Programming and Problem Solving with C++: Comprehensive
Programming and Problem Solving with C++: Comprehensive
6th Edition
ISBN: 9781284076592
Author: Dale, Nell
Publisher: JONES+BART
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Chapter 3, Problem 1PP
Program Plan Intro

Program Plan:

Following variables are used in the program:

diameter, radius. height, volume: To store the diameter, radius, height, and volume of cone respectively.

P: const keyword to define the value of pie.

Summary Introduction:

Program will use the Main () method, which will prompt the user to enter the diameter of the base and height of the cone. Then the volume of a cone is calculated using formula (1/3)*P*(radius)2* (height)and output is displayed.

Program Description:

The purpose of the program is to calculate and display the volume of a cone with given the value for the diameter and height of the cone.

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In the diagram, there is a green arrow pointing from Input C (complete data) to Transformer Encoder S_B, which I don’t understand. The teacher model is trained on full data, but S_B should instead receive missing data—this arrow should not point there. Please verify and recreate the diagram to fix this issue. Additionally, the newly created diagram should meet the same clarity standards as the second diagram (Proposed MSCATN). Finally provide the output image of the diagram in image format .
Please provide me with the output  image of both of them . below are the diagrams code  make sure to update the code and mentionned clearly each section also the digram should be clearly describe like in the attached image. please do not provide the same answer like in other question . I repost this question because it does not satisfy the requirment I need in terms of clarifty the output of both code are not very well details  I have two diagram : first diagram code  graph LR subgraph Teacher Model (Pretrained) Input_Teacher[Input C (Complete Data)] --> Teacher_Encoder[Transformer Encoder T] Teacher_Encoder --> Teacher_Prediction[Teacher Prediction y_T] Teacher_Encoder --> Teacher_Features[Internal Features F_T] end subgraph Student_A_Model[Student Model A (Handles Missing Values)] Input_Student_A[Input M (Data with Missing Values)] --> Student_A_Encoder[Transformer Encoder E_A] Student_A_Encoder --> Student_A_Prediction[Student A Prediction y_A] Student_A_Encoder…
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