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Services

I'm a Mastering to Computer Science from Georgia Technology of University, and Queensland University of Technology (QUT). 

​Artificial Intelligence for Robotics, Machine Learning, Software Development Process, Computer Networking, Advanced Operating Systems, Computability, Complexity & Algorithms, Knowledge-Based AI: Cognitive Systems, High Performance Computer Architecture, and Health Informatics in the Cloud, and etc.

I'm a Master of Software Development Process. From Idea to Product

In SDP, you will take how to select and implement the ideal software process for your development project. Through Professor Orso’s engaging examples and interviews with industry insiders, you will learn both conceptual and practical aspects of software engineering. The service covers requirements engineering, architecture and design, testing and maintenance, and software quality in general.

The goal of this process is to equip you with the skills necessary to define requirements, set up an integrated development environment (IDE), learn Git (and Github!) and use Unified Modeling Language (UML) to design and build an Android application. We will also examine several testing practices and refactoring techniques that are helpful before the launch of your software project.

While everyone working with software should have these skills, they are particularly important for Software Engineers and Engineering Managers.

I'm a Master of Advanced Operation System. Abstractions and Virtualization

We will made all the advances that have led to the state-of-the-art operating system that we know today, covering variety of platforms – cell phones, multi-core, parallel systems, distributed systems, and cloud computing.

I'm a Master High Performance Computer Architecture. Pipelines, Caches, and MultiCores

The service begins with a work on performance measurement, which leads to a tool made on the necessity of performance improvement.

Pipelining, the first level of performance refinement, is reviewed. The weaknesses of pipelining will be exposed and explored, and various solutions to these issues will be take. The customer will can hardware, software, and compiler based solutions to these issues.

I'm a Master of Artificial Intelligence for Robotic. Programming a Robotic Airplane

How to program all the major systems of a robotic computing from the leader of Google and Stanford’s autonomous driving teams. This class will teach you basic methods in Artificial Intelligence, including: probabilistic inference, planning and search, localization, tracking and control, all with a focus on robotics. Extensive programming examples and assignments will apply these methods in the context of building self-driving computing.

I'm a Master of Computer Networking. Security and Software Defined Networking

Computer Networking such as Software-Defined Networking (SDN), Data Center Networking and Content Distribution. The course is divided into three parts:

Part 1 is about the implementation, design principles and goals of a Computer Network and touches upon the various routing algorithms used in CN (such as link-state and distance vector).

Part 2 talks about resource control and content distribution in Networking Applications. It covers Congestion Control and Traffic Shaping.

Part 3 deals with the operations and management of computer networks encompassing SDN’s (Software Defined Networks), Traffic Engineering and Network Security.

I'm a Master of Machine Learning. Supervised, Unsupervised & Reinforcement

Machine Learning is a graduate-level product covering the area of Artificial Intelligence concerned with computer programs that modify and improve their performance through experiences.

The first part of the product covers Supervised Learning, a machine learning task that makes it possible for your phone to recognize your voice, your email to filter spam, and for computers to learn a bunch of other cool stuff.

In part two, you will enjoy about Unsupervised Learning. Ever wonder how Netflix can predict what movies you’ll like? Or how Amazon knows what you want to can before you do? Such answers can be found in this section!

Finally, can we program machines to learn like humans? This Reinforcement Learning section will take you the algorithms for designing self-learning agents like us!

I'm a Master of Computability, Complexity & Algorithms The Power and Limitation of Algorithms

“What is a computer? What are the limits of computation? Are there problems that no computer will ever solve? Are there problems that can’t be solved quickly? What kinds of problems can we solve efficiently and how do we go about developing these algorithms?” Understanding the power and limitations of algorithms helps us develop the tools to make real-world computers smarter, faster and safer.

I'm a Master of Knowledge-Based AI: Cognitive Systems The Core of Artificial Intelligence.

 The concepts, methods, and prominent issues in knowledge-based artificial intelligence. Second, it take the specific skills and abilities needed to apply those concepts to the design of knowledge-based AI agents. Third, it take the relationship between knowledge-based artificial intelligence and the study of human cognition.

I'm a Master of Health Informatics in the Cloud Applications and Analysis

Designed to provide a broad, forward-facing overview of contemporary health informatics, a specialized field of computing that seeks to improve the quality and efficiency of healthcare delivery. To understand health informatics (HIT) you also need to have at least a basic understanding of the complex and highly regulated US healthcare industry. The course is designed for students from diverse backgrounds and who have not been previously exposed to HIT. It is divided into three sections:

The US healthcare delivery and the key role of the federal government in promoting HIT adoption

The core technologies that drive all contemporary HIT systems and tools

The real world applications of HIT from electronic medical and personal health records to exploiting digital data aggregated from them for research and other purposes

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