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The post proved unusually divisive, and comments flooded in. (It’s now been viewed nearly half a million times.) Reactions were split between those who felt Etherable was cheating, or at least deceiving, the employer, and those who thought the coder had simply found a clever way to perform the job at hand. Etherable never responded to the ensuing discussion. Perhaps spooked by the attention—media outlets around the world picked up the story—the user vanished, leaving that sole contribution to an increasingly crucial conversation about who gets to automate work and on what terms.
#2: Higher Employee Satisfaction – Anyone that’s ever held a position as an intern knows that menial, robotic tasks are extremely bad for motivation & enjoyment of work. No matter how you look at it, no one’s going to enjoy doing grunt work all day. If such things can be automated, both you (see point #1) and your employees will be happier (doing more meaningful work).
From its founding in Birmingham, Alabama in 1990, Automation Personnel Services has expanded across the United States with district offices that operate in Alabama, California, Florida, Georgia, Tennessee, Mississippi, North Carolina, South Carolina, Virginia, Louisiana, and Texas. Automation Personnel Services has the resources and expertise to provide cutting-edge, cost-effective workforce solutions to companies and industries of all sizes including, manufacturing, electronics, distribution, engineering, and wholesale sales.
Information technology, together with industrial machinery and processes, can assist in the design, implementation, and monitoring of control systems. One example of an industrial control system is a programmable logic controller (PLC). PLCs are specialized hardened computers which are frequently used to synchronize the flow of inputs from (physical) sensors and events with the flow of outputs to actuators and events.
A smart home is a home that is equipped with technology to remotely control and automate household systems like lighting, doors, thermostats, entertainment systems, security alarms, surveillance cameras and other connected appliances. But it’s more than just remote controls. Smart home introduces artificial intelligence to transcend the remote controls and programmable settings that have been standard home features for the past several decades, to create a centralized, self-regulating home monitoring, control, and energy conservation ecosystem. Learn more about smart home here.
TL;DR: Testing is a sophisticated task that requires a broad set of skills and with the means currently available cannot be automated. What can (and should) be automated is regression testing. This is what we usually refer to when we say test automation. Regression testing is not testing, but merely rechecking existing functionality. So regression testing is more like version control of the dynamic properties of the software.
Agent-assisted automation refers to automation used by call center agents to handle customer inquiries. There are two basic types: desktop automation and automated voice solutions. Desktop automation refers to software programming that makes it easier for the call center agent to work across multiple desktop tools. The automation would take the information entered into one tool and populate it across the others so it did not have to be entered more than once, for example. Automated voice solutions allow the agents to remain on the line while disclosures and other important information is provided to customers in the form of pre-recorded audio files. Specialized applications of these automated voice solutions enable the agents to process credit cards without ever seeing or hearing the credit card numbers or CVV codes
Process Automation can better described as a strategy, which explains how a digital transformation software and the use of advanced technology methods, can easily help in automation of a set of company activities that usually repetitive. Companies that choose BPA aim to optimize collaboration between resources, reduce costs, provide transparency and assure compliance of the repetitive business processes.
In 2016, an anonymous confession appeared on Reddit: “From around six years ago up until now, I have done nothing at work.” As far as office confessions go, that might seem pretty tepid. But this coder, posting as FiletOFish1066, said he worked for a well-known tech company, and he really meant nothing. He wrote that within eight months of arriving on the quality-assurance job, he had fully automated his entire workload. “I am not joking. For 40 hours each week, I go to work, play League of Legends in my office, browse Reddit, and do whatever I feel like. In the past six years, I have maybe done 50 hours of real work.” When his bosses realized that he’d worked less in half a decade than most Silicon Valley programmers do in a week, they fired him.
What if all the devices in your life could connect to the internet? Not just computers and smartphones, but everything: clocks, speakers, lights, door bells, cameras, windows, window blinds, hot water heaters, appliances, cooking utensils, you name it. And what if those devices could all communicate, send you information, and take your commands? It's not science fiction; it's the Internet of Things (IoT), and it's a key component of home automation and smart homes.
The increased level of production is important to companies developing software for rapid (sometimes daily) release. Companies like Google automate testing to scale their software development process and release products that billions of users rely on daily. Google created new testing roles and job titles for their engineers when they realized the benefits of automated testing during their rapid growth. Their efforts resulted in higher quality, more reliable, and more frequently released software.
It was a preoccupation of the Greeks and Arabs (in the period between about 300 BC and about 1200 AD) to keep accurate track of time. In Ptolemaic Egypt, about 270 BC, Ctesibius described a float regulator for a water clock, a device not unlike the ball and cock in a modern flush toilet. This was the earliest feedback controlled mechanism. The appearance of the mechanical clock in the 14th century made the water clock and its feedback control system obsolete.