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Korolek [52]
3 years ago
15

Find the factors of these trinomials

Mathematics
1 answer:
Likurg_2 [28]3 years ago
8 0

Answer:

10: (2m+12)(2m+12)

11: (2r-12)(2r-12)

Step-by-step explanation:

4m^2+48m+144

all positive so factored also all positive

(2m+12)(2m+12)

4r^2-48r+144

middle value is negative but others are positive. this means two are negative

(2r-12)(2r-12)

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A restaurant sells 158 chicken finger plates. If each plate has 4 chicken fingers, how many total chicken fingers do they sell?
Sergio [31]

39.5 all you have to do is divide 158 and 4 which gives you 39.5

hoipe this helped

7 0
3 years ago
Expression 1
liberstina [14]
The answers to the questions

5 0
4 years ago
Plz help
Angelina_Jolie [31]

Answer:

Part A

The two equations are;

d = 3 m/s × t for Boat A

d = 4.8 m/s × (t - 6 s) for Boat B

Part B

The solution to the system of equation are

t = 16 s and d = 48 m

Part C: The possible values of 't' for Boat A are 0 ≤ t ≤ ∞

The possible values of 't' for Boat B are 6 ≤ t ≤ ∞

Boat B timing starts when Boat B crosses the start line when t = 6 seconds

The solution of the system of equation indicates that Boat B and Boat A arrive at the same point, 'd' 48 meters from the start, 16 seconds from the time Boat A crosses the stat line

Step-by-step explanation:

The given parameters are;

The speed of Boat A = 3 m/s

The speed of Boat B = 4.8 m/s

The time Boat B crosses the start line = 6 seconds after Boat A crosses the start line

Part A

The two equations are;

For Boat A

d = 3 m/s × t...(1)

For Boat B

d = 4.8 m/s × (t - 6 s)...(2)

Where;

t = The time in seconds since Boat A crossed the start line

d = The distance traveled by the boat in meters

Part B

The system of equations from Part A is solved as follows;

d = 3 m/s × t and d = 4.8 m/s × (t - 6 s)

At the (common) solution point to the system of equation, we have;

d = 3 m/s × t, d = 4.8 m/s × (t - 6 s)

∴ 3 m/s × t = 4.8 m/s × (t - 6 s)

3·t m/s  = 4.8·t m/s - 28.8 m

3·t m/s + 28.8 m = 4.8·t m/s

4.8·t m/s = 3·t m/s + 28.8 m; By transitive property of equality

4.8·t m/s - 3·t m/s = 28.8 m

1.8·t m/s = 28.8 m

t = 28.8 m/(1.8 m/s) = 16 s

t = 16 s.

d = 3 m/s × t = 3 m/s × 16 s = 48 m

d = 48 m

The solution of the system of equation is t = 16 s, d = 48 m

Part C: The possible values of 't' for Boat A are 0 ≤ t ≤ ∞

The possible values of 't' for Boat B are 6 ≤ t ≤ ∞

The timing variable, 't' for the equations of Boat A and Boat B is with reference to the time which Boat A crosses the start line, which is 6 seconds before Boat B, therefore, Boat B crosses the start line when t = 6 seconds

The solution of the system of equation represents that Boat B reaches Boat A at a point 48 meters from the start, 16 seconds from the time Boat A crosses the stat line.

4 0
3 years ago
Can someone plz help
GREYUIT [131]

Answer:

-9.56

Step-by-step explanation:

5 0
3 years ago
Two planes start flying towards each other simultaneously from two different cities. The distance between the cities is 960 mile
Eddi Din [679]

Answer:

The speed of one plane =   257.5 miles per hour

And speed of second plane =  332.5 miles per hour

Step-by-step explanation:

We have given,

Distance between two cities = 960 miles

Two planes are flying towards each other.

Let the speed of one plane be x.

Then,

Speed of second plane = x+75     {Following this "one of the planes' speed exceeds the other by 75 mph"]

After 1.5 hours they are still 75 miles apart.

i.e Relative distance between two planes = Relative speed of plane × Time

Here

relative speed = x + (x+75) , and relative distance left to cover = 960-75.

i.e

(960 - 75) = {x+(x+75)}×1.5

885 = (2x+75)×1.5

or \frac{885}{1.5} =2x+75

or 590-75 = 2x

or 515 = 2x

or x = \frac{515}{2} = 257.5

Hence the speed of one plane = x =  257.5 miles per hour

And speed of second plane = (x+75) = 257.5 + 75 = 332.5 miles per hour

6 0
3 years ago
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