C++ Programming Training Classes in Training/Boston,

Learn C++ Programming in Training/Boston 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 C++ Programming related training offerings in Training/Boston: C++ Programming Training

We offer private customized training for groups of 3 or more attendees.

C++ Programming Training Catalog

cost: $ 1190length: 3 day(s)
This three-day course is designed to provide a sound introduction to the .NET Framework for programmers who already know the C++/CLI language and the fundamentals of Windows Forms. It is current to .NET 2.0 and Visual Studio 2005. The course focuses on core portions of the .NET Framework that are common across many application areas. The course is practical, with many examples. The goal is to ...
cost: $ 1890length: 2 day(s)
This 2-day intensive Advanced C++ class is designed to coach the experienced C++ developer on enterprise system C++ coding and design standards. Students will be given a review of Polymorphism, Virtual Functions, Function Pointers and Multiple Inheritance. A solid introduction to Design Patterns follows. Once we have laid the groundwork, the training nicely dovetails into a thorough ...
cost: $ 1750length: 5 day(s)
The comprehensive, five-day course consists of three modules. A preliminary module reviews topics, including inheritance, the ANSI C++ Standard Library, templates. I/O streams, and practical issues of C++ programming, such as reliability, testing, efficiency and interfacing to C. This material is covered as needed depending on the background of the students. The second module covers more advanced ...
cost: $ 1750length: 5 day(s)
Develop the ability to design and write programs in the C++ language, emphasizing object-oriented approaches to designing solutions. ...
cost: $ 1750length: 5 day(s)
This course is a comprehensive hands-on introduction to object oriented programming in C++ for C programmers. Emphasis is placed on the features of C++ that support effective modeling of the problem domain and reuse of code. The course consists of two modules. In the first module object oriented concepts are introduced. The C++ class construct is introduced and its key features elaborated step-by- ...
cost: $ 2890length: 5 day(s)
This course is a comprehensive hands-on introduction to object oriented programming in C++ for non-C programmers. Emphasis is placed on the features of C++ that support effective modeling of the problem domain and reuse of code. The course consists of two modules. The first module introduces the core C features of C++, with simplified input/output through iostreams. The module begins with simple ...
cost: $ 1190length: 3 day(s)
The C++ Standard Template Library is a large part of the C++ Standard Library. STL consists of three major components: data structures, algorithms and iterators. Every data structure you are likely to want is available, including familiar containers such as array, list, deque, stack, queue, set and others. Also available are a plethora of algorithms, such as sort(), search(), merge(), find() and ...
cost: $ 790length: 2 day(s)
This two-day course is designed for the experienced C++ programmer to help you quickly come up to speed on the C++/CLI language. It is current to Visual Studio 2005 and .NET 2.0, which introduces important new features, such as generic types. This course concisely covers the essentials of programming using Microsoft's C++/CLI programming language. The course is practical, with many example ...
cost: $ 690length: 2 day(s)
For those students who have little programming experience. ...
cost: $ 1750length: 5 day(s)
This course teaches advanced programming techniques using the Win32 API and MFC. It is intended for experienced MFC developers who wish to better understand the fundamental architecture of Windows NT/2000 and Windows 95/98 and to utilize advanced programming techniques to create industrial strength applications. Module 1 begins with an overview of the Win32 architecture and the Win32 API. There ...
cost: $ 1750length: 5 day(s)
This course is a very thorough presentation of Windows programming via an object oriented approach using Visual C++ and the Microsoft Foundation Class Library. The course consists of two modules. The first module covers the essential elements of Windows programming via an object oriented approach using Visual C++ and the MFC. The basic structure of Windows programs and the MFC encapsulation is ...
cost: $ 1290length: 2 day(s)
The intent of this class is to provide students with a solid ...
cost: $ 1750length: 5 day(s)
This course takes a comprehensive look at Win32, the native user mode NT programming interface. It is an advanced course intended for programmers implementing sophisticated applications and for doing systems programming. The student should have previous experience with Windows programming, either at the C/SDK level or using C++ and a class library such as MFC. Attendees will get an understanding ...
cost: $ 1750length: 5 day(s)
This intensive course teaches C++ and Windows programming using Visual C++ and the Microsoft Foundation Class Library (MFC). The course consists of two modules. In the first module object oriented concepts are introduced. The Visual C++ development environment is demonstrated. The C++ class construct is introduced and its key features elaborated step-by-step, providing full implementation ...

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Recently, I asked my friend, Ray, to list those he believes are the top 10 most forward thinkers in the IT industry.  Below is the list he generated. 

Like most smart people, Ray gets his information from institutions such as the New York Times, the Wall Street Journal, the Huffington Post, Ted Talks ...  Ray is not an IT expert; he is, however, a marketer: the type that has an opinion on everything and is all too willing to share it.  Unfortunately, many of his opinions are based upon the writings/editorials of those attempting to appeal to the reading level of an 8th grader.  I suppose it could be worse.  He could be referencing Yahoo News, where important stories get priority placement such as when the voluptuous Kate Upton holds a computer close to her breasts.

Before you read further, note that missing from this list and not credited are innovators: Bill Joy, Dennis Ritchie, Linus Torvalds, Alan Turing, Edward Howard Armstrong, Peter Andreas Grunberg and Albert Fent, Gottfried Wilhelm Leibniz/Hermann Grassmann ... You know the type:  the type of individual who burns the midnight oil and rarely, if ever, guffaws over their discoveries or achievements.

 

I suspect that many of you are familiar with the term "hard coding a value" whereby the age of an individual or their location is written into the condition (or action) of a business rule (in this case) as shown below:

if customer.age > 21 and customer.city == 'denver'

then ...

Such coding practices are perfectly expectable provided that the conditional values, age and city, never change. They become entirely unacceptable if a need for different values could be anticipated. A classic example of where this practice occurred that caused considerable heartache in the IT industry was the Y2K issue where dates were updated using only the last 2 digits of a four digit number because the first 2 digits were hard-coded to 19 i.e. 1998, 1999. All was well provided that the date did not advance to a time beyond the 1900’s since no one could be certain of what would happen when the millennia arrived (2000). A considerably amount of work (albeit boring) and money, approximately $200 billion, went into revising systems by way of software rewrites and computer chip replacements in order to thwart any detrimental outcomes. It is obvious how a simple change or an assumption can have sweeping consequences.

You may wonder what Y2K has to do with Business Rule Management Systems (BRMS). Well, what if we considered rules themselves to be hard-coded. If we were to write 100s of rules in Java, .NET or whatever language that only worked for a given scenario or assumption, would that not constitute hard-coded logic? By hard-coded, we obviously mean compiled. For example, if a credit card company has a variety of bonus campaigns, each with their own unique list of rules that may change within a week’s time, what would be the most effective way of writing software to deal with these responsibilities?

Another blanket article about the pros and cons of Direct to Consumer (D2C) isn’t needed, I know. By now, we all know the rules for how this model enters a market: its disruption fights any given sector’s established sales model, a fuzzy compromise is temporarily met, and the lean innovator always wins out in the end.

That’s exactly how it played out in the music industry when Apple and record companies created a digital storefront in iTunes to usher music sales into the online era. What now appears to have been a stopgap compromise, iTunes was the standard model for 5-6 years until consumers realized there was no point in purchasing and owning digital media when internet speeds increased and they could listen to it for free through a music streaming service.  In 2013, streaming models are the new music consumption standard. Netflix is nearly parallel in the film and TV world, though they’ve done a better job keeping it all under one roof. Apple mastered retail sales so well that the majority of Apple products, when bought in-person, are bought at an Apple store. That’s even more impressive when you consider how few Apple stores there are in the U.S. (253) compared to big box electronics stores that sell Apple products like Best Buy (1,100) Yet while some industries have implemented a D2C approach to great success, others haven’t even dipped a toe in the D2C pool, most notably the auto industry.

What got me thinking about this topic is the recent flurry of attention Tesla Motors has received for its D2C model. It all came to a head at the beginning of July when a petition on whitehouse.gov to allow Tesla to sell directly to consumers in all 50 states reached the 100,000 signatures required for administration comment. As you might imagine, many powerful car dealership owners armed with lobbyists have made a big stink about Elon Musk, Tesla’s CEO and Product Architect, choosing to sidestep the traditional supply chain and instead opting to sell directly to their customers through their website. These dealership owners say that they’re against the idea because they want to protect consumers, but the real motive is that they want to defend their right to exist (and who wouldn’t?). They essentially have a monopoly at their position in the sales process, and they want to keep it that way. More frightening for the dealerships is the possibility that once Tesla starts selling directly to consumers, so will the big three automakers, and they fear that would be the end of the road for their business. Interestingly enough, the big three flirted with the idea of D2C in the early 90’s before they were met with fierce backlash from dealerships. I’m sure the dealership community has no interest in mounting a fight like that again. 

To say that the laws preventing Tesla from selling online are peripherally relevant would be a compliment. By and large, the laws the dealerships point to fall under the umbrella of “Franchise Laws” that were put in place at the dawn of car sales to protect franchisees against manufacturers opening their own stores and undercutting the franchise that had invested so much to sell the manufacturer’s cars.  There’s certainly a need for those laws to exist, because no owner of a dealership selling Jeeps wants Chrysler to open their own dealership next door and sell them for substantially less. However, because Tesla is independently owned and isn’t currently selling their cars through any third party dealership, this law doesn’t really apply to them. Until their cars are sold through independent dealerships, they’re incapable of undercutting anyone by implementing D2C structure.

When making a strategic cloud decision, organizations can follow either one of two ideologies: open or closed.

In the past, major software technologies have been widely accepted because an emerging market leader simplified the initial adoption.  After a technology comes of age, the industry spawns open alternatives that provide choice and flexibility, and the result is an open alternative that quickly gains traction and most often outstrips the capabilities of its proprietary predecessor.

After an organization invests significantly in a technology, the complexity and effort required steering a given workload onto a new system or platform is, in most cases, significant. Switching outlays, shifting to updated or new software/hardware platforms, and the accompanying risks may lead to the ubiquitousness of large, monolithic and complex ERP systems – reason not being that they offer the best value for an organization, but rather because shifting to anything else is simply – unthinkable.

There’s no denying that these are critical considerations today since a substantial number of organizations are making their first jump into the cloud and making preparations for the upsetting shift in how IT is delivered to both internal and external clientele. Early adopters are aware of the fact that the innovation brought about by open technologies can bring dramatic change, and hence are realizing how crucial it is to be able to chart their own destiny.

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A successful career as a software developer or other IT professional requires a solid understanding of software development processes, design patterns, enterprise application architectures, web services, security, networking and much more. The progression from novice to expert can be a daunting endeavor; this is especially true when traversing the learning curve without expert guidance. A common experience is that too much time and money is wasted on a career plan or application due to misinformation.

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.
    1. We have provided software development and other IT related training to many major corporations since 2002.
    2. 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 C++ Programming programming
  • Get your questions answered by easy to follow, organized C++ Programming experts
  • Get up to speed with vital C++ Programming 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…
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