$\frac{4 x \ln (1.0125)}{4 \ln (1.0125)}=\frac{\ln \left(\frac{3}{2}\right)}{4 \ln (1.0125)}

$x=\frac{\ln \left(\frac{3}{2}\right)}{4 \ln (1.0125)}

The answer is x=\frac{\ln \left(\frac{3}{2}\right)}{4 \ln (1.0125)}.

8 0
3 years ago
Adding and subtracting fractions show the working and answer
Gennadij [26K]

Answer:

1) 1/2

2)7/10

3)11/12

4)4/96

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3 0
3 years ago
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____ [38]

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4 years ago
What is the probability that a randomly chosen four-digit integer (no leading zeros) has distinct digits and ends with the digit
S_A_V [24]

Answer:

c. 0.0498

Step-by-step explanation:

First of all, let us find the number of four digit numbers possible.

There are 4 digits and let us have a look at the possibility of each digit.

Number of possible options for Unit's digit = 10

Number of possible options for ten's digit = 10

Number of possible options for hundred's digit = 10

Number of possible options for thousand's digit = 9 (because 0 can not be there to make it a 4 digit number)

Total number of possible outcomes = 10\times 10\times 10\times 9 = \bold{9000}

As per the given condition, unit's digit is 7.

So, number of possible options for unit's digit = 1

Number of possible options for thousand's digit = 8 (7 and 0 can not be there to make it a 4 digit number)

Number of possible options for hundred's digit = 8 (7 and one digit used in thousand's place can not be there)

Number of possible options for ten's digit = 7 (7, two digits used at thousand's and hundred's places)

Number of possible outcomes as per given conditions = 1\times 8\times 8\times 7 = \bold{448}

Formula for probability of an event E can be observed as:

P(E) = \dfrac{\text{Number of favorable cases}}{\text {Total number of cases}}

P(E) = \dfrac{448}{9000} =\bold{0.0498}

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3 years ago
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Yakvenalex [24]

Answer:

3.1567 * 10^-4 miles

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1 ft = 1.894 * 10^-4 miles , so

1 inch = 1.894 * 10^-4 / 12  miles

= 0.15783 * 10^-4

= 1.5783* 10^-5 miles  ( in scientific form).

Multiplying this by 20 we get

31.567 * 10^-5

= 3.1567 * 10^-4 miles.

3 0
3 years ago
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