Tuesday, 21 April 2020

What You Need to Create an Online Engineering Portfolio

In the 21st century where everything is connected, it pays to have some form of digital interface where you can show off your work. If everyone from hairstylists to lawyers has digital presences that show off just what they can do, then you as an engineer or an engineering firm probably should too.

As an engineer, chances are you have worked on some pretty cool things. Even if your projects may not feel inherently interesting to you, chances are if you frame them the right way, they can be intriguing points of interest for colleagues or potential clients. One of the best ways to present what you have worked on as an engineer is by putting together some form of a digital portfolio. Rather than a manually presented "jobs with computer science degree" deck, why not try putting together your own website portfolio where anyone at any time can look through your past projects?

Monday, 20 April 2020

Integrating engineering with management: How NMIMS is leading the way

With technology transforming businesses across the globe, the professional landscape has become a dynamic space. Companies are now betting big on talent that is trained to meet new age demands, possess inter-disciplinary skills, and can innovate to keep up with industry rapids. This has, therefore, put an added impetus on young students to opt for courses that make them market competitive and industry-ready. 

One field of study that has been massively impacted by this is engineering. As the world experiences a new wave of computer engineering vs computer science  and rapidly adopts technologies like internet-enabled smart devices, autonomous vehicles, Machine Learning tools, Artificial Intelligence, among others, the B. Tech degree has become all-encompassing. 

Companies are now looking for human resources who are not only experts at emerging technologies in their domain but also understand its impact on company’s goals and business practices. This development has put the spotlight on business management techniques and analytical skills in engineering graduates.

Friday, 17 April 2020

Error Analysis: Share What You've Learned from Your Engineering Errors

The best electrical engineers, engineering students, and electronics makers look for opportunities to learn from their engineering errors. And they are always hungry for tips and tutorials that will help them succeed when designing, programming, testing, and launching new electronics projects, products, and applications. In a new series called "Error Analysis," our editors and staff engineers will share insights from computer science vs software engineering about engineering-related errors, mistakes, and mishaps. And, of course, we will detail important tips and tricks that will help others improve their design, testing, and programming skills. 

What Have You Learned from Your Engineering Errors?

Would you like to share details about your own engineering errors and experiences? Whether you are a pro engineer with embedded systems design experience or a weekend maker who loves DIY projects, we would like to hear from you. Take a few minutes and simply fill out our "Error Analysis" form so Elektor's team of editors and engineers can review your experience. Our team will consider the more helpful submissions for possible publication on our sites and in our magazines, such as Elektor, Elektor Industry.

Thursday, 16 April 2020

Computer Science Metamorphosis

Computer science program moves to the engineering department to better prepare students for industry changes
In July 2019, the Colorado Mesa University computer science program found a new home in the university’s expanding Department of Engineering — now the Department of Computer Science and Engineering.

Moving the program from the Department of Mathematics and Statistics to engineering makes a lot of sense, according to Scott Kessler, PhD, department head of computer science
and engineering.

“Computer science has morphed over time,” he said. “What began as a part of the math and business departments has grown in importance for mechanical engineers. They need to learn coding and
what to do with a computer science degree.


Facilitating this change is the rise of mechatronics, a multidisciplinary branch of engineering combining electrical and mechanical systems.

“There isn't’t much of anything you touch that doesn't’t include embedded electronics,” said Kessler, pointing to everyday items like coffee makers and cars. “Because code drives the hardware, the design process is not linear. We see a serious need for engineers that understand electrical engineering and can write code, and computer science grads who can write code and understand how hardware works.“

Wednesday, 15 April 2020

What can you do with a masters in Computer Science?

The computer science industry is currently one of the fastest growing industries in the world. It exceeds the average increase in most other occupations by nearly 50%.

One of the main reasons for the increase has been the ever-changing technology landscape and the demand for skilled professionals who have new and changing expertise. Keep reading below to find out what jobs you could apply for once you have a masters in computer science.

While there are numerous computer science jobs available, there aren’t enough qualified individuals to fill them. The reason for this is that most of the jobs in this sector require niche skills. Most people in this industry have a bachelor’s degree qualification. A bachelor’s degree is a brilliant starting step, but it won’t allow you to apply for some of the more senior computer science roles. A lot of companies look for individuals who have a more in-depth knowledge, such as those who have completed a master’s degree. Click here to find out more information about Canada’s most popular degree; a masters in computer science major jobs.

There are thousands of jobs available in the computer science industry. 24% of the roles available are only available to people who have completed a master’s degree. Pursuing this degree could provide you with the edge you need to get one of these job

Tuesday, 14 April 2020

Making big data processing more energy efficient using magnetic circuits

The rapid progression of technology has led to a huge increase in energy usage to process the massive troves of data generated by devices. But researchers in the Cockrell School of Engineering at The University of Texas at Austin have found a way to make the new generation of smart computers more energy efficient.

Traditionally, silicon chips have formed the building blocks of the infrastructure that powers computers. But this research uses magnetic components instead of silicon and discovers new information about how the physics of the magnetic components can cut energy costs and requirements of training algorithms -- neural networks that can think like humans and do things like recognize images and patterns.

"Right now, the methods for training your neural networks are very energy-intensive," said Jean Anne Incorvia, an assistant professor in the Cockrell School's Department of Electrical and Computer Engineering. "What our work can do is help reduce the training effort and energy costs."

The researchers' findings were published this week in what is computer engineering Nanotechnology. Incorvia led the study with first author and second-year graduate student Can Cui. Incorvia and Cui discovered that spacing magnetic nanowires, acting as artificial neurons, in certain ways naturally increases the ability for the artificial neurons to compete against each other, with the most activated ones winning out. Achieving this effect, known as "lateral inhibition," traditionally requires extra circuitry within computers, which increases costs and takes more energy and space.

Monday, 13 April 2020

VVDN Technologies Announces O-RAN Fronthaul IP for Both the DU & RU 7-2x Split Options

VVDN Technologies announces its Fronthaul Solution based on the O-RAN 7-2x functional split option between gNB-DU and gNB-RU. The IP can support multiple fronthaul interfaces and each fronthaul can carry up to 8 Layers of uncompressed IQ samples, each of 100MHz bandwidth with SCS of 30 kHz over a 25G interface and it will be further focused on the following

eCPRI IP Solution for O-RAN Transportation

IEEE 1588 PTP support block IP for Synchronization
Smart Interconnect for Packet classification and Quality of Service (QoS)
Support multiple compressions/de-compressions like Block floating-point (BFP) and modulation compression

Scalable Architecture

Mr. Joseph George,Vice President Business Unit (5G/Data-Centre) said,"We are potentially committed to growing in the what does a computer engineer do space and are trying to make the process seamless by addressing the diverse challenges with our focused engineering expertise".When asked about the challenge this solution will address,He further added,"Open-Radio Access Network (O-RAN) will deliver truly open fronthaul interfaces,in which multi-vendor DU-RRU interoperability can be realized along with high throughput and very low latency".

Difficulties are seemingly more basic and pressing than the actual blackouts

 These difficulties are seemingly more basic and pressing than the actual blackouts. For some telecoms, enormous separates actually exist be...