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romanna [79]
3 years ago
8

Im having trouble finding how to put this question into a equation​

Mathematics
1 answer:
Lady_Fox [76]3 years ago
3 0

Answer:

y = c + 14

Step-by-step explanation:

Let y be the number of compact cars sold in the month of June.

Let c represent the number of SUVs sold in the month of June.

From the question given above, we were told that the dealer sold 14 more compact cars than the SUVs. This can be written as illustrated below:

Number of compact cars sold = y

Number of SUVs sold = c

Number of compact cars (y) sold is 14 more than the number of SUVs (c) sold. Therefore,

y = c + 14

Thus, the expression generated from the question is: y = c + 14

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Z varies directly as x and inversely as y.
natta225 [31]

Answer:

y = 6.

Step-by-step explanation:

z = kx/y

9 = k*24/8

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k = 3.

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If cos(xy) = 3x+1 , find dy/dx
lisabon 2012 [21]
If you're using the app, try seeing this answer through your browser:  brainly.com/question/2867070

_______________


          dy
Find  ——  for an implicit function:
          dx

cos(xy) = 3x + 1.


First, differentiate implicitly both sides with respect to x. Keep in mind that y is not just a variable, but it is also a function of x, so you have to use the chain rule there:

\mathsf{\dfrac{d}{dx}\big[cos(xy)\big]=\dfrac{d}{dx}(3x+1)}\\\\\\
\mathsf{-\,sin(xy)\cdot \dfrac{d}{dx}(xy)=\dfrac{d}{dx}(3x)+\dfrac{d}{dx}(1)}


Apply the product rule to differentiate that term at the left-hand side:

\mathsf{-\,sin(xy)\cdot \left[\dfrac{d}{dx}(x)\cdot y+x\cdot \dfrac{dy}{dx}\right]=3+0}\\\\\\
\mathsf{-\,sin(xy)\cdot \left[1\cdot y+x\cdot \dfrac{dy}{dx}\right]=3}\\\\\\
\mathsf{-\,sin(xy)\cdot \left[y+x\cdot \dfrac{dy}{dx}\right]=3}

   

Now, multiply out the terms to get rid of the brackets at the left-hand
                                       dy
side, and then isolate  —— :
                                       dx

\mathsf{-\,sin(xy)\cdot y-sin(xy)\cdot x\cdot \dfrac{dy}{dx}=3}\\\\\\
\mathsf{-\,y\,sin(xy)-x\,sin(xy)\cdot \dfrac{dy}{dx}=3}\\\\\\
\mathsf{-\;x\,sin(xy)\cdot \dfrac{dy}{dx}=3+y\,sin(xy)}\\\\\\\\
\therefore~~\mathsf{\dfrac{dy}{dx}=\dfrac{3+y\,sin(xy)}{-\;x\,sin(xy)}\qquad\quad for~~x\,sin(xy)\ne 0\qquad\quad\checkmark}


and there it is.


I hope this helps. =)


Tags:  <span><em>implicit function derivative implicit differentiation chain product rule differential integral calculus</em>
</span>
4 0
4 years ago
Factor the trinomial below 24x^2-49x-40​
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Answer:

all work is shown and pictured

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The least common multiple of 20, 24, and 45 is _____.<br> A. 30<br> B. 180<br> C. 360<br> D. 21,600
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Step-by-step explanation:

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