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lora16 [44]
3 years ago
9

What is a simpler form of (3x+1)(x+4) ?

Mathematics
2 answers:
SVEN [57.7K]3 years ago
7 0

Answer:

That is the simplest form.

Step-by-step explanation:

3x^2+13x+4 = (3x+1)(x+4)

Ghella [55]3 years ago
4 0

Answer:

The equation is already simplified!

Step-by-step explanation:

credits to the user jlinnartz for pointing out my mistake! kudos to the explanation above!!! :)

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heba ate 1/12 of a box of cereal now the box is 3/4 full what fraction of a full box was there before heba ate it
abruzzese [7]

Now box is 3/4 full


3/4 = 3/4*1


3/4 = 3/4 * 3/3 = 9/12


Box is 9/12 full after heba ate 1/12 of a box of cereal


Initial fraction will be 9/12+1/12


=10/12= 5/6

7 0
4 years ago
Read 2 more answers
HELP PLEASE, 10 points
hjlf

Answer:

Step-by-step explanation:

d = 16 cm

r =16/2= 8 cm

Total surface area = 3πr² cubic units

= 3 * 3.14 * 8 * 8

= 602.88

= 603 cm²

8 0
4 years ago
S $1,595 deposit for 10 years at a simple interest rate of 8%
o-na [289]

Answer:

$2,871.00

Step-by-step explanation:

Calculation:

First, converting R percent to r a decimal

r = R/100 = 8%/100 = 0.08 per year.

Solving our equation:

A = 1595(1 + (0.08 × 10)) = 2871

A = $2,871.00

The total amount accrued, principal plus interest, from simple interest on a principal of $1,595.00 at a rate of 8% per year for 10 years is $2,871.00.

6 0
3 years ago
A tank contains 2 m^3 of water and 20 g of salt. Water containing a salt concentration of 2 g of salt per m^3 of water flows int
notka56 [123]

Answer:

Option E is correct.

t = In 8

Step-by-step explanation:

First of, we take the overall balance for the system,

Let V = volume of solution in the tank at any time = 2 m³ (constant)

Rate of flow into the tank = Fᵢ = 2 m³/min

Rate of flow out of the tank = F = 2 m³/min

Component balance for the concentration.

Let the initial amount of salt in the tank be Q₀ = 20g

The rate of flow of salt coming into the tank be 2 g/m³ × 2 m³/min = 4 g/min

Amount of salt in the tank, at any time = Q

Rate of flow of salt out of the tank = (Q × 2 m³/min)/V = (2Q/V) g/min

But V = 2 m³

Rate of flow of salt out of the tank = Q g/min

The balance,

Rate of Change of the amount of salt in the tank = (rate of flow of salt into the tank) - (rate of flow of salt out of the tank)

(dQ/dt) = 4 - Q

dQ/(Q - 4) = - dt

∫ dQ/(Q - 4) = ∫ - dt

Integrating the left hand side from Q₀ to Q and the right hand side from 0 to t

In [(Q - 4)/(Q₀ - 4)] = - t

In (Q - 4) - In (Q₀ - 4) = - t

In (Q - 4) = In (Q₀ - 4) - t

Q₀ = 20

In (Q - 4) = (In (16)) - t

In (Q - 4) = 2.773 - t

(Q - 4) = e⁽²•⁷⁷³ ⁻ ᵗ⁾

Q(t) = 4 + e⁽²•⁷⁷³ ⁻ ᵗ⁾

For Q to go less than or equal to 6g, we calculate the time it takes to get to 6 g of salt in the tank

In (Q - 4) = (In (16)) - t

t = In 16 - In (Q - 4)

t = In 16 - In (6 - 4)

t = In 16 - In (2)

t = In (16/2)

t = In 8

6 0
4 years ago
Each small square on the tile table is the same size. The length of a side of a small square is 2 inches . What is the area of t
Katen [24]
2Ɩ • 2w = Ain^2
Ɩ (length) and w (width) represent the number of tiles on each side
Because each tile is 2in, the number of tiles needs to be multiplied by 2

After multiplying the amount of tiles on each side by 2, you must multiply the products

Since the answer is area, you’ll need to write your answer as a square with the proper unit of measurement (inches)

Ain^2


Please mark brainliest
4 0
3 years ago
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