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harina [27]
2 years ago
7

Which quotation from the text best summarizes the characteristics that a main character in a tragedy should possess?.

SAT
1 answer:
Marat540 [252]2 years ago
8 0

There are different kinds of quotes. The quotation from the text that best summarizes the characteristics that a main character in a tragedy  should possess is;

  • A man who is not eminently good and just, yet  whose misfortune is brought about not by vice or depravity, but by some error of judgement or frailty.

<h3>What are the character of tragedy according to Aristotle?</h3>

Aristotle is known to be the one who talked about the tragedy based on seven characteristics. such as:

  • It is mimetic
  • It is serious
  • It talks  about a full story of an specific length, etc.

He is of the notion that a good tragedy must bring out the feelings of fear and pity in the heart of the  audience.

See full question below

Which quotation from the text best summarizes the

characteristics that a main character in a tragedy

should possess?

O A "a bad man passing from adversity to prosperity"

OB "a man who is not eminently good and just, yet

whose misfortune is brought about not by vice or

depravity, but by some error of judgement or frailty"

OC "Like the Odyssey, it has a double thread of plot, and

also an oppnşite catastrophe for the good and for

the bad"

OD "quit the stage as friends at the close, and no one

slays or is slain."

learn more about this quotation from

brainly.com/question/25232783

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Builder products, incorporated, uses the weighted-average method in its process costing system. It manufactures a caulking compo
Alla [95]

The total equivalent units in the weighted-average method used will be 316800 and 304200 respectively.

<h3>What is weighted-average method?</h3>

The weighted-average method simply uses the weighted average to determine the cost of goods sold.

From the complete question, the total equivalent units for material cost will be:

= $300000 + $16800

= $316800

The total equivalent units for conversion will be:

= $300000 + $4200

= $304200

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6 0
2 years ago
Why might it be adaptive for stomata to occur mostly (if not entirely) on the undersides of leaves?
adoni [48]

Answer:

because they will recieve less sunlight therefore water will be losed at a slower rate,water does not evaporate as quickly, which allows for transpiration to occur.

Explanation:

(✷‿✷)

6 0
3 years ago
Which one of the following chemical equations does not correspond to a standard molar enthalpy of formation?.
o-na [289]

There are different kinds of theory. The chemical equation that does not correspond to a standard molar enthalpy of formation is c. N₂(g) + O₂(g) ⇒ 2 NO(g).

<h3>What is standard enthalpy of formation ?</h3>

The standard enthalpy of formation of any element  is known to often occur in the standard state that is zero  of that element.

For example, even though oxygen can be found as ozone (O3), O2 is the known to be the most stable form.

Learn more about standard enthalpy of formation from

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3 0
3 years ago
An ellipse is represented by the equation . each directrix of this ellipse is a ________________________ from the center on the
Anastasy [175]

The true statement about the directrix is that each directrix of this ellipse is 31.25 units from the center on the major axis.

<h3>How to determine the distance of the directrix?</h3>

The equation of the ellipse is given as:

\frac{(x - 5)^2}{625} -\frac{(y - 4)^2}{225} =1

The above means that:

a^2 = 625

a = 25

b^2 = 225

b = 15

Calculate c using:

c^2 = a^2 - b^2

This gives

c^2 = 625 - 225

Evaluate the difference

c^2 = 400

Evaluate the square root

c = 20

The equation of the directrix is

x - x₀ = ± a²/c

So, we have:

x - x₀ = ± 625/20

Evaluate the quotient

x - x₀ = ± 31.25

This means that, each directrix is 31.25 units from the center on the major axis.

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brainly.com/question/26109874

7 0
2 years ago
X + y = 12 x - y = 10 what is the value of the x-determinant for the system shown?.
oee [108]
X + y = 12 x - y = 10, the value of the x-determinant for the system shown is -2. Solution: determinant = (1*-1) - (1*1) = -2.
7 0
3 years ago
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