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Sedbober [7]
2 years ago
10

HELP PLEASEE??? !!! ????

Mathematics
2 answers:
harkovskaia [24]2 years ago
4 0
Most likely choice C., becasue the shapes go in order from least sides to most. C. has 5 sides, witht he previous one having 4, so it competes the patter.
ludmilkaskok [199]2 years ago
3 0
C would probably be the answer considering it adds a space for every new shape.
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I need help on this one
shusha [124]

Answer:

= 1/26

Step-by-step explanation:

Use Division Distributive Property:

(x/y)^a = x^a/y^a

(^, That means to the power of exponents.)

Then you Simplify  6^3 to 216

Then you will get 1 over 216.

5 0
2 years ago
Help me
Goshia [24]
... what’s the question?
6 0
3 years ago
Read 2 more answers
Consider the differential equation y'' − y' − 12y = 0. Verify that the functions e−3x and e4x form a fundamental set of solution
Inga [223]

Answer:

e^(-3x) and e^(4x) form a fundamental set of solutions of the differential equation

y'' - y' - 12y = 0.

Since their wronskian is 7e^x and not 0

Step-by-step explanation:

Given the differential equation

y'' - y' - 12y = 0.

We are required to verify that the functions e^(-3x) and e^(4x) form a fundamental set of solutions of the differential equation on the interval (−[infinity], [infinity]). They form a fundamental set if they are linearly independent, and they are linearly independent if their wronkian is not zero, otherwise, they are linearly dependent.

Now, we need to find the Wronskian of e^(-3x) and e^(4x), and see if it is equal to zero or not.

The wrinkles of two functions y1 and y2 is given as the determinant

W(y1, y2) = |y1...........y2|

......................|y1'.........y2'|

W(e^(-3x), e^(4x))

= |e^(-3x)............e^(4x)|

...|-3e^(-3x)......4e^(4x)|

= e^(-3x) × 4e^(4x) - (-3e^(-3x) × e^(4x))

= 4e^x + 3e^x

= 7e^x

≠ 0

Since the wronskian is not zero, we conclude that the are linearly independent, and hence, form a set of fundamental solution.

3 0
3 years ago
A city held a bike parade. 52 bikers rode in the parade, and 8 of them rode a fixed-gear bicycle.
Vedmedyk [2.9K]

Answer:

\frac{2}{13}

Step-by-step explanation:

Find the probability by dividing the number of fixed gear bikers by the total number of bikers in the parade.

Since there are 8 fixed gear bikers and 52 bikers in total, this will be found by dividing 8 by 52.

So, the probability as a fraction is \frac{8}{52}

This can be simplified by dividing both the numerator and denominator by 4:

= \frac{2}{13}

So, the probability is \frac{2}{13}

6 0
2 years ago
The side of a square are 3 cm long. One vertex of the square is at (2,0) on a square coordinate grid marked in centimeters units
yuradex [85]
(2,0) (5.0) (5,3) (2,3)
(2,0) (-1,0) (2,3) (-1,3)
3 0
3 years ago
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