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Lerok [7]
3 years ago
6

The probability of a spinner stopping on 3 is 1/8 The probability of the spinner stopping on 6 is 1/8 What is the probability of

the spinner stopping on 3 or 6
A. 1/16
B. 1/8
C. 1/64
D. 2/8
PLEASE HELP
Mathematics
1 answer:
Mumz [18]3 years ago
4 0
Your answer is B 1/8 . 
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When driving in England, Brian drove through several speed cameras. On one drive, Brian left his hotel and after 7 minutes he wa
DedPeter [7]

Solution :

The formula for the linearization of a function $f(x)$ at a point $x$ = a is given as

$L(x)=f(a)+(x-a)f'(a)$

Assuming the time is t and the distance travelled is $f(t)$, that makes the speed as $f'(t)$.

So substituting them in the linearization formula,

A. At t = 7 minutes

   f(7) = 2.5 km

    f'(7) = 0.5 kpm

  ∴ $L_7(t)=f(7)+(t-7)f'(7)$

             $=2.5+(t-7)0.5$

              $=2.5+0.5t-3.5$

              $=0.5t-1$

B. At t = 18 minutes

      f(18) = 14.8 km

    f'(18) = 0.8 kpm

  ∴ $L_{18}(t)=f(18)+(t-18)f'(18)$

               $=14.8+(t-18)0.8$

              $=14.8+0.8t-14.4$

              $=0.8t-0.4$

C. Substituting the value of t as 14 in both the linearization to determine the position at 14 minutes, we get

$L_7(14)=0.5(14)-1.0$

          = 7 - 1

          = 6 km

$L_{18}(14)=0.8(14)+0.4$

            = 11.2 + 0.4

            = 11.6 km

D. According to the linearization at 7, the distance travelled between the 7 minutes and 14 minutes is = 6 km - 2.5 km

                                           = 3.5 km

And between the 14 minutes and 18 minutes is = 14.8 km - 6 km

                                                                              = 8.8 km

This is an average speed of 0.5 kpm in the first interval and an average speed of 2.2 kpm.

Now, according to the linearization of 18, the distance travelled between the 7 minutes and the 14 minutes is = 11.6 km - 2.5 km

                                                           = 9.1 km

And between 14 minutes and 18 minutes is = 14.8 km - 11.6 km

                                                                       = 3.2 km

This gives an average speed of 1.3 kpm in the first interval and 0.8 kpm in the second interval.

Therefore, the second approximation is the better one since the average speed are closer to the actual readings in the second linearization.  

4 0
3 years ago
Create an equation for a line that passes through the points (2,5) and (5, 11). (make sure you find m and b to create your equat
stealth61 [152]

Answer:

y=2x+1

Step-by-step explanation:

3 0
3 years ago
Factorise:b+√b-12<br>An easy one.​
aalyn [17]

Answer:

Step-by-step explanation:

If you let b = x^2 the problem becomes a whole lot easier. Note that x = √b

x^2 + x - 12

Now factor this trinomial.

(x + 4)(x - 3)

Now put b back into the equation

(√b + 4)(√b - 3)

7 0
3 years ago
Help !!!!!!!!!!!!!!! Thanks
Alexus [3.1K]

Answer:

I believe that the value of the variable is C: 50.

And Y = 180 - 50 = 130.

Good Luck!

5 0
3 years ago
Write an equation for the description.
cricket20 [7]
I think it would be “ 130 + m = 170 “ I could be wrong tho
6 0
3 years ago
Read 2 more answers
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