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Ivahew [28]
3 years ago
4

The model represents a polynomial and its factors. An algebra tile configuration. 4 tiles are in the Factor 1 spot: 1 is labeled

+ x and 3 are labeled negative. 2 tiles are in the Factor 2 spot: 1 is labeled + x and 1 is labeled negative. 8 tiles are in the Product spot: 1 is labeled + x squared, 4 are labeled negative x, and 3 are labeled +. Which equation is represented by the model? x2 – 2x – 3 = (x – 3)(x + 1) x2 – 4x + 3 = (x – 3)(x – 1) x2 + 2x + 3 = (x + 3)(x – 1) x2 + 4x – 3 = (x + 3)(x + 1)
Mathematics
2 answers:
lubasha [3.4K]3 years ago
8 0

Answer:

The correct answer on edge is actually B, I just took the quiz and c was wrong

Step-by-step explanation:

seraphim [82]3 years ago
3 0

Answer:

B.    x^2 – 4x + 3 = (x – 3)(x – 1)

Step-by-step explanation:

You might be interested in
3/7x+5=8<br><br> 1) 7 2/3<br> 2) 7<br> 3) -7
Aleks04 [339]
3/7 x+5=8
3/7 x=3
3x=21
x=7

The answer is (2)
5 0
3 years ago
From a carton containing 50kg of sugar 24 half-kilogram packets were taken . How many kilograms of sugar remained?
mart [117]
24 half-kg packets = 24 x 1/2 = 12kg

Sugar remained = 50 - 12 = 38 kg

Answer: 38 kg
3 0
3 years ago
(a) Show that the volume of a metal sphere of radius 15 cm is 14140 cm”, correct to 4 significant
Sladkaya [172]

Answer:

a) The volume of the sphere is approximately 14,137.16694 which is 14,140 cm³ correct to 4 significant figures

b) The volume of water required to fill the tank is approximately 103,670 cm³

Step-by-step explanation:

a) In the question, the radius of the sphere, r = 15 cm

The formula for the volume, 'V', of a sphere is given as follows;

V = \dfrac{4}{3} \times \pi \times r^3

Where;

r = The radius of the the sphere

V = The volume of the sphere

Plugging in the value for the radius, 'r', of the sphere, in the equation for, 'V', we get;

V = \dfrac{4}{3} \times \pi \times 15^3 \approx = 14,137.16694

Therefore;

The volume of the sphere to 4 significant figures is V ≈ 14,140 cm³

b) The parameters of the cylindrical tank are;

The height of the cylindrical tank, h = 60 cm

The radius of the cylindrical tank, r = 25 cm

The volume of a cylinder, V = π·r²·h

∴ The volume of the cylindrical tank without water, 'V_t', is given as follows;

V_t = π × (25 cm)² × 60 cm ≈ 117809.72451 cm³

The volume of water, V_{water}, required to fill the tank with the sphere of volume 'V' placed inside is given as follows

V_t = V + V_{water}

∴ V_{water} = V_t - V

From which we get;

V_{water} ≈ 117809.72451 cm³ - 14,140 cm³ = 103,669.72451 cm³ ≈ 103,670 cm³

The volume of water required to fill the tank, V_{water} ≈ 103,670 cm³.

8 0
3 years ago
Solve for h. 2h divided by 15 = 20 *
zvonat [6]
H is 2.5 because 2.5 x 2 is 5 and then you do 5 + 15 and you get 20
5 0
3 years ago
Read 2 more answers
Given that
elena-s [515]

You didn't write the questions you need to be solved with the information you gave.

The problem is under SET, and I will explain the topic, using the information you gave.

SET

A Set is any well-defined collection of objects. These objects could be people’s names, their ages, hubbies, dislikes; etc

These objects must be related through the same rule.

For example:

- A group of possible outcomes of a dice roll;

- A group of possible outcomes of a coin toss;

- Set of all whole numbers;

- Set of all prime numbers;

- Set of all even numbers;

- Set of all odd numbers;

- A collection of students with a CGPA of 4.0.

And so on.

There should be a universal rule that defines law through which we collect or group objects.

For example, "a group of all the talented musicians" is not well-defined, as the musicians I refer to as "talented", might be different from yours, it will have different names inside it.

Conventions that are used here:

- Sets are usually denoted by a capital letter.

- The elements of the group are usually represented by small letters (unless specified separately.)

- If ‘a’ is an element of ‘A’, or if a “belongs to” A, it is written as a ϵ A.

- If b is not an element of Set A, b “does not belong to” A is written in the conventional notion by the use of the symbol Epsilon with a line across it) between them.

- Elements, entities, members, objects, all mean the same thing.

REPRESENTATION OF A SET

Representation of a set and its elements is done in the following two ways.

(1) ROSTER FORM

In this form, all the elements are enclosed within curly brackets {} and they are separated by commas (,).

The order in which the elements are listed in the Roster form for any Set is immaterial. For example, T = {v, w, x, y, z} is same as T = {z, y, x, w, v}.

The dots at the end of the last element of any Set represent its infinite form and indefinite nature. For example, group of odd natural numbers = {1, 3, 5, …}

Elements of a set in this form are generally not repeated. For example, the set of alphabets forming the word FOOD = {F, O, D}

More examples for Roster form of representation are:

A = {2, 4, 8, 16}

B = {3, 9, 27, 81, 243}

C = {1, 4, 9, 16, …, 100}

(2) SET BUILDER FORM

In this form, all the elements possess a single common property which is not featured by any other element outside the Set. For example, a group of consonants in English alphabetical series.

The representation is done as follows.

Let C be the collection of all English consonants, then – V = {x: x is a consonant in English alphabetical series.}.

Colon (:) is a mandatory symbol for this type of representation.

After the colon sign, we write the common characteristic property possessed by all the elements belonging to that Set and enclose it within curly brackets.

If the Set doesn’t follow a pattern, its Set builder form cannot be written.

More examples for Set builder form of representation for a Set:

M = {y: y is an integer and – 9 < y < 20}

P = {x: x is a whole number less than 7}

X = {n: n is a negative integer > -10}

And so on.

Operations on Sets using the Sets you gave.

Given that

U = {1 , 2 , 3 , ... , 18 , 19 , 20}

A = {4 , 5 , 7 , 8 , 15 , 19 , 20}

B = {1 , 2 , 3 , 4 , 5 , 6 , 8 , 9 , 10 , 13 , 15 , 16 , 18 , 19}

C = {1 , 3 , 5 , 7 , 9 , 10 , 11 , 15 , 18 , 20}

- UNIVERSAL SET is the Set U, in which every elements in SUBSETS A, B, and C are found.

- COMPLEMENT of the set A is the set of elements that are not found in A, but are U. It is written as

A' = {1, 2, 3, 6, 9, 10, 11, 12, 13, 14, 16, 17, 18}

- UNION of sets A and C is the set that contains every element in A and C. If an element appears in both A and C, we only write it once. It is written as

A U C = {1, 3, 4, 5, 7, 8, 9, 10, 11, 15, 18, 19, 20}

- INTERSECTION of sets A, B, and C is the set of elements that are common to A, B, and C. It is written as

A n B n C = {5, 15}

- EMPTY SET is a set that contains no element in it. It is written as Φ (Greek letter, phi), or {}, but not as {Φ}.

Example A n A' = {}

5 0
4 years ago
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