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Diano4ka-milaya [45]
3 years ago
14

15) Find the value of x in the given square Area = 34 in

Mathematics
1 answer:
lyudmila [28]3 years ago
6 0

Answer:

Area of a square is given by:

A = a2

where a = length of side

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1.1.0
SSSSS [86.1K]

Answer:

the a is c tthinck

Step-by-step explanation:

4 0
3 years ago
Find y to the nearest hundredth place
lidiya [134]

Answer:

you need to attach a picture or more info

7 0
3 years ago
★PLSSSSS HELPPPPPPPPP★
monitta

Answer:

C: S≤35h+42

Step-by-step explanation:

Since the competitor charges $35 per hour PLUS 42(individually), it is 35h+42.

Suzzette's charges should be NO MORE than the competitor, so it could include the SAME amount too. So S(suzzette) is lesser than Or equal to 35h+42.

The answer is C, S≤35h+42

8 0
2 years ago
Determine whether the given differential equation is exact. If it is exact, solve it. (tan(x)-sin(x)sin*y))dx+cos(x)cos(y)dy=0 g
Nataly [62]

The differential equation

M(x,y) \, dx + N(x,y) \, dy = 0

is considered exact if M_y = N_x (where subscripts denote partial derivatives). If it is exact, then its general solution is an implicit function f(x,y)=C such that f_x=M and f_y=N.

We have

M = \tan(x) - \sin(x) \sin(y) \implies M_y = -\sin(x) \cos(y)

N = \cos(x) \cos(y) \implies N_x = -\sin(x) \cos(y)

and M_y=N_x, so the equation is indeed exact.

Now, the solution f satisfies

f_x = \tan(x) - \sin(x) \sin(y)

Integrating with respect to x, we get

\displaystyle \int f_x \, dx = \int (\tan(x) - \sin(x) \sin(y)) \, dx

\implies f(x,y) = -\ln|\cos(x)| + \cos(x) \sin(y) + g(y)

and differentiating with respect to y, we get

f_y = \cos(x) \cos(y) = \cos(x) \cos(y) + \dfrac{dg}{dy}

\implies \dfrac{dg}{dy} = 0 \implies g(y) = C

Then the general solution to the exact equation is

f(x,y) = \boxed{-\ln|\cos(x)| + \cos(x) \sin(y) = C}

7 0
1 year ago
Find the measure of all of the angles on the diagram​
mel-nik [20]

Answer:

1. 135

2. 45

3. 45

4. 135

5. 135.

6. 45

7. 45

8. 135

Step-by-step explanation:

4 0
3 years ago
Read 2 more answers
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