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Nat2105 [25]
2 years ago
9

Which title best completes the organizational chart of Maryland government

Mathematics
1 answer:
Misha Larkins [42]2 years ago
7 0

A title which best completes the organizational chart of Maryland government is: A. Voters of Maryland Legislative branch.

<h3>What is an organizational structure?</h3>

An organizational structure can be defined as a strategic process that involves the division of a business firm or an organization into multiple functional units.

<h3>What is an organizational chart?</h3>

An organizational chart is also referred to as an organogram and it can be defined as a diagram that is used to graphically represent the hierarchical structure of a business firm or an organization and the relationships of all the jobs or positions within it.

<h3>The types of an organizational chart.</h3>

In Business management, there are four (4) main types of organizational chart and these include the following:

  • Functional top-down chart
  • Flat chart
  • Divisional chart
  • Matrix chart

In this scenario, we can infer and logically deduce that a title which best completes the organizational chart of Maryland government is "Voters of Maryland Legislative branch."

Read more on organizational chart here: brainly.com/question/1078082

#SPJ1

Complete Question:

Which title best completes the organizational chart of Maryland government?

A. Voters of Maryland Legislative branch

B. Voters of Maryland Judicial branch

C. Voters of Maryland Judges branch

D. Voters of Maryland Courts branch

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<h2>Answer:    g(f(2))  = 11</h2>

Step-by-step explanation:

g(f(2)) is substituting the value of f(2) for x in g(x). But we must first find f(2).

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Since f(3) = 24

  ⇒ a(3²) - 12 = 24

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∴ f(2) = (4)(2²) - 12

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⇒ g(f(2)) = 2(4) + 3

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2 years ago
An arched drainage culvert can be modelled by the function:
Zanzabum

Substitute 136.5 for y.

136.5=\frac{x(191-x)}{60}

8190=x(191-x)

8190=191x-x^{2}

x^{2} -191x+8190=0

Compare this equation with ax^{2} +bx+c=0

a = 1, b = - 191, c = 8190

x=\frac{-b+\sqrt{b^{2}-4ac } }{2} or

x=\frac{-b-\sqrt{b^{2}-4ac } }{2}

x=\frac{191+\sqrt{191^{2}-4(1)(8190) } }{2} or

x=\frac{191-\sqrt{191^{2}-4(1)(8190) } }{2}

x=\frac{191+\sqrt{36481-32760 } }{2} or

x=\frac{191-\sqrt{36481-32760 } }{2}

x=\frac{191+\sqrt{3721 } }{2} or

x=\frac{191-\sqrt{3721 } }{2}

x=\frac{191+61}{2} or

x=\frac{191-61}{2}

x=\frac{252}{2} or

x=\frac{130}{2}

x = 126 or x = 65

Hence, the points on the curve are (65, 136.5) and (126, 136.5).

The width of the air space is the distance between these points.

Width = \sqrt{(x_{2}- x_{1})^{2} +( y_{2}- y_{1}) ^{2}

= \sqrt{(126- 65)^{2} +(136.5-136.5) ^{2}

= 126 - 65

= 61

Hence, width of the air space is 61m.



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