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FromTheMoon [43]
3 years ago
5

Given: △ABC, D∈ AC m∠ABC=m∠BDA AB=2, AC=4 Find: AD and DC

Mathematics
2 answers:
Mademuasel [1]3 years ago
6 0

Answer:

AD = 1

DC = 3

Step-by-step explanation:

First, we know that ∠ABC = ∠BDA, because it is stated in the problem. We also know that ∠A = ∠A, because that angle is common in both angles. To better visualize this, there is a picture below. Therefore, ΔABC is similar to ΔBDA. We are also aware of the fact that AB = 2, and AC = 4. Therefore, the ratio of similitude is 1:2.

Since the two triangles are similar, side AB is proportionate to side AC, side AD is proportionate to side AB, and side BD is proportionate to side BC.

Using this fact and the ratio of similitude, we can write the following ratio:

AD:AB = 1:2

We can substitute 2 for AB in this ratio, and we find that AD = 1.

Since AD + DC = AC, and AC = 4, DC = 3.

Simora [160]3 years ago
5 0

Answer:

The value of AD=1 and DC=3

Step-by-step explanation:

Given: ΔABC, D∈ AC m∠ABC=m∠BDA,  AB=2, AC=4

Diagram: Please find attachment.

To find: AD=? and DC=?

Calculation:

In ΔABC and ΔADB

   ∠ABC=∠ADB          (Given)

        ∠A=∠A               (Common)

Therefore,  ΔABC ≈ ΔADB  by AA similarity

If two triangles are similar then ratio their corresponding sides are equal

Therefore,

\dfrac{AD}{AB}=\dfrac{AB}{AC}

where, AD=?, AB=2, AC=4

\dfrac{AD}{2}=\dfrac{2}{4}

AD=\dfrac{2\times 2}{4}=1

AD=1

AD+DC=AC

1+DC=4

DC=4-1

DC=3

Hence, The value of AD=1 and DC=3

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7 0
3 years ago
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A baseball is hit and its height is given by h = 29.4t – 4. 9t^2, where h is the
ioda

Answer:

44.1m

Step-by-step explanation:

we are given a quadratic function which represents the height and time of a baseball

\displaystyle h = 29.4t - 4.9 {t}^{2}

we want to figure out maximum height of

the baseball

since the given function is a quadratic function so we have a parabola

which means figuring out the maximum height is the same thing as figuring out the maximum y coordinate (vertex)

to do so we can use some special formulas

recall that,

\displaystyle \rm t= \frac{ - b}{  2a}

\displaystyle H_{\text{max}}=f(t)

notice that, our given function is not in standard form i.e

\displaystyle f(x) = a {x}^{2}  + bx + c

let's make it so

\displaystyle h =  - 4.9 {t}^{2}  + 29.4t

therefore we got

our <em>a</em> is -4.9 and <em>b </em>is 29.4

so substitute:

\displaystyle\rm t=  \frac{ -( 29.4)}{  2 \cdot - 4.9}

remove parentheses and change its sign:

\displaystyle\rm t=  \frac{ -29.4}{  2 \cdot - 4.9}

simplify multiplication:

\displaystyle\rm t=  \frac{ -29.4}{  - 9.8}

simplify division:

\displaystyle  \: t  = 3

so we have figured out the time when the baseball will reach the maximum height

now we have to figure out the height

to do so

substitute the got value of time to our given function

\displaystyle H_{\text{max}}=29.4\cdot 3-4.9\cdot {3}^2

simplify square:

\displaystyle H_{\text{max}}=29.4\cdot 3-4.9\cdot 9

simplify mutilation:

\displaystyle H_{\text{max}}=88.2-44.1

simplify substraction:

\displaystyle H_{\text{max}}=44.1

hence,

the maximum height of the baseball is 44.1 metres

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Answer:

(x + 2) ^2 (x - 2) ^ 2 so A is the answer.

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