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Irina-Kira [14]
3 years ago
12

What do you believe Beauty is in one word?

Advanced Placement (AP)
2 answers:
Kobotan [32]3 years ago
7 0
Tommylee
----------------------------
barxatty [35]3 years ago
6 0
In one word beauty is love. Love is something that can stem into so many other beautiful things.
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Shania watches a video online about how to swaddle a baby, a technique used to wrap a baby’s body in a large cloth. She swaddles
TEA [102]

Answer:

I believe the answer is pupa

4 0
2 years ago
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(03.04 MC)
horrorfan [7]
Heart rate is controlled by the two branches of the autonomic (involuntary) nervous system. It also controls blood pressure and the rate of breathing.
7 0
3 years ago
Which table shows a function that is decreasing only over the interval (–1, ∞)?
Natasha2012 [34]

Answer: The table to the farthest right.

Explanation:

The interval (-1, ∞) represents x-values anywhere from -1 and higher.  

As such, you are looking for a table with y-values that decrease as the x-values increase.

Starting from -1 -

The first option: -5, -2, -1, 2. This is increasing.

The second option: -7, -6, 1, -1. This increases from -7 to -6 to 1.

The third option: -1, 2, 1, -6. This increases from -1 to 2.

The fourth option: 1, 0, -4, -8. This decreases across all coordinates in the range specified.

5 0
3 years ago
Read 2 more answers
Integral of tan(x)*ln(cos(x))
Viktor [21]

Answer:

\int {tan(x)*ln(cos(x))} \, dx = -\frac{ln^2cos(x)}{2} + c

Explanation:

Given

tan(x)*ln(cos(x))

Required

Integrate

This is represented as:

\int {tan(x)*ln(cos(x))} \, dx

Let

u =- ln(cos(x))

So that:

\frac{du}{dx} = \frac{sin(x)}{cos(x)}

Make dx the subject

dx = \frac{cos(x)}{sin(x)}du

\int {tan(x)*ln(cos(x))} \, dx becomes

\int {-u *tan(x)*\frac{cos(x)}{sin(x)}du

Express tan x as sin x/ cos x

\int {-u *\frac{sin(x)}{cos(x)}*\frac{cos(x)}{sin(x)}du

\int {-u du

-\int {u du

Apply power rule

-\frac{u^{1+1}}{1+1} + c

-\frac{u^{2}}{2} + c

Substitute u =- ln(cos(x))

-\frac{ln^2cos(x)}{2} + c

Hence:

\int {tan(x)*ln(cos(x))} \, dx = -\frac{ln^2cos(x)}{2} + c

5 0
2 years ago
How is the linear perspective in Detail from a Mural in Cubiculum M indicative of the Second Style of Roman painting?
Vesnalui [34]

Answer:

It creates the illusion of depth.

Explanation:

The linear perspective in Detail from a Mural in Cubiculum M indicative of the Second Style of Roman painting was that it helped in the creation of an illusion of depth.

This was achieved by an increasingly blurred appearance of objects in the distance.

3 0
3 years ago
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