NP_WD19_EOM3-2_RachelParra_Report_2 (1)
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University of Houston, Downtown *
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Course
1305
Subject
Mechanical Engineering
Date
Dec 6, 2023
Type
docx
Pages
6
Uploaded by SuperHumanKangarooPerson555
Rachel Parra
SUBMISSION #2 | SCORE IS:
47
OUT OF
80
GE Ver 17.1.0-rc0000
1.
You work in the Financial Affairs office of Milton University and are completing the
final draft of the university's annual report.
Change the hyphenation option so the document hyphenates automatically.
8/8
Toggle automatic hyphenation.
2.
In the list after the "By the Numbers" heading, demote the paragraphs beginning
"About 90 percent…" and "For families with incomes…" by one level. Promote the
paragraph "Sustainability" by one level.
8/8
Demote a paragraph in a list.
Demote a paragraph in a list.
Promote a paragraph in a list.
3.
On page 2, in the blank paragraph in the "Financial Highlights" section, insert a
table with
3
columns and
4
rows, and then enter the data shown in Table 1.
7/8
Insert a table.
Enter text in table cell A1.
In the "Financial Highlights" table, cell A1 should contain the text "Item".
Enter text in table cell B1.
Enter text in table cell C1.
Enter text in table cell A2.
Enter text in table cell B2.
Enter text in table cell C2.
Enter text in table cell A3.
Enter text in table cell B3.
Enter text in table cell C3.
Enter text in table cell A4.
Enter text in table cell B4.
Enter text in table cell C4.
4.
Sort the table after the "Scholarship Campaign" heading in ascending order by
the "Contributor" column. Delete one of the duplicate "Friends" rows. In the blank
cell of the Amount column, insert a formula that sums the values above the cell,
and then resize column A (the "Contributor" column) to its best fit.
6/8
Sort a table.
Delete a row in a table.
Insert a formula in a table cell.
New Perspectives Word 2019 | Module 3: End of Module Project 2
Resize a table column.
In the "Scholarship Campaign" table, column A should be formatted to
its best fit.
5.
Align the text in the "Amount" cell (cell B1) using the Align Top Center option.
Align the dollar amounts in the "Amount" column (cells B2 to B6) using the Align
Top Right option.
4/8
Align text in a table column.
In the "Scholarship Campaign" table, cell B1 should be formatted using
the Align Top Center option.
Align text in a table column.
6.
In the table after the "New Scholarships" heading, insert a column to the right of
the "Annual Amount" column and enter the data shown in Table 2.
8/8
Insert a column in a table.
Enter text in table cell C1.
Enter text in table cell C2.
Enter text in table cell C6.
Enter text in table cell C7.
Enter text in table cell C8.
7.
Apply the List Table 4—Accent 1 table style to the "New Scholarships" table.
Remove the First Column table style option. Add a Right border to the
"Scholarship" and "Annual Amount" columns, and then change the color of the
borders to Blue-Gray, Accent 1.
6/8
Apply a table style.
Toggle table style options.
The "New Scholarships" table should be formatted with the First Column
table style option toggled off.
Add a border to table cells.
Change the color of a table border.
8.
On each line of the list after "Endowed Professorships" heading, set a
4.0"
left tab
stop with leader option 2 (the dotted leader). Press TAB to replace the space
between the word "Professorship" and the department name in the list.
0/8
Set a tab stop.
The paragraph "Thomas Kirsch Professorship Mechanical Engineering"
should be formatted using a 4.0" left tab stop with option 2 (dotted)
leaders.
Set a tab stop.
The paragraph "Dr. Barbara Hong Professorship Radiology" should be
formatted using a 4.0" left tab stop with option 2 (dotted) leaders.
Set a tab stop.
The paragraph "Grayson Family Professorship Literature" should be
formatted using a 4.0" left tab stop with option 2 (dotted) leaders.
Set a tab stop.
The paragraph "Michael and Latoya Feinman Professorship
Biotechnology" should be formatted using a 4.0" left tab stop with option
2 (dotted) leaders.
Set a tab stop.
The paragraph "Alan Nuccio Professorship European History" should be
formatted using a 4.0" left tab stop with option 2 (dotted) leaders.
Position text using a tab stop.
In the paragraph "Thomas Kirsch Professorship Mechanical Engineering",
the department name "Mechanical Engineering" should be positioned at
the tab stop using the TAB key.
Position text using a tab stop.
In the paragraph "Dr. Barbara Hong Professorship Radiology", the
department name "Radiology" should be positioned at the tab stop using
the TAB key.
Position text using a tab stop.
In the paragraph "Grayson Family Professorship Literature", the
department name "Literature" should be positioned at the tab stop using
the TAB key.
Position text using a tab stop.
In the paragraph "Michael and Latoya Feinman Professorship
Biotechnology", the department name "Biotechnology" should be
positioned at the tab stop using the TAB key.
Position text using a tab stop.
In the paragraph "Alan Nuccio Professorship European History", the
department name "European History" should be positioned at the tab
stop using the TAB key.
9.
Insert the Slice 1 header, apply the Different First Page option for the header, and
then close the Header & Footer Tools.
0/8
Insert a header.
The Slice 1 header should be inserted into the document.
Apply the Different First Page header option.
The Different First Page header option should be selected.
10
.
Insert a cover page using the built-in Slice (Dark) style. Use
Annual Report
to
replace the Document Title placeholder, and use
Milton University
to replace
the Document Subtitle placeholder.
0/8
Insert a cover page.
A Slice (Dark) cover page should be inserted into the document.
Enter text in the Document Title placeholder.
The Document Title placeholder was not found in the document.
Enter text in the Document Subtitle placeholder.
The Document Subtitle placeholder was not found in the document.
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Don't copy paste someone else answer if I get to know I'll report and downvote too do on your own and only handwritten with proper steps not that handwritten only
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Note: Round your final answer to 2 decimal places if it is not a whole number.
Note:-
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(a) Based on the information in Table 1, draw a complete AON precedence diagram to
illustrate the project AND calculate the duration of time to complete it.
**(You may draw by using excel software or PowerPoint software. Attach and paste the
answer-on-answer sheets)
Table 1: Project Activities
Activity
Immediate Predecessors
Duration
A
START
2 weeks
START
1 week
A
4 weeks
B
12 weeks
E
C
4 weeks
F
E
5 weeks
G
7 weeks
H
Е, G
9 weeks
I
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J
F, I
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K
J
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J
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M
H
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М, N
N
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For the air compressor shown in Figure below, the air enters from a large area and
exit from small one, explain why?
Instructions for answering this question: The answer to this questian is required as handwritten where you are
aiso required to add a Handwritten integrity Statement. Pieose follow the below steps:
1 Write on a blank poper your AUM student ID, full name, course code, section and date
2 Write the following integrity statement and sign:
"7 offirm that I have neither given nor received any help on this assessment and that personally compieted it
on my own."
3. Write your onswer to the obove question as required
4. Put your Original Civil ID card or AUM ID card on the poper
5 Toke o picture or scan, and uplood
Important note: if handwritten document is submitted without the integrity stotement including ID (Civil ID or
AUM ID), then the related handwritten question(s) will not be groded.
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Could you please fix my code it’s supposed to look like the graph that’s on the picture. But the lines do not cross eachother at the beginning. Could you make the lines look like the lines on the graph?
Use this code in MATLAB and fix it.
% Sample data for Diesel and Petrol cars
carPosition = linspace(1, 60, 50); % Assumed positions of cars
% Define your seed here
seed = 50;
rand('seed',seed); % Set the seed for reproducibility
% Assumed CO2 emissions for Diesel and Petrol
CO2Diesel = 25 + 5*cos(carPosition/60*2*pi) + randn(1, 50)*5; % Random data for Diesel
CO2Petrol = 20 + 5*sin(carPosition/60*2*pi) + randn(1, 50)*5; % Random data for Petrol
% Fit polynomial curves with a reduced degree of 2
pDiesel = polyfit(carPosition, CO2Diesel, 2);
pPetrol = polyfit(carPosition, CO2Petrol, 2);
% Generate points for best fit lines
fitDiesel = polyval(pDiesel, carPosition);
fitPetrol = polyval(pPetrol, carPosition);
% Plotting the data
figure;
hold on;
% Plot Diesel best fit line…
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At a hydraulic plant the propeller type turbine are rated at 48,000 HP at 82 rpm under a 14 meters head, the
diameter is 7 meters, for a geometrical similar turbine to develop 36,000 HP under a 11 meters head.
After resolving the percentage change in probable flow, determine the following:
What diameter, in meter, of the impeller to be used?
O 70.00
O 22.86
O 40.00
O 7.25
O 13.06
What is the speed, in RPM, should be used?
O 40.00
O…
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Keep the same colors the same graph, basically keep everything the same just make the line with a small curve just as shown on the picture
Keep everything the same just make the line less curvy please do not change the colors of the line and the circles do not change anything besides the curve of the line.
Use this code on MATLAB and fix it.
% Sample data for Diesel and Petrol cars
carPosition = linspace(1, 60, 50); % Assumed positions of cars
% Use the 'seed' function instead of 'rng'
seed = 50; % Define your seed here
rand('seed',seed);
% Assumed CO2 emissions for Diesel and Petrol
CO2Diesel = 25 + 5*cos(carPosition/60*2*pi) + randn(1, 50)*5; % Random data for Diesel
CO2Petrol = 20 + 5*sin(carPosition/60*2*pi) + randn(1, 50)*5; % Random data for Petrol
% Fit polynomial curves with a reduced degree of 2
pDiesel = polyfit(carPosition, CO2Diesel, 2);
pPetrol = polyfit(carPosition, CO2Petrol, 2);
% Generate points for best fit lines
fitDiesel = polyval(pDiesel, carPosition);…
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• 2. 1:.
I' 2: 1 : 3:1
• 4.I 5.1' 6.1'7
I'8: 1 9 ' 10.L· 11: 1 ' 12.'13 · L 14: 1· 15.1A L'17:1 18
PARTIAL DIFFERENTIAL EQUATIONS
PLEASE ANSWER ALL QUESTIONS
Consider the temperature distribution in a 2 x 1 rectangular plate as described in the figure below.
Show that the steady-state temperature distribution u (1, y) in the plate is given by
200
пя (1- у)
u (1, 3) = Esinh
:(1 +(-1)") sin -
sinh
n sinh
n=1
2
Calculate the steady-sate temperature at the centre of the plate.
Ice at 0°-
1
Ice at 0°
Ice at 0°
Boiling water at 100°
all
06:14 PM
2022-05-10
Page: 1 of 1
Words: 7
E EA E E E
100%…
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% Sample data for Diesel and Petrol cars
carPosition = linspace(1, 60, 50); % Assumed positions of cars
% Fix the random seed for reproducibility
rng(45);
% Assumed positions of cars
CO2Diesel = 25 + 5*cos(carPosition/60*2*pi) + randn(1, 50)*5; % Random data for Diesel
CO2Petrol = 20 + 5*sin(carPosition/60*2*pi) + randn(1, 50)*5; % Random data for Petrol
% Fit polynomial curves
pDiesel = polyfit(carPosition, CO2Diesel, 3);
pPetrol = polyfit(carPosition, CO2Petrol, 3);
% Generate points for best fit lines
fitDiesel = polyval(pDiesel, carPosition);
fitPetrol = polyval(pPetrol, carPosition);
% Plotting the data
figure;
hold on;…
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An air conditioning unit uses Freon (R-22) to adapt an office room at temperature 25 oC in the summer, if the temperature of the evaporator is 16 oC and of the condenser is 48 oC. The reciprocating compressor is single acting, number of cylinders are 2, the volumetric efficiency is 0.9, number of revolutions are 900 r.p.m. and L\D= 1.25. If the compressor consumes a power of 3 kW and its mechanical efficiency is 0.9. Find the following:
(A) Flow rate of the refrigerant per…
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Row indexing: Snow fall records
stateSnowRecord contains the amount of snow fall (in cm) for various cities. Rows represent a city and columns represent the snow fall
for a given month. Assign citySnow Record with all elements of row rowNum.
Ex: If stateSnowRecord is [17.3, 20.3; 4.8, 6.2] and rowNum is 2, then citySnowRecord is [4.8, 6.2].
Function >
6 %
7 %
8
9
10
11
12
13 end
function citySnowRecord = Get CitySnowFall (stateSnowRecord, rowNum)
2% Get CitySnow Fall: Returns all snow fall values for city in row rowNum
%
4 %
Inputs: stateSnowRecord matrix of snow fall records for cities for various months
rowNum specified row of stateSnowRecord to return
stateSnowRecord = [17.3, 20.3; 4.8, 6.2]
Outputs: citySnowRecord - all snow fall values for a given city
% Assign citySnowRecord with all elements of a row rowNum.
citySnowRecord = stateSnowRecord (rowNum, :);
Code to call your function >
1 GetCitySnow Fall([17.3, 20.3; 4.8, 6.2], 2)
Previous Assessment: 1 of 2 Tests Passed (50%)
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- Document1 - Word File Home Insert Design Layout References Mailings Review View O Tell me what you want to do... Sign in 2 Share X Cut Calibri (Body) - A A 今し P Find - 11 Aa - AaBbCcDc AaBbCcDc AaBbC AABBCCC AaB AaBbCcC AaBbCcD AaBbCcD AaBbCcD AaBbCcDc AaBbCcD AaBbCcD AABBCCD AABBCCDI AaBbCcD Ee Copy ab. Replace Paste B I U - abe x, A - aly - A - 1 Normal 1 No Spac. Heading 1 Heading 2 Title Subtitle Subtle Em. Emphasis Intense E. Strong Quote Intense Q. Subtle Ref.. Intense Re. Book Title x' Format Painter A Select - Clipboard Font Paragraph Styles Editing At a hydraulic plant the propeller type turbine are rated at 48,000 HP at 82 rpm under a 14 meters head, the diameter is 7 meters, for a geometrical similar turbine to develop 36,000 HP under a 11 meters head. After resolving the percentage change in probable flow, determine the following: What diameter, in meter, of the impeller to be used? O 70.00 O 22.86 O 40.00 O 7.25 O 13.06 What is the speed, in RPM, should be used? O 40.00 O…arrow_forwardPLEASE: Can you write out the answers. Typing it out doesn't make sense all togetherarrow_forwardKeep the same colors the same graph, basically keep everything the same just make the line with a small curve just as shown on the picture Keep everything the same just make the line less curvy please do not change the colors of the line and the circles do not change anything besides the curve of the line. Use this code on MATLAB and fix it. % Sample data for Diesel and Petrol cars carPosition = linspace(1, 60, 50); % Assumed positions of cars % Use the 'seed' function instead of 'rng' seed = 50; % Define your seed here rand('seed',seed); % Assumed CO2 emissions for Diesel and Petrol CO2Diesel = 25 + 5*cos(carPosition/60*2*pi) + randn(1, 50)*5; % Random data for Diesel CO2Petrol = 20 + 5*sin(carPosition/60*2*pi) + randn(1, 50)*5; % Random data for Petrol % Fit polynomial curves with a reduced degree of 2 pDiesel = polyfit(carPosition, CO2Diesel, 2); pPetrol = polyfit(carPosition, CO2Petrol, 2); % Generate points for best fit lines fitDiesel = polyval(pDiesel, carPosition);…arrow_forward
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