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sineoko [7]
3 years ago
11

The triangle below is rotated 180 degrees clockwise about the origin and reflected over the x- axis. What is the relationship be

tween the measure of angle k In the original triangle and the measure of the corresponding angle k' in the transformed triangle?
Mathematics
1 answer:
ikadub [295]3 years ago
8 0

Answer:

The measure of angle k In the original triangle and the measure of the corresponding angle k' in the transformed triangle would be equal

Step-by-step explanation:

Transformation is the movement of a point from its initial location to a new location. If a shape is transformed, then all its points are also transformed. Types of transformation are rotation, reflection, translation and dilation.

Rigid transformations are transformations that preserves both length and angle, examples are translation, rotation and reflection. Dilation does not preserve length, hence it is not a rigid transformation.

The measure of angle k In the original triangle and the measure of the corresponding angle k' in the transformed triangle would be the same because reflection and rotation are rigid transformation that preserves length and angle of a shape

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When simplified, (2x + 3)(7x – 1) + (2x – 4) is:
Ray Of Light [21]

Answer:   B


Step-by-step explanation:


8 0
3 years ago
Chlorofluorocarbons (CFCs) were used as propellants in spray cans until their buildup in the atmosphere started destroying the o
melamori03 [73]

Answer:

a) C(2000)=1915

C(2014)=1915

b) C'(2000)=-\frac{275}{14}

C'(2014)=-\frac{275}{14}

c) C(t)=-\frac{275}{14}t+\frac{288405}{7}

d) t=2021

e) too early

Step-by-step explanation:

a)

Since C(t) is the concentration of CFCs in ppt in year t, all we need to do to solve this part is determine what the concentration of CFCs is in years 2000 and 2014. Luckily for us, the problem already gives us those values, so:

C(2000)=1915    concentration in year 2000

C(2014)=1915      concentration in year 2014

b)

By definition, the derivative of a function at a given point is interpreted as the slope of the tangent line to the point of interest, so in order to find this answer, we need to find the slope of the line. Since the problem specifies that the behavior is linear, this means that the slope will always be the same no matter the year, so we get:

m=C'(t)=\frac{C'(t_{2})-C'(t_{1})}{t_2-t_1}

so:

C'(t)=\frac{1640-1915}{2014-2000}=-\frac{275}{14}\approx -19.64

therefore:

C'(2000)=-\frac{275}{14}

C'(2014)=-\frac{275}{14}

c)

Since the behavior is linear, we can calculate it with the point-slope form of the line which is:

y-y_{1}=m(x-x_{1})

in this case:

C(t)-C(t_1)=C'(t)(t-t_{1})

so we get:

C(t)-1915=-\frac{275}{14}(t-2000)

and we can now solve for C(t) so we get:

C(t)=-\frac{275}{14}t+\frac{275000}{t}+1915

for a final answer of:

C(t)=-\frac{275}{14}t+\frac{288405}{7}

d)

So next we solve the equation for C(t)=1500 so we get:

1500=-\frac{275}{14}t+\frac{288405}{7}

1500-\frac{288405}{7}=-\frac{275}{14}t

-\frac{277905}{7}=-\frac{275}{14}t

t=2021 \frac{7}{55}

so we will reach that concentration level at the year 2021 approximately.

e)

Since the second derivative of the concentration function is greater than zero, this means that the original function might be a function in the form: .

This means that the decrease of the concentration levels is slower than that of a linear equation. So the projected date will be too early than the real date.

8 0
3 years ago
Idk how to do this 4x+y=1
ivolga24 [154]
4x+y=1
4x+y-1=1-1
4x+y-1=0
6 0
3 years ago
I really need you guy's help. Need this in about 20 minutes max. PLEASE HELP MEEE!
finlep [7]
It should be 620
because the fee is $50, if you subtract that from one hour of work you get 95 that is how much it is per hour. You multiply 95 by 6 to get how much it would cost for the hours of work and then add the $50 back on for the initial fee
7 0
4 years ago
Mr. drew rides his motorcycle with a constant speed of 72 mi/hr. How far can he travel in 2 ½ hours?
babymother [125]

Answer:

180

Step-by-step explanation:

take 72+72 +36  to get your answer .

5 0
3 years ago
Read 2 more answers
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