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amid [387]
4 years ago
6

Round 1676 to the nearest thousand

Mathematics
2 answers:
arsen [322]4 years ago
8 0

2,000 is the final answer



Nastasia [14]4 years ago
5 0
For the nearest thousand, the thousands place is the 1. This means you must look to the number before (6) to round. 5 or more raise the score 4 or less let it rest. 6 is more than 5 therefore you must round the 1 to a 2. The answer would be 2,000
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If X = 3 inches, Y = 11 inches, W = 5 inches, and Z = 5 inches, what is the area of the object?
ziro4ka [17]
Hello i am new here how are you doing

7 0
3 years ago
Describe a sequence of transformations that exhibits the similarity between the pair of figures shown.
Inga [223]

Answer:

Reflection across the x-axis followed by dilation by a scale factor of \frac{1}{4} with the center of dilation at the origin

Step-by-step explanation:

8 0
4 years ago
Mr. Hughes has contributed $4000.00 per year for the last ten years into a RRSP account earning 9.00% compounded annually. Suppo
SIZIF [17.4K]

Answer:

A) $93,504.818

B) $40,000

C) $53,504.818

Step-by-step explanation:

Yearly contribution ( periodic payment) = $4000

Period (p) = 10years

Additional period(y) = 5years

Annual interest(r) = 9% = 0.09

Future value (FV) =

periodic payment [(1 + r)^y - 1] / r

4000 [(1 + 0.09)^10 - 1 / 0.09]

4000[1.09^10 - 1 / 0.09]

4000[1.3673636 / 0.09]

4000(15.192929)

= 60771.716

If left for five more years:

FV = 60771.716(1 + r)^n

FV = 60771.716(1 + 0.09)^5

FV = 60771.716(1.09)^5

FV = 60771.716(1.5386239549)

FV = $93,504.818

B) MR. HUGHES CONTRIBUTION :

Periodic payment × p ; $4000 was deposited annually for 10 years.

$4000 × 10 = $40,000

C) Interest = Future value - contribution

$93,504.818 - $40,000

= $53,504.818

4 0
4 years ago
I honestly need help with these
Brilliant_brown [7]

9. The curve passes through the point (-1, -3), which means

-3 = a(-1) + \dfrac b{-1} \implies a + b = 3

Compute the derivative.

y = ax + \dfrac bx \implies \dfrac{dy}{dx} = a - \dfrac b{x^2}

At the given point, the gradient is -7 so that

-7 = a - \dfrac b{(-1)^2} \implies a-b = -7

Eliminating b, we find

(a+b) + (a-b) = 3+(-7) \implies 2a = -4 \implies \boxed{a=-2}

Solve for b.

a+b=3 \implies b=3-a \implies \boxed{b = 5}

10. Compute the derivative.

y = \dfrac{x^3}3 - \dfrac{5x^2}2 + 6x - 1 \implies \dfrac{dy}{dx} = x^2 - 5x + 6

Solve for x when the gradient is 2.

x^2 - 5x + 6 = 2

x^2 - 5x + 4 = 0

(x - 1) (x - 4) = 0

\implies x=1 \text{ or } x=4

Evaluate y at each of these.

\boxed{x=1} \implies y = \dfrac{1^3}3 - \dfrac{5\cdot1^2}2 + 6\cdot1 - 1 = \boxed{y = \dfrac{17}6}

\boxed{x = 4} \implies y = \dfrac{4^3}3 - \dfrac{5\cdot4^2}2 + 6\cdot4 - 1 \implies \boxed{y = \dfrac{13}3}

11. a. Solve for x where both curves meet.

\dfrac{x^3}3 - 2x^2 - 8x + 5 = x + 5

\dfrac{x^3}3 - 2x^2 - 9x = 0

\dfrac x3 (x^2 - 6x - 27) = 0

\dfrac x3 (x - 9) (x + 3) = 0

\implies x = 0 \text{ or }x = 9 \text{ or } x = -3

Evaluate y at each of these.

A:~~~~ \boxed{x=0} \implies y=0+5 \implies \boxed{y=5}

B:~~~~ \boxed{x=9} \implies y=9+5 \implies \boxed{y=14}

C:~~~~ \boxed{x=-3} \implies y=-3+5 \implies \boxed{y=2}

11. b. Compute the derivative for the curve.

y = \dfrac{x^3}3 - 2x^2 - 8x + 5 \implies \dfrac{dy}{dx} = x^2 - 4x - 8

Evaluate the derivative at the x-coordinates of A, B, and C.

A: ~~~~ x=0 \implies \dfrac{dy}{dx} = 0^2-4\cdot0-8 \implies \boxed{\dfrac{dy}{dx} = -8}

B:~~~~ x=9 \implies \dfrac{dy}{dx} = 9^2-4\cdot9-8 \implies \boxed{\dfrac{dy}{dx} = 37}

C:~~~~ x=-3 \implies \dfrac{dy}{dx} = (-3)^2-4\cdot(-3)-8 \implies \boxed{\dfrac{dy}{dx} = 13}

12. a. Compute the derivative.

y = 4x^3 + 3x^2 - 6x - 1 \implies \boxed{\dfrac{dy}{dx} = 12x^2 + 6x - 6}

12. b. By completing the square, we have

12x^2 + 6x - 6 = 12 \left(x^2 + \dfrac x2\right) - 6 \\\\ ~~~~~~~~ = 12 \left(x^2 + \dfrac x2 + \dfrac1{4^2}\right) - 6 - \dfrac{12}{4^2} \\\\ ~~~~~~~~ = 12 \left(x + \dfrac14\right)^2 - \dfrac{27}4

so that

\dfrac{dy}{dx} = 12 \left(x + \dfrac14\right)^2 - \dfrac{27}4 \ge 0 \\\\ ~~~~ \implies 12 \left(x + \dfrac14\right)^2 \ge \dfrac{27}4 \\\\ ~~~~ \implies \left(x + \dfrac14\right)^2 \ge \dfrac{27}{48} = \dfrac9{16} \\\\ ~~~~ \implies \left|x + \dfrac14\right| \ge \sqrt{\dfrac9{16}} = \dfrac34 \\\\ ~~~~ \implies x+\dfrac14 \ge \dfrac34 \text{ or } -\left(x+\dfrac14\right) \ge \dfrac34 \\\\ ~~~~ \implies \boxed{x \ge \dfrac12 \text{ or } x \le -1}

13. a. Compute the derivative.

y = x^3 + x^2 - 16x - 16 \implies \boxed{\dfrac{dy}{dx} = 3x^2 - 2x - 16}

13. b. Complete the square.

3x^2 - 2x - 16 = 3 \left(x^2 - \dfrac{2x}3\right) - 16 \\\\ ~~~~~~~~ = 3 \left(x^2 - \dfrac{2x}3 + \dfrac1{3^2}\right) - 16 - \dfrac13 \\\\ ~~~~~~~~ = 3 \left(x - \dfrac13\right)^2 - \dfrac{49}3

Then

\dfrac{dy}{dx} = 3 \left(x - \dfrac13\right)^2 - \dfrac{49}3 \le 0 \\\\ ~~~~ \implies 3 \left(x - \dfrac13\right)^2 \le \dfrac{49}3 \\\\ ~~~~ \implies \left(x - \dfrac13\right)^2 \le \dfrac{49}9 \\\\ ~~~~ \implies \left|x - \dfrac13\right| \le \sqrt{\dfrac{49}9} = \dfrac73 \\\\ ~~~~ \implies x - \dfrac13 \le \dfrac73 \text{ or } -\left(x-\dfrac13\right) \le \dfrac73 \\\\ ~~~~ \implies \boxed{x \le 2 \text{ or } x \ge \dfrac83}

5 0
2 years ago
PLEASE HELP ASAP
Solnce55 [7]

Answer:

18.68 feet

Step-by-step explanation:

- Just did the quiz

- Also plugged it into a calculator I found online

7 0
3 years ago
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