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kykrilka [37]
3 years ago
4

Based on the information provided in the graph, for which of the following situations could you expect to have the greatest incr

ease in salary? A graph titled Median Annual Household Income by Educational Attainment of Householder, 1997. Professional degree, 92,228 dollars; doctorate degree, 87,232 dollars; master's degree, 68,115 dollars; Bachelor's degree or more, 63,292 dollars; Bachelor's degree, 59,048 dollars; associate degree, 45,258 dollars; some college, no degree, 40,015 dollars; high school graduate, 33,779 dollars; ninth to twelfth grade, 19,851 dollars; than twelfth grade, 15,541 dollars. a. Having a high school diploma and going to college for a year. b. Having an associate’s degree and getting a bachelor’s degree. c. Having a bachelors degree and getting a master’s degree. d. Having a master’s degree and getting a doctorate degree. Please select the best answer from the choices provided A B C D
Mathematics
1 answer:
forsale [732]3 years ago
8 0

Answer:

d.  Having a master’s degree and getting a doctorate degree.

   

Step-by-step explanation:

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A grain silo is approximately 85% full. A 55 lb sack of grain measures 2 cubic feet.
erastova [34]

Answer:

Option A . 1708 bags

Step-by-step explanation:

The picture of the question in the attached figure

step 1

Find the volume of the silo

The volume of the silo is equal to the volume of a cylinder plus the volume of a cone

so

V=\pi r^{2}h_1+\frac{1}{3}\pi r^{2}h_2

we have

\pi =3.14

r=16/2=8\ ft ---> the radius is half the diameter

h_1=16\ ft

h_2=12\ ft

substitute

V=(3.14)(8)^{2}(16)+\frac{1}{3}(3.14)(8)^{2}(12)

V=3,215.36+803.84=4,019.2\ ft^3

Remember that

The silo is approximately 85% full

so

The volume of grain in the silo is

0.85(4,019.2)=3,416.32\ ft^3

step 2

Find the number of bags of grain

Divide the volume of grain in the silo by the volume of one sack

3,416.32/2=1,708\ bags

7 0
4 years ago
What is the rule for rotating 90° counterclockwise?
Vladimir79 [104]

Answer:

When we rotate a figure of 90 degrees counterclockwise, each point of the given figure has to be changed from (x, y) to (-y, x) and graph the rotated figure. Example 1 : Let F (-4, -2), G (-2, -2) and H (-3, 1) be the three vertices of a triangle.

Step-by-step explanation:

Hi There?

Hope This Help?

PLease Mark Mr Brainly !

6 0
3 years ago
If X + 50% of x = 99 what is X?
anastassius [24]

Answer:

x= 66

Step-by-step explanation:

if you set up the equation mathematically, it would be x+0.5x=99, because 50% is essentially just 0.5.

so, now that you have the equation, you have to add like terms, so it would be 1x+0.5x=99, and 1+0.5 is 1.5, so youre left with the equation 1.5x=99.

from there, you solve for x by dividing each side by 1.5:

1.5x=99

/1.5   /1.5

x=66

im sorry if this didnt make much sense, but i hope this helped!! :D

8 0
3 years ago
PLEASE ANSWER ASAP WILL GOVE BRAINLYIEST
kirza4 [7]

Answer:

Proved that GB ≅ AH.

Step-by-step explanation:

See the attached diagram.

Statement 1: ∠ GBH ≅ ∠ AHB  

Reason 1: This is given.

Statement 2: ∠ GHB ≅ ∠ ABH

Reason 2: This is also given.

Statement 3: BH ≅ HB.

Reason 3: From the diagram. Reflexive property of congruence.

Statement 4: Δ GBH ≅ Δ AHB

Reason 4: By Angle-Side-Angle or ASA criteria of congruency.

Statement 5: GB ≅ AH  

Reason 5: Corresponding sides of two congruent triangles. (Proved)

5 0
3 years ago
HELP ASAP<br> photo attached
ankoles [38]

Answer:

D. undefined

General Formulas and Concepts:

<u>Calculus</u>

Derivatives

Derivative Notation

Derivative of a constant is 0

Basic Power Rule:

  • f(x) = cxⁿ
  • f’(x) = c·nxⁿ⁻¹

Derivative Rule [Chain Rule]:                                                                                 \displaystyle \frac{d}{dx}[f(g(x))] =f'(g(x)) \cdot g'(x)

Trig Derivative:                                                                                                       \displaystyle \frac{d}{dx}[sinu] = u'cosu

Derivatives of Parametrics:                                                                                   \displaystyle \frac{dy}{dx} = \frac{\frac{dy}{dt}}{\frac{dx}{dt}}

Step-by-step explanation:

<u>Step 1: Define</u>

\displaystyle \frac{dx}{dt} = 5

\displaystyle \frac{dy}{dt} = sin(t^2)

<u>Step 2: Differentiate</u>

  1. [x Derivative] Basic Power Rule:                                                                   \displaystyle \frac{d^2x}{dt^2} = 0
  2. [y Derivative] Trig Derivative [Chain Rule]:                                                 \displaystyle \frac{d^2y}{dt^2} = cos(t^2) \cdot \frac{d}{dt}[t^2]
  3. [y Derivative] Basic Power Rule:                                                                   \displaystyle \frac{d^2y}{dt^2} = cos(t^2) \cdot 2t^{2 - 1}
  4. [y Derivative] Simplify:                                                                                   \displaystyle \frac{d^2y}{dt^2} = 2tcos(t^2)
  5. [Derivative] Rewrite:                                                                                     \displaystyle \frac{d^2y}{dx^2} = \frac{2tcos(t^2)}{0}

Anything divided by 0 is undefined.

Topic: AP Calculus BC (Calculus I/II)

Unit: Differentiation with Parametrics

Book: College Calculus 10e

5 0
3 years ago
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