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Flauer [41]
4 years ago
5

1.4 + 3.5 = A. 17.20 B. 4.9 C. 1 D. 7.10

Mathematics
2 answers:
iogann1982 [59]4 years ago
4 0

1.4 + 3.5

Add the terms

4.9

Hope this helps! :)

lana66690 [7]4 years ago
3 0

Answer:

it is b

Step-by-step explanation:

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Lin and Priya were working on solving this system of equations.
garri49 [273]

Answer:

we can conclude two things that:

  1. If we multiple the two sides of any given equation by the same factor, we would get an equivalent equation, which will have the same solution as the original solution.
  2. Either person's move will work. Lin's move eliminated the x variable, while Priya's eliminated y variable, but in the end the solution was same.

Step-by-step explanation:

<em>Why either move creates a new equation with the same solutions as the original equation?</em>

If we multiple the two sides of any given equation by the same factor, we would get an equivalent equation, which will have the same solution as the original solution.

When we multiple the two sides of any given equation by the same number, it would keep the two sides of that particular equation equal. So, whatever the  the solution the first equation may get, will still work for the second equation.

<em>Determining Lin's first move i.e. to multiply the first equation by 3.</em>

Let us consider the equation

x/3 + 2y = 4      .....[1]

x + y = -3           .....[2]

Lin's first move is to multiply the first equation by 3.

3(x/3 + 2y) = 3(4 )

x + 6y = 12         .....[3]

Now subtract the Equation [2] from Equation [3]

x + 6y - x - y = 12 - (-3)

5y = 15

y = 3

Putting y = 3 in [2]

x + (3) = -3

x = -6

So, x = -6 and y = 3

<em>Determining Priya's first move i.e. to multiply the Second equation by 2.</em>

Let us consider the equation

x/3 + 2y = 4      .....[1]

x + y = -3           .....[2]

Priya's first move is to multiply the second equation by 2.

2(x + y) = 2(-3)          

2x + 2y = -6           .....[3]

Now subtract the Equation [2] from [1]

x/3 + 2y - 2x - 2y= 4 - (-6)

x/3 - 2x = 10

x - 6x = 30

x = -6

Putting x = -6 in Equation [2]

x + y = -3

-6 + y = -3

y = 3

So, x = -6 and y = 3

So, from the entire analysis, we can conclude two things that:

  1. If we multiple the two sides of any given equation by the same factor, we would get an equivalent equation, which will have the same solution as the original solution.
  2. Either person's move will work. Lin's move eliminated the x variable, while Priya's eliminated y variable, but in the end the solution was same.

<em>Keywords: system of equation, solution, equation</em>

<em> Learn more about system of equation from brainly.com/question/12148898</em>

<em>#learnwithBrainly</em>

4 0
3 years ago
For construction of a unique quadrilateral at least _____measurements are required.
strojnjashka [21]

Answer:

Five

Step-by-step explanation:

As we know that quadrilateral contains 10 elements that involves 4 sides, 4 angles, and 2 diagonals. It cannot be drawn by four elements at least it required minimum 5 elements.

So as per the given statement, it is required to construct a unique quadrilateral for minimum 5 elements measurements

Hence, the same is to be considered

5 0
3 years ago
3 + x &lt; 7 possible sloution for this
krok68 [10]

Answer: x<4

Step-by-step explanation:

Step 1: Simplify both sides of the inequality.

x+3<7

Step 2: Subtract 3 from both sides.

x+3−3<7−3

x<4

8 0
3 years ago
Please help me out with this
Naddik [55]

Answer:

(x - 5)² + (y + 3)² = 16

Step-by-step explanation:

The equation of a circle in standard form is

(x - h)² + (y - k)² = r²

where (h, k) are the coordinates of the centre and r is the radius

here (h, k) = (5, - 3) and r = 4, so

(x - 5)² + (y - (- 3))² = 4², that is

(x - 5)² + (y + 3)² = 16

3 0
3 years ago
4. The graph of h(x) = x^2 was transformed to create the graph of k(x) = -4x^2? Which of these describes the transformation from
Viefleur [7K]

Answer:

A. A reflection over the x-axis and a vertical stretch.

Step-by-step explanation:

Let h(x) = x^{2}, to obtain k(x) = -4\cdot x^{2}, we need to use the following two operations:

(i) Vertical stretch

g(x) = k\cdot f(x), k\in \mathbb{R}^{+}

(ii) Reflection over the x-axis

g(x) = -f(x)

Let prove both transformations in h(x):

Step 1 - Vertical stretch (k = 4)

h'(x) = 4\cdot x^{2}

Step 2 - Reflection over the x-axis

k(x) = -4\cdot x^{2}

Hence, correct answer is A.

5 0
3 years ago
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