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FILE *read_file,*write_file;
char phoned[30] = "phontipppedir.txt";
struct tippp person {
chatipppppr firstname[1tippp5];
char ltipppppastname[2tippp5];
char phone[10];
};
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Question 2
In this part of W2 Project, you will examine the role of the OSI model in network design. The OSI model is not a network ...
Question 2
In this part of W2 Project, you will examine the role of the OSI model in network design. The OSI model is not a network architecture, and it does not constitute network specifications. The OSI model serves as a guideline for network design and helps in representing how a network functions. Continuing with the course project you started in Week 1, on the basis of your research and reading in this week, complete the following tasks: Map the layers of the OSI model to the actual processes required for your scenario as identified in W1 Project. Use the OSI model as your network design reference. Based on the updates to your network design, update the vendor and costs table that you created in W1 Project. Finally, add a network process diagram to your proposal. Note: You may want to try a different drawing tool for that purpose. Click here to try one such tool.Here is the link https://www.smartdraw.com/downloads/ Compile your answers to both parts of this assignment in a 4- to 5-page Microsoft Word document. Submission Details: Support your responses with examples. Cite any sources in APA format. Part 2 of the course project - Name your document SU_ITS3103_W2_Project_LastName_FirstInitial. Submit your document to the Submissions Area by the due date assigned.
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Sql Queries Hands On Proj 1
Write a query to find the first and last name, customer ID and rental ID for Select distinct customer.first_name, customer ...
Sql Queries Hands On Proj 1
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CUMS Machine Learning Apply Dimension Reduction Techniques Case Study
Context/Background: The central idea is to use ML algorithms to recognize images, both static and dynamic, without specifi ...
CUMS Machine Learning Apply Dimension Reduction Techniques Case Study
Context/Background: The central idea is to use ML algorithms to recognize images, both static and dynamic, without specifically providing any guidance to the computer. This task is achieved by training algorithms to recognize various images while also mapping the feature space of those images to a categorical label or name. This task was first successfully achieved in the 1990s when computers were trained to recognize handwritten digits. The trained algorithm was used by postal services to sort mail and efficiently distribute it to the right destination. We will use the same dataset and problem for this case.The dataset is called MNIST (Modified National Institute of Standards and Technology). More information on MNIST can be found here: https://www.kaggle.com/c/digit-recognizer Use the only train.csvTo do: The main objective is to write a fully executed R-Markdown program performing dimension reduction techniques PCA, t-SNE, and UMAP on high dimensional image data using MNIST (digits) images that are 28 x 28 pixels resolution.Make sure to describe the final hyperparameter settings of all algorithms that were used for comparison purposes. Need rmd and pdf for this request.
CS192 Grantham WeeK5 Coding: Team Management OOP Style Assignment
I coded a program for a team management roster last week. This week I need to convert my list to dictionary and while loop ...
CS192 Grantham WeeK5 Coding: Team Management OOP Style Assignment
I coded a program for a team management roster last week. This week I need to convert my list to dictionary and while loop to for loop.Team Management OOP StyleYour program for keeping track of team members is coming along, but now you want to be able to include phone numbers and jersey numbers along with your team member’s name. Modify your program from week 4 so that the program utilizes object-oriented programming to create a member object which can accept the player’s name, phone number, and jersey number. You will need to replace the list with a dictionary to help in locating objects for removal and editing. Again, File Access for long-term storage is not required for this assignment.For this project:
You will submit your python code in either the original .py file, or copied into a .txt file.
A screenshot of your code having been executed (run). How to Take a Screenshot
Tips: While dictionaries resemble lists, remember that they are not the same! It is better to use FOR loops, not WHILE loops with index values.Your class structure does not need a full set of accessor and mutator methods getName(), setName(newName), however it they will be helpful in the next week.
Write a program
An algorithm – a regular text file Java Source code – a Java source file Write a program that creates customers� ...
Write a program
An algorithm – a regular text file Java Source code – a Java source file Write a program that creates customers’ bills for a carpet company when the information below is given: The customer’s last name, first name Length and width of the carpet in feet Carpet price per square foot First name and last name can be entered in any case. Length and width must be entered as integers. Carpet price per square foot can be a floating-point number or an integer. The Customer ID must contain the following three parts in order. First initial of a capitalized first name First five characters of a capitalized last name (Assuming the user-entered last name is at least five-character long) A random two-digit number in the range 10 to 99(inclusive). The tax rate is 8.5%, and it must be stored as a constant. The tax rate must be formatted into percentage format without leading zeros. Leading zeros must be used to make sure there are at least three digits in each formatted measurement data. All charge data must be formatted into required formats with leading zeros and trailing zeroes as shown. Sample Run 1: Enter your first name: John John Enter your last name: Smith Enter length of room (feet): 23 Enter width of room (feet): 13 Enter cost per square foot: 14.20 CUSTOMER Last Name Smith First Name John ID JSmith45 MEASUREMENT Length 023 feet Width 013 feet Area 299 square feet CHARGES Description Cost/Sq.ft Charges --- Carpet 14.20 $4245.80 Tax 8.50% 0360.89 - Total $4606.69 Sample Run 2: Enter your first name : joHn Notice the name is not entered in title case. Enter your last name: smith Enter length of room (feet): 23 Enter width of room (feet): 13 Enter cost per square foot: 14.20 CUSTOMER Last Name Smith Notice the name is displayed in title case. First Name John ID JSmith45 MEASUREMENT Length 023 feet Width 013 feet Area 299 square feet CHARGES Description Cost/Sq.Ft. Charges Carpet 14.20 $4245.80 Tax 8.50% 0360.89 Total $4606.69 Sample Run 3: Enter your first name: Joe Enter your last name: Whitney Enter length of room (feet): 14 Enter width of room (feet): 2 Enter cost per square foot: 5.00 CUSTOMER Last Name Whitney First Name Joe ID JWhitn23 MEASUREMENT Length 014 feet Width 002 feet Area 028 square feet CHARGES Description Cost/Sq.Ft. Charges -- Carpet 05.00 $0140.00 Tax 8.50% 0011.90 Total-----------------------------------------------------------------------------------------------
CSCI 1103 CSCC Exercise Calculator with BMI & Karvonen Formulas Python Exercise
Assignment: Lab Exercise 8Python: Exercise calculator with BMI & Karvonen formulasPython AssignmentThe objectives of this ...
CSCI 1103 CSCC Exercise Calculator with BMI & Karvonen Formulas Python Exercise
Assignment: Lab Exercise 8Python: Exercise calculator with BMI & Karvonen formulasPython AssignmentThe objectives of this lab assignment are as follows:Input data from userPerform several different calculationsProcess data within a loopMake output choices based on conditional logicOutput information to userSkills RequiredTo properly complete this assignment you will need to apply the following skills:Read string input from the console and convert input to required numeric data-typesConvert math formulas to Python codeResearch and apply correct conversion formulasUnderstand the if / elif / else constructOutput numeric data to specific decimal placesAssignment User StoryAs a user I want an application that will allow me to calculate a person's Body Mass Index (BMI) as well as to apply the Karvonen formula in calculating the user's heart rate at varying levels of exercise intensity. Assignment RequirementsIn this application we are calculating two different values: the first is the Body Mass Index (BMI) and the second is a series of maximum heart rate values at specific exercise intensity percentages calculated using the Karvonen formula.Building on the work that you have already done or begun thinking about this application must be protected against invalid numeric data entry. Therefore, you must use while loops to prompt the user for each requested value until the value entered is valid—until the user enters acceptable numeric data.Furthermore, as this assignment is coming after your reading about functions, it is expected that you will define at least two functions in your program. The first function will calculate and return the BMI value based on the height (inches) and weight (pounds) passed into the function. And the second function will calculate and return the Karvonen maximum heart rate given the intensity, resting heart rate, and age passed into the function.When complete, your output should be as pictured below:Note : The example output provided above is simply an example. You do not need to format your output to look exactly like mine. You simply need to ensure that you have met the technical requirements for this application and ensure your output is neat and professional looking.BMIBMI is a calculation of body fat based on an individual's height and weight.To calculate BMI you need two different values: height in inches and weight in pounds. Once you have obtained these values you will then need to convert the height from inches to height in meters squared, and the weight in pounds to the weight in kilograms. I am not going to provide these conversion formulas to you; you have to do a little online research to find them. In the case of converting inches to meters squared you need to convert inches to meters and then square that value.The formula for calculating BMI is as follows:where:weight is value in kilogramsheight is value in meters squared -- note, one way to obtain the square of a number is to multiply that number by itselfThe value for bmi will be a decimal from zero (dead) to a high number indicating high body fatness. Based on the BMI value a person is categorized according to their body fat as follows:Underweight = <18.5Normal weight = 18.5–24.9Overweight = 25–29.9Obese = BMI of 30 or greaterIn addition to calculating the user's BMI you will determine which of the above categories the user falls into based on their BMI.There are many online calculators that you can use to check your BMI results, one such can be found at the National Institute of Health. (Link to website here.)Karvonen FormulaThe Karvonen formula is used to calculate a target heart rate at specific workout intensities. It can be used to calculate ideal heart rate ranges for specific kinds of workout intensities. What I wish to do is to calculate what the maximum heart rate will be based on exercise intensity that begins at 50% and increases by 5% to a maximum intensity of 95%. This, of course, implies using a loop. We want to construct a loop that will iterate this calculation for the maximum heart rate for each of our exercise intensity percentages.To calculate maximum heart rate according to the Karvonen formula you need two different values: age and resting heart rate.The formula for calculating the maximum heart rate is as follows:This is an exercise in mathematic order of operations.Another way to think about the fomula above is to break it down like . . .where:mhr is maximum heart rate calculated as 220 minus your agehrr is heart rate reserve calculated by taking maximum heart rate (from step 1) minus resting heart ratemtz is maximum target zone calculating by taking heart rate reserve (from step 2) multiplied by intensity percentttz is target training zone calculated by taking mtz (from step 3) and adding resting heart rateexample:Suppose you have a resting heart rate of 70 beats per minute and your age is 35, and let's suppose we want to know what the maximum heart rate should be at 60% intensity workout:220 - 35 = 185 (this results in the maximum heart rate -- mhr)185 (mhr) - 70 = 115 (this results in the heart rate reserve -- hrr)115 (hrr) * .60 = 69 (this results in the maximum target zone -- mtz)69 (mtz) + 70 = 139 (this is the result that will be output for 60% exercise intensity)Therefore, 139 is the maximum heart rate for someone who is 35 years of age, has a resting heart rate of 70, and is exercising at a 60% intensity level.We want to perform this calculation for each exercise intensity level from 50% to 95%, with each level incremented by 5%There are many online calculators that you can use to check your Karvonen results, one such is from this website (Link to website here.)Technical/Grading RequirementsYou must ensure that the application you submit meets all technical/grading requirements. Your grade will be based on how well your application follows the application requirements plus the following:The name of the application with be HealthCalculator.pyYou must have a set of comments at the top of the program that identifies the programmer, date, and name of the program file. Each of these must be on individual lines. In addition, you must also provide a short description of what this program is doingThe following four pieces of data will be entered by the user: height in inches, weight in pounds, age, and resting heart rateUsing the entered data the BMI value along with the BMI Category will be determinedDisplaying exercise intensities from 50% (.55) to 95% (.95) the maximum heart rate at each exercise intensity will be calculated and displayedThe BMI value will be displayed to two decimalsThe intensity value will be displayed as a percentage with no decimal valueThe max heart rates will be displayed as a numeric value with no decimalsAll numeric values will be formatted as indicated aboveAll numeric values will be validated to ensure the user has keyed appropriate entry into the application.You must demonstrate your knowledge of functions by creating at least two functions: one to calculate the BMI and the second to calculate the maximum heart rate given a specific workout intensity.How the application looks and how it presents its information to the user is up to you. But it must meet the minimum requirements noted above.Important: Your output must include all of the following: BMI value, BMI category, one row for each exercise intensity from 50% to 95% in 5% increments (performed in a loop) and each row must include the intensity value as a percent and the maximum heart rate at that intensity.
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Question 2
In this part of W2 Project, you will examine the role of the OSI model in network design. The OSI model is not a network ...
Question 2
In this part of W2 Project, you will examine the role of the OSI model in network design. The OSI model is not a network architecture, and it does not constitute network specifications. The OSI model serves as a guideline for network design and helps in representing how a network functions. Continuing with the course project you started in Week 1, on the basis of your research and reading in this week, complete the following tasks: Map the layers of the OSI model to the actual processes required for your scenario as identified in W1 Project. Use the OSI model as your network design reference. Based on the updates to your network design, update the vendor and costs table that you created in W1 Project. Finally, add a network process diagram to your proposal. Note: You may want to try a different drawing tool for that purpose. Click here to try one such tool.Here is the link https://www.smartdraw.com/downloads/ Compile your answers to both parts of this assignment in a 4- to 5-page Microsoft Word document. Submission Details: Support your responses with examples. Cite any sources in APA format. Part 2 of the course project - Name your document SU_ITS3103_W2_Project_LastName_FirstInitial. Submit your document to the Submissions Area by the due date assigned.
5 pages
Sql Queries Hands On Proj 1
Write a query to find the first and last name, customer ID and rental ID for Select distinct customer.first_name, customer ...
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CUMS Machine Learning Apply Dimension Reduction Techniques Case Study
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CUMS Machine Learning Apply Dimension Reduction Techniques Case Study
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CS192 Grantham WeeK5 Coding: Team Management OOP Style Assignment
I coded a program for a team management roster last week. This week I need to convert my list to dictionary and while loop ...
CS192 Grantham WeeK5 Coding: Team Management OOP Style Assignment
I coded a program for a team management roster last week. This week I need to convert my list to dictionary and while loop to for loop.Team Management OOP StyleYour program for keeping track of team members is coming along, but now you want to be able to include phone numbers and jersey numbers along with your team member’s name. Modify your program from week 4 so that the program utilizes object-oriented programming to create a member object which can accept the player’s name, phone number, and jersey number. You will need to replace the list with a dictionary to help in locating objects for removal and editing. Again, File Access for long-term storage is not required for this assignment.For this project:
You will submit your python code in either the original .py file, or copied into a .txt file.
A screenshot of your code having been executed (run). How to Take a Screenshot
Tips: While dictionaries resemble lists, remember that they are not the same! It is better to use FOR loops, not WHILE loops with index values.Your class structure does not need a full set of accessor and mutator methods getName(), setName(newName), however it they will be helpful in the next week.
Write a program
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Write a program
An algorithm – a regular text file Java Source code – a Java source file Write a program that creates customers’ bills for a carpet company when the information below is given: The customer’s last name, first name Length and width of the carpet in feet Carpet price per square foot First name and last name can be entered in any case. Length and width must be entered as integers. Carpet price per square foot can be a floating-point number or an integer. The Customer ID must contain the following three parts in order. First initial of a capitalized first name First five characters of a capitalized last name (Assuming the user-entered last name is at least five-character long) A random two-digit number in the range 10 to 99(inclusive). The tax rate is 8.5%, and it must be stored as a constant. The tax rate must be formatted into percentage format without leading zeros. Leading zeros must be used to make sure there are at least three digits in each formatted measurement data. All charge data must be formatted into required formats with leading zeros and trailing zeroes as shown. Sample Run 1: Enter your first name: John John Enter your last name: Smith Enter length of room (feet): 23 Enter width of room (feet): 13 Enter cost per square foot: 14.20 CUSTOMER Last Name Smith First Name John ID JSmith45 MEASUREMENT Length 023 feet Width 013 feet Area 299 square feet CHARGES Description Cost/Sq.ft Charges --- Carpet 14.20 $4245.80 Tax 8.50% 0360.89 - Total $4606.69 Sample Run 2: Enter your first name : joHn Notice the name is not entered in title case. Enter your last name: smith Enter length of room (feet): 23 Enter width of room (feet): 13 Enter cost per square foot: 14.20 CUSTOMER Last Name Smith Notice the name is displayed in title case. First Name John ID JSmith45 MEASUREMENT Length 023 feet Width 013 feet Area 299 square feet CHARGES Description Cost/Sq.Ft. Charges Carpet 14.20 $4245.80 Tax 8.50% 0360.89 Total $4606.69 Sample Run 3: Enter your first name: Joe Enter your last name: Whitney Enter length of room (feet): 14 Enter width of room (feet): 2 Enter cost per square foot: 5.00 CUSTOMER Last Name Whitney First Name Joe ID JWhitn23 MEASUREMENT Length 014 feet Width 002 feet Area 028 square feet CHARGES Description Cost/Sq.Ft. Charges -- Carpet 05.00 $0140.00 Tax 8.50% 0011.90 Total-----------------------------------------------------------------------------------------------
CSCI 1103 CSCC Exercise Calculator with BMI & Karvonen Formulas Python Exercise
Assignment: Lab Exercise 8Python: Exercise calculator with BMI & Karvonen formulasPython AssignmentThe objectives of this ...
CSCI 1103 CSCC Exercise Calculator with BMI & Karvonen Formulas Python Exercise
Assignment: Lab Exercise 8Python: Exercise calculator with BMI & Karvonen formulasPython AssignmentThe objectives of this lab assignment are as follows:Input data from userPerform several different calculationsProcess data within a loopMake output choices based on conditional logicOutput information to userSkills RequiredTo properly complete this assignment you will need to apply the following skills:Read string input from the console and convert input to required numeric data-typesConvert math formulas to Python codeResearch and apply correct conversion formulasUnderstand the if / elif / else constructOutput numeric data to specific decimal placesAssignment User StoryAs a user I want an application that will allow me to calculate a person's Body Mass Index (BMI) as well as to apply the Karvonen formula in calculating the user's heart rate at varying levels of exercise intensity. Assignment RequirementsIn this application we are calculating two different values: the first is the Body Mass Index (BMI) and the second is a series of maximum heart rate values at specific exercise intensity percentages calculated using the Karvonen formula.Building on the work that you have already done or begun thinking about this application must be protected against invalid numeric data entry. Therefore, you must use while loops to prompt the user for each requested value until the value entered is valid—until the user enters acceptable numeric data.Furthermore, as this assignment is coming after your reading about functions, it is expected that you will define at least two functions in your program. The first function will calculate and return the BMI value based on the height (inches) and weight (pounds) passed into the function. And the second function will calculate and return the Karvonen maximum heart rate given the intensity, resting heart rate, and age passed into the function.When complete, your output should be as pictured below:Note : The example output provided above is simply an example. You do not need to format your output to look exactly like mine. You simply need to ensure that you have met the technical requirements for this application and ensure your output is neat and professional looking.BMIBMI is a calculation of body fat based on an individual's height and weight.To calculate BMI you need two different values: height in inches and weight in pounds. Once you have obtained these values you will then need to convert the height from inches to height in meters squared, and the weight in pounds to the weight in kilograms. I am not going to provide these conversion formulas to you; you have to do a little online research to find them. In the case of converting inches to meters squared you need to convert inches to meters and then square that value.The formula for calculating BMI is as follows:where:weight is value in kilogramsheight is value in meters squared -- note, one way to obtain the square of a number is to multiply that number by itselfThe value for bmi will be a decimal from zero (dead) to a high number indicating high body fatness. Based on the BMI value a person is categorized according to their body fat as follows:Underweight = <18.5Normal weight = 18.5–24.9Overweight = 25–29.9Obese = BMI of 30 or greaterIn addition to calculating the user's BMI you will determine which of the above categories the user falls into based on their BMI.There are many online calculators that you can use to check your BMI results, one such can be found at the National Institute of Health. (Link to website here.)Karvonen FormulaThe Karvonen formula is used to calculate a target heart rate at specific workout intensities. It can be used to calculate ideal heart rate ranges for specific kinds of workout intensities. What I wish to do is to calculate what the maximum heart rate will be based on exercise intensity that begins at 50% and increases by 5% to a maximum intensity of 95%. This, of course, implies using a loop. We want to construct a loop that will iterate this calculation for the maximum heart rate for each of our exercise intensity percentages.To calculate maximum heart rate according to the Karvonen formula you need two different values: age and resting heart rate.The formula for calculating the maximum heart rate is as follows:This is an exercise in mathematic order of operations.Another way to think about the fomula above is to break it down like . . .where:mhr is maximum heart rate calculated as 220 minus your agehrr is heart rate reserve calculated by taking maximum heart rate (from step 1) minus resting heart ratemtz is maximum target zone calculating by taking heart rate reserve (from step 2) multiplied by intensity percentttz is target training zone calculated by taking mtz (from step 3) and adding resting heart rateexample:Suppose you have a resting heart rate of 70 beats per minute and your age is 35, and let's suppose we want to know what the maximum heart rate should be at 60% intensity workout:220 - 35 = 185 (this results in the maximum heart rate -- mhr)185 (mhr) - 70 = 115 (this results in the heart rate reserve -- hrr)115 (hrr) * .60 = 69 (this results in the maximum target zone -- mtz)69 (mtz) + 70 = 139 (this is the result that will be output for 60% exercise intensity)Therefore, 139 is the maximum heart rate for someone who is 35 years of age, has a resting heart rate of 70, and is exercising at a 60% intensity level.We want to perform this calculation for each exercise intensity level from 50% to 95%, with each level incremented by 5%There are many online calculators that you can use to check your Karvonen results, one such is from this website (Link to website here.)Technical/Grading RequirementsYou must ensure that the application you submit meets all technical/grading requirements. Your grade will be based on how well your application follows the application requirements plus the following:The name of the application with be HealthCalculator.pyYou must have a set of comments at the top of the program that identifies the programmer, date, and name of the program file. Each of these must be on individual lines. In addition, you must also provide a short description of what this program is doingThe following four pieces of data will be entered by the user: height in inches, weight in pounds, age, and resting heart rateUsing the entered data the BMI value along with the BMI Category will be determinedDisplaying exercise intensities from 50% (.55) to 95% (.95) the maximum heart rate at each exercise intensity will be calculated and displayedThe BMI value will be displayed to two decimalsThe intensity value will be displayed as a percentage with no decimal valueThe max heart rates will be displayed as a numeric value with no decimalsAll numeric values will be formatted as indicated aboveAll numeric values will be validated to ensure the user has keyed appropriate entry into the application.You must demonstrate your knowledge of functions by creating at least two functions: one to calculate the BMI and the second to calculate the maximum heart rate given a specific workout intensity.How the application looks and how it presents its information to the user is up to you. But it must meet the minimum requirements noted above.Important: Your output must include all of the following: BMI value, BMI category, one row for each exercise intensity from 50% to 95% in 5% increments (performed in a loop) and each row must include the intensity value as a percent and the maximum heart rate at that intensity.
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