Microsoft Development Training Classes in Jefferson City, Missouri
Learn Microsoft Development in Jefferson City, Missouri and surrounding areas via our hands-on, expert led courses. All of our classes either are offered on an onsite, online or public instructor led basis. Here is a list of our current Microsoft Development related training offerings in Jefferson City, Missouri: Microsoft Development Training
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3 November, 2025 - 7 November, 2025 - Object-Oriented Programming in C# Rev. 6.1
17 November, 2025 - 21 November, 2025 - OpenShift Fundamentals
6 October, 2025 - 8 October, 2025 - Fast Track to Java 17 and OO Development
8 December, 2025 - 12 December, 2025 - RHCSA EXAM PREP
17 November, 2025 - 21 November, 2025 - See our complete public course listing
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It is said that spoken languages shape thoughts by their inclusion and exclusion of concepts, and by structuring them in different ways. Similarly, programming languages shape solutions by making some tasks easier and others less aesthetic. Using F# instead of C# reshapes software projects in ways that prefer certain development styles and outcomes, changing what is possible and how it is achieved.
F# is a functional language from Microsoft's research division. While once relegated to the land of impractical academia, the principles espoused by functional programming are beginning to garner mainstream appeal.
As its name implies, functions are first-class citizens in functional programming. Blocks of code can be stored in variables, passed to other functions, and infinitely composed into higher-order functions, encouraging cleaner abstractions and easier testing. While it has long been possible to store and pass code, F#'s clean syntax for higher-order functions encourages them as a solution to any problem seeking an abstraction.
F# also encourages immutability. Instead of maintaining state in variables, functional programming with F# models programs as a series of functions converting inputs to outputs. While this introduces complications for those used to imperative styles, the benefits of immutability mesh well with many current developments best practices.
For instance, if functions are pure, handling only immutable data and exhibiting no side effects, then testing is vastly simplified. It is very easy to test that a specific block of code always returns the same value given the same inputs, and by modeling code as a series of immutable functions, it becomes possible to gain a deep and highly precise set of guarantees that software will behave exactly as written.
Further, if execution flow is exclusively a matter of routing function inputs to outputs, then concurrency is vastly simplified. By shifting away from mutable state to immutable functions, the need for locks and semaphores is vastly reduced if not entirely eliminated, and multi-processor development is almost effortless in many cases.
Type inference is another powerful feature of many functional languages. It is often unnecessary to specify argument and return types, since any modern compiler can infer them automatically. F# brings this feature to most areas of the language, making F# feel less like a statically-typed language and more like Ruby or Python. F# also eliminates noise like braces, explicit returns, and other bits of ceremony that make languages feel cumbersome.
Functional programming with F# makes it possible to write concise, easily testable code that is simpler to parallelize and reason about. However, strict functional styles often require imperative developers to learn new ways of thinking that are not as intuitive. Fortunately, F# makes it possible to incrementally change habits over time. Thanks to its hybrid object-oriented and functional nature, and its clean interoperability with the .net platform, F# developers can gradually shift to a more functional mindset while still using the algorithms and libraries with which they are most familiar.
Related F# Resources:
In the ever changing landscape of software programming, it is not surprising that developers and employees have a different set of preferences for desired skills. However the number one language that developers want to learn according to a survey of developers by technical recruiter, Hacker Rank is Python. This is not a surprise considering that Python has been in demand for several years and programmers tend to really enjoy this language for clear syntax, good OOP support and great shortcuts. Python, named “the language of the year” in 2007 and 2010 in the TIOBE Index and has climbed to #4 status in May of 2018.
According to the study, employers want developers who:
- Have problem-solving skills, such as the ability to break down large, complex problems.
- Are proficient in their programming language and debugging.
- Can design systems.
- Can optimize performance.
- Have experience in reviewing and testing code.
- Are proficient in database design
Surprisingly, formal education is not the deciding factor when it comes to what companies care about the most. People with computer degrees or certifications on a resume are not necessarily a first choice for hiring managers. Others that have years of experience even if those individuals are partially self-taught in the field stand to be taken seriously in the field. For those individuals with a passion to learn and master a skill, there are ample opportunities with smaller to mid-sized companies.
Some interesting FAQ’s from the study:
On average, developers know 4 languages, and they aspire to learn 4 more.
Younger developers between 18 and 24 plan to learn 6 languages.
Folks older than 35 only plan to learn and additional 3 languages.
The top languages developers said they will learn were, Go, Python, Scala, Kotlin, and Ruby.
There is a large gap between employers seeking developers that know React than there are folks that can do it.
So, Why Learn Python?
It is now the most popular introductory teaching language in U.S. universities. Python is easy to use, powerful, and versatile, making it a great choice for beginners and experts alike. It allows you to think like a programmer and not waste time understanding difficult syntax that other programming languages can command. And, because of its rapid growth, many developers contribute to the Python community and share Python libraries making creativity that much more a reality
Technology has continued to evolve in ways that few would have been able to imagine. This has allowed electronics to become smarter, more connected and far more useful.
With the Internet of Things (IoT), they're allowing more than just computers to become connected to the Internet. This aims to make the life of the average person easier, better and more care-free.
Let's examine why the Internet of Things has become such a powerful idea that an estimated one out of every five developers currently works on an IoT project.
What is the Internet of Things?
The Internet of Things hinges on one seemingly simple concept: electronics can be embedded in machines, clothing, animals and even people to provide a networked world where the whole is more than just the sum of its parts.
For example, consider how the Internet of Things can influence things like refrigerators. They can be networked directly to the manufacturer for readings that can warn if the refrigerator is about to malfunction. They can even be connected to a grocery shopping service to allow someone to restock them automatically or to notify the owner that the refrigerator is almost out of an item.
The most interesting notion about the Internet of Things is that it's not just a situation where one “thing” connects with a party. They typically communicate with other things, which in turn allows for a network of automated processes to occur.
These processes can simplify and expedite tedious tasks to make everyday life for everyone easier, which is why projects involving the Internet of Things are so popular.
How Prevalent is IoT Development?
An estimated one in five developers are currently developing projects for the Internet of Things. Their chosen languages vary widely because of the flexibility that IoT enjoys.
For example, IoT projects that hinge on interacting with mobile phones tend to have apps written in JavaScript or Java. The back-end code that runs the IoT functionality for machines tends to be written in Assembly, C++,Java,Perl,Pythonor another compiled language for efficiency.
To put the growth of IoT work into perspective, Evans Data Corp. performed research to create predictions about IoT projects in 2014. They stated that 17% of companies would be developing IoT projects.
In this year, that figure's risen to a solid 19%. Given the fact that 44% of developers have stated that they will enter into the IoT scene this year or next, this means that development will only grow in the coming future.
The Future Involving the Internet of Things
Development of IoT-related projects will likely explode in the next few years. The advantages it brings, such as more efficient work in manufacturing environments and the projected 15% savings to the restaurant industry over the next five years, will make it one of the most valuable technological changes in the near future.
Without a comprehensive understanding of the Internet of Things and the skills to lead IoT projects, businesses and developers may find themselves falling behind. Don't let the Internet of Things pass you by.
As part of our Java Tutorials program, we will list a number of interview questions to aid in a better understaing of Java and J2EE and, hopefully, provide a greater likelihood of getting a job. Let us begin with the basics:
1. What is meant by J2EE?
J2EE is an abreviation for Java 2 Platform Enterprise Edition
2. What is the purpose of J2EE?
The purpose of J2EE is to provide a component based platform in a multitier application model with transaction management, web services and reusable component support.
3. What is the tier structure of the typical J2EE application?
A typical J2EE application consists of the following tiers/machines: the client machine (browser/non-browser application), the J2EE server (an application server such as Oracle, JBoss, GlassFish, Tomcat) and a database.
Tech Life in Missouri
Company Name | City | Industry | Secondary Industry |
---|---|---|---|
Patriot Coal Corporation | Saint Louis | Agriculture and Mining | Mining and Quarrying |
Solutia Inc. | Saint Louis | Manufacturing | Chemicals and Petrochemicals |
Monsanto Company | Saint Louis | Agriculture and Mining | Agriculture and Mining Other |
Kansas City Power and Light Company | Kansas City | Energy and Utilities | Gas and Electric Utilities |
The Laclede Group, Inc. | Saint Louis | Energy and Utilities | Gas and Electric Utilities |
Peabody Energy Corporation | Saint Louis | Agriculture and Mining | Mining and Quarrying |
Emerson Electric Company | Saint Louis | Manufacturing | Tools, Hardware and Light Machinery |
Energizer Holdings, Inc. | Saint Louis | Manufacturing | Manufacturing Other |
Centene Corporation | Saint Louis | Healthcare, Pharmaceuticals and Biotech | Healthcare, Pharmaceuticals, and Biotech Other |
Express Scripts | Saint Louis | Healthcare, Pharmaceuticals and Biotech | Pharmaceuticals |
Reinsurance Group of America, Incorporated | Chesterfield | Financial Services | Insurance and Risk Management |
Ameren Corporation | Saint Louis | Energy and Utilities | Gas and Electric Utilities |
DST Systems, Inc. | Kansas City | Computers and Electronics | Networking Equipment and Systems |
Inergy, L.P. | Kansas City | Energy and Utilities | Alternative Energy Sources |
Leggett and Platt, Incorporated | Carthage | Manufacturing | Furniture Manufacturing |
Cerner Corporation | Kansas City | Software and Internet | Software |
O'Reilly Automotive, Inc. | Springfield | Retail | Automobile Parts Stores |
AMC Theatres | Kansas City | Media and Entertainment | Motion Picture Exhibitors |
Sigma-Aldrich Corporation | Saint Louis | Manufacturing | Chemicals and Petrochemicals |
HandR Block | Kansas City | Financial Services | Securities Agents and Brokers |
Graybar Services, Inc. | Saint Louis | Wholesale and Distribution | Wholesale and Distribution Other |
Edward Jones | Saint Louis | Financial Services | Personal Financial Planning and Private Banking |
Arch Coal, Inc. | Saint Louis | Energy and Utilities | Alternative Energy Sources |
Brown Shoe Company, Inc. | Saint Louis | Retail | Clothing and Shoes Stores |
Ralcorp Holdings, Inc. | Saint Louis | Manufacturing | Food and Dairy Product Manufacturing and Packaging |
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The Hartmann Software Group understands these issues and addresses them and others during any training engagement. Although no IT educational institution can guarantee career or application development success, HSG can get you closer to your goals at a far faster rate than self paced learning and, arguably, than the competition. Here are the reasons why we are so successful at teaching:
- Learn from the experts.
- We have provided software development and other IT related training to many major corporations in Missouri since 2002.
- Our educators have years of consulting and training experience; moreover, we require each trainer to have cross-discipline expertise i.e. be Java and .NET experts so that you get a broad understanding of how industry wide experts work and think.
- Discover tips and tricks about Microsoft Development programming
- Get your questions answered by easy to follow, organized Microsoft Development experts
- Get up to speed with vital Microsoft Development programming tools
- Save on travel expenses by learning right from your desk or home office. Enroll in an online instructor led class. Nearly all of our classes are offered in this way.
- Prepare to hit the ground running for a new job or a new position
- See the big picture and have the instructor fill in the gaps
- We teach with sophisticated learning tools and provide excellent supporting course material
- Books and course material are provided in advance
- Get a book of your choice from the HSG Store as a gift from us when you register for a class
- Gain a lot of practical skills in a short amount of time
- We teach what we know…software
- We care…