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aliya0001 [1]
4 years ago
10

Solve for h: a = one-half multiplied bh

Mathematics
2 answers:
Llana [10]4 years ago
6 0

Answer:

h=\frac{2a}{b}

Step-by-step explanation:

a =\frac{1}{2}bh

to solve for h we need to think abut isolating the h

So to get rid of the fraction we multiply 2 on both sides of equation to get

2a=bh

Now to get rid of the b which is with h we divide both sides by b

\frac{2a}{b} =h

so we get

h=\frac{2a}{b}

trasher [3.6K]4 years ago
5 0
A=1/2bh ... the answer is ..... 2a/b = h 
I hope this was helpful to you
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Work out the m and c for the line<br> y=x+6
VARVARA [1.3K]

Answer:

m - 1

c - 6

Step-by-step explanation:

y=x+6\\\\

The equation is in slope-intercept form.

y = mx + c

m - slope

c (or b) - y -intercept

Usually if the slope is one it will not be written.

y = 1x + 6  

The slope is one.

6 takes 'c's place, so it is the y-intercept.

Hope this helps.

4 0
3 years ago
Ollie drank 3 4 of a 16 fluid ounce of juice how many fluid ounces are left
mote1985 [20]
3/4=x/16


12/16=3/4



16/16-12/16=4/16




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4 0
3 years ago
Questions Below. Would Appreciate Help!
kherson [118]

Answer:

The function that could be the function described is;

f(x) = -10 \cdot cos \left (\dfrac{2 \cdot \pi }{3} \cdot x \right ) + 10

Step-by-step explanation:

The given parameters of the cosine function are;

The period of the cosine function = 3

The maximum value of the cosine function = 20

The minimum value of the cosine function = 0

The general form of the cosine function is presented as follows;

y = A·cos(ω·x - ∅) + k

Where;

\left | A \right | = The amplitude = Constant

The period, T = 2·π/ω

The phase shift, = ∅/ω

k = The vertical translation = Constant

Therefore, by comparison, we have;

T = 3 = 2·π/ω

∴ ω = 2·π/3

The range of value of the cosine of an angle are;

-1 ≤ cos(θ) ≤ 1

Therefore, when A = 10, cos(ω·x - ∅) = 1 (maximum value of cos(θ)) and k = 10, we have;

y = A × cos(ω·x - ∅) + k

y = 10 × 1 + 10 = 20 = The maximum value of the function

Similarly, when A = 10, cos(ω·x - ∅) = -1 (minimum value of cos(θ)) and k = 10, we get;

y = 10 × -1 + 10 = 0 = The minimum value of the function

Given that the function is a reflection of the parent function, we can have;

A = -10, cos(ω·x - ∅) = -1 (minimum value of cos(θ)) and k = 10, to get;

y = -10 × -1 + 10 = 20 = The maximum value of the function

Similarly, for cos(ω·x - ∅) = 1 we get;

y = -10 × 1 + 10 = 0 = The minimum value of the function

Therefore, the likely values of the function are therefore;

A = -10, k = 10

The function is therefore presented as follows;

y = -10 × cos(2·π/3·x) + 10

8 0
3 years ago
1. Provide an example of a variable term.
jeka94

Answer:

Step-by-step explanation:

1) a variable term contains a variable. If x is  a variable

5x is an example of a variable therm

2) a constant therm is not a variable

3 is an example

3) for example when a number multiply a sum or a difference between a constant and a variable

Example:

2(x-3) = 5(x+4)

4) one solution: only if x is equal to 0 the equation is true

5) no solution: the equation can’t be true for ever value of the variable

6) infinite solutions: the equation is ever true for every value of the variable

5 0
3 years ago
What are the zeros of the function below? Check all that apply. F(x) = x(x+7)(x+2)/(x-4)(x+4)
Ahat [919]

Answer: a , b, c, f

Step-by-step explanation:

5 0
3 years ago
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