Create a use case diagram for “Blackboard” , an online platform supporting educa

Create a use case diagram for
“Blackboard”
, an online platform
supporting educa

Create a use case diagram for
“Blackboard”
, an online platform
supporting educational activities.:
• Task: Identify the actors involved and
define the primary use cases                                         Create a class diagram for “Blackboard” , an online platform supporting educational activities:  
• Task: Identify the classes (attributes,
methods), objects, relationships
Create a sequence diagram for
“Blackboard”, an online platform supporting
educational activities:  
• Task: Identify the objects and the messages
exchanged
File attached is for reference how diagram should look, must pass Safeassign

Develop a formal report using the project report format from blackboard comparin

Develop a formal report using the project report format from blackboard comparin

Develop a formal report using the project report format from blackboard comparing the various predicted stress concentration factors for a stepped plate. Use book example 3-13 as a guide for comparing hand calculations to those predicted by a finite element analysis. Refine your communication skills by documenting and reporting results of this analysis objectively and professionally. 
Solidworks required

For part 3,  design a PowerPoint presentation that details the added functionali

For part 3,  design a PowerPoint presentation that details the added functionali

For part 3,  design a PowerPoint presentation that details the added functionality of the traffic light system as well as the results of the Excel spreadsheet calculations and comparison charts. 
PowerPoint Presentation Requirements
No more than five (5) slides.
Must have a title slide.
Must have transitions of your choice between slides.
Must include an animation of bulleted points.
Must include a screen recording illustrating the use of your modified traffic light in TinkerCAD.

Numerical Modeling Of Plasma Gasification For Hydrogen Production Comprehensive

Numerical Modeling Of Plasma Gasification For Hydrogen Production
Comprehensive

Numerical Modeling Of Plasma Gasification For Hydrogen Production
Comprehensive literature review and identifying the research gap for the current studies.
I have almost all the important articles.
IEEE methodology of referencing.
Reproducing the tables and the figures.
Make a presentation at the end .
One week or less perforable.
Important Info

The order was placed through a short procedure (customer skipped some order details).
Please clarify some paper details before starting to work on the order.

Type of paper and subject
Number of sources and formatting style
Type of service (writing, rewriting, etc)

Please give detailed step-by-step instructions along with full code and explanat

Please give detailed step-by-step instructions along with full code and explanat

Please give detailed step-by-step instructions along with full code and explanation for UR + robotiq with camera and grasp plugins. It should also include the github repos to use for UR + robotiq and any sudo etc installs needed. Must also provide guidance with any issues faced.

The draft consultation is 1 There are more subtasks to do, I have outlined some

The draft consultation is
1
There are more subtasks to do, I have outlined some

The draft consultation is
1
There are more subtasks to do, I have outlined some in the public document.
This is how I’d like to outline the work:
• : Completes the report’s introduction (four required elements), providing support if possible.
• : Completes first discussion section (describe the current situation).
• : Completes the second discussion section (describe the solution).
• : Outlines the report’s structure, creates elevator speech, adds references, and provides support if possible.
SO I WILL ATTACHED OUR PROJECT AND WRITE ABOUT THAT I WOULD LIKE TO DO YOU Completes first discussion section (describe the current situation).5. Add references (IEEE format).

Follow the format below, CHAPTER 1.0. INTRODUCTION Background ………………………………………………

Follow the format below,
CHAPTER 1.0. INTRODUCTION
Background ………………………………………………

Follow the format below,
CHAPTER 1.0. INTRODUCTION
Background ……………………………………………………………………….1
Problem statement ………………………………………………………………… 2
Significance of the Project ………………………………………………. ……….3
Research questions……………………………………………………………… 4
Objectives of the study…………………………………………………………. 5
Assumptions …………………………………………………………………… 6
Limitations…………………………………………………………………………7
Delimitation………………………………………………………………………8
Conclusion ………………………………………………………………………..9
CHAPTER 2.0. REQUIREMENTS ENGINEERING
2.1 Introduction……………………………………….…………………………..….. pn
2.2 Literature review………………………………….……………………………… pn
2.3 Business value.…………………………………….………………………….….. pn
2.4 Information gathering methodologies………….……………..…………….….. pn
2.5 Tangible benefits……………………………………………………….…….…… pn
2.6 Intangible benefits…………………………………………………………….…… pn 
2.7 Feasibility study…………………………………………………………….…….. pn
2.7.1 Technical feasibility: could it be done?……………………………..….. pn
2.7.2 Economic feasibility……………………………………………………….. pn
2.7.3 Operational feasibility…….………………………………..……….….….. pn
2.8 Risk analysis……….……………………………………………………….……….. pn
2.9 Summary…………………………………………………………………………….. pn
CHAPTER 3.0 SYSTEM/MODEL/ALGORITHM ANALYSIS
2.0 
3.0 
3.1 Introduction…………………..……………………………………………………… pn
3.2 Analysis of existing system…………………………………………………….….. pn
3.3 Data analysis – DFDs, case diagrams..…………………………….……….……… pn
3.4 Overview of proposed system:…………………………………….………………. pn
3.4.1 Weaknesses of the current system…………………….………………pn
3.4.2 Strengths of the current system………………………..………….…..pn 
3.4.3 Evaluation of alternatives………………………………..……….……pn
3.4.4 Requirements analysis-use case diagrams………………..…………..pn 
3.5 Summary…………………………………………………………………..…………..pn
CHAPTER 4.0 PROTOTYPING/SYSTEM DESIGN
4.0 
4.1 Introduction ……………………………………………………….….….……….…..pn
4.2 System inputs…………………………………………………………….……….…..pn
4.3 System processes………………………………………………..……….……….…..pn
4.4 System outputs……………………………………………………..…….……….…..pn 
4.5 Architecture design……………………………………………..……….……….…..pn
4.6 Physical design……………………………………………………….….……….…..pn 
4.7 Database design-entity relationship diagrams, class diagrams, tables and their fields……………………………………………………………………….…………..pn
4.8 Interface design…………………………………………………….…….……….…..pn
4.9 Summary………………………………………………………………….……….…..pn
CHAPTER 5.0 DEVELOPMENT AND TESTING
2.0 
3.0 
4.0 
5.0 
5.1 Introduction……………………………………………………………….……….….pn 
5.2 Coding and construction………………………………………………….……….…..pn 
5.3 Testing…………………………………………………………………….……….…..pn
5.4 Security…………………………………………………………………….……….…..pn 
5.5 Recommendations……………………….……………………………….……….…..pn
5.6 Future work……………………………………………………………….……….…..pn
5.7 Conclusion………………………………………………………..……….……….…..pn