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In State of University Address, President Hemphill Announces Plans for School of Data Science, Expanded Baseball Stadium – Old Dominion University

Old Dominion University President Brian O. Hemphill, Ph.D., announced plans for a School of Data Science and an expanded baseball facility during his first State of the University address, which he delivered Friday at Chartway Arena.

The University is in the final stages of submitting a proposal to the State Council of Higher Education for Virginia regarding the School of Data Science, he said.

Through partnerships with Jefferson Lab and NASA Langley, researchers from these national labs will have ODU faculty status. Also, ODU faculty and students will have special access to these national lab collaborations and facilities.

"This is truly a win-win for ODU and our partners," President Hemphill said.

The baseball stadium project exists thanks to the generosity of several donors, including Priority Automotive President and CEO Dennis Ellmer, who gave $2.5 million.

"ODU is honored that the expanded facility will be known as the Ellmer Family Baseball Complex," President Hemphill said. (See related story.)

In a further announcement, the ODU leader said the University was in the first phase of a multiyear effort to increase stipend levels for graduate assistants. Master's students with teaching assistant duties will receive $15,000 - a boost of $5,000 - to support the institution's mission of teaching, as well as research.

Stipends for doctoral students will increase from $15,000 to $20,000, effective immediately, President Hemphill said.

Among other achievements he highlighted from the past year was ODU's designation in December 2021 as an R1 research university by the Carnegie Classification of Institutions of Higher Education. This placed ODU among the nation's top research institutions.

"This is a truly significant accomplishment and will forever change the future possibilities for our institution and our students," President Hemphill said.

But his vision is grander still.

"We are truly committed to moving up among our R1 counterparts with a bold and aggressive agenda across all research areas, with a special emphasis on maritime, coastal resiliency, offshore wind energy, data science, cybersecurity, autonomous systems and health care."

On the health care front, President Hemphill cited the University's expanded work with Eastern Virginia Medical School and a deepening collaboration with Sentara Healthcare and other partners. Since the summer of 2021, the entities have been meeting to explore the establishment of an academic health sciences center to address health disparities facing the region and its people, President Hemphill said.

"A strategic integration between EVMS and ODU would result in an academic health sciences center that offers the highest number of academic programs and the largest enrollment in health sciences in the Commonwealth of Virginia," he said.

The proposed integration would strengthen and increase the workforce pipeline in Hampton Roads, he said, creating an economic impact of $4.9 billion for Virginia.

Highlighting other initiatives in progress, President Hemphill updated the audience on construction of what he called "state-of-the-art facilities that create a learning environment that is second to none."

The Health Sciences Building, a capital project of more than $76 million, is taking shape at 41st Street and Monarch Way and is scheduled to be finished in summer 2023. The three-story building will house the School of Dental Hygiene, the School of Rehabilitation Sciences and the School of Medical Diagnostic and Translational Sciences.

During the most recent legislative session, the University secured $188 million in project funding for a new Biology Building. With more than 160,000 square feet across five floors, it is scheduled to be ready in 2026, replacing the Mills Godwin Life Sciences Building.

Regarding athletics, President Hemphill spoke about the "new era" Old Dominion entered in July of this year when it joined the Sun Belt Conference.

"For ODU, the conference movement was always about providing the very best experience for our student-athletes as well as our fans," he said. "We are honored to join the Sun Belt and look forward to a great deal of collaboration and competition in our inaugural season and beyond."

President Hemphill also:

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In State of University Address, President Hemphill Announces Plans for School of Data Science, Expanded Baseball Stadium - Old Dominion University

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Casting for data on microplastics in the ocean – Virginia Tech Daily

The new endeavor is possible because of the generosity of Virginia Tech alumni Bill and Carol Seale, who have committed a $2 million gift to the project.Their generous support has enabled Weiss and his team to develop a comprehensive plan to begin ocean monitoring. The Coastal Zone Observatorys work is a critical step forward to help us become better stewards of the worlds oceans, which are arguably our most critical resource on Earth, said Bill Seale.

According to Weiss, our knowledge of the marine environment apart from the presence of microplastics is full of holes. Thats in part because the ocean itself is a fickle source of data.

We know the resolution of the surface of Mars better than the surface of our ocean floor, Weiss said. But thats topography just on the seafloor. Now imagine how little we know about how conditions are when the water in the ocean is constantly moving. How can we describe a condition in a certain area if its constantly changing? If the moment you measure it, its gone?

Researchers at the Coastal Zone Observatory will collect ocean data such as temperature and turbidity the ability of sunlight to travel into depth in a way that adapts to the oceans transience. They'll use sensor-equipped swarms of underwater robots developed by a team of engineers led by Dan Stilwell, an electrical engineering professor in the College of Engineering and director of the Virginia Tech Center for Marine Autonomy and Robotics.

It is energizing to watch the Seale Coastal Zone Observatory rapidly take shape, said Kevin Pitts, dean of the College of Science. The pollution of our oceans is worsening by the day, and Im excited to see researchers in the Colleges of Science, Engineering, and veterinary medicine collaborate to learn more about these issues and find ways to help mitigate a global problem.

The approach rethinks the way we take ocean data, Weiss said. He believes it can help the team establish a data set that reflects the marine environment as its shaped by climate change over time. Autonomous vehicles give researchers a much more dynamic method for measuring environmental conditions, with the ability to move through ocean depths and with currents to follow the data. Eventually, the team can then operate those vehicles to collect microplastics concentrations and learn how theyre affected by the ocean conditions in flux around them.

Lets say, in the future, we have a sensor that would allow us to determine in situ, very quickly, the concentration of microplastics, said Weiss, who is director of the Academy of Integrated Science, also part of the College of Science. We can follow the value of concentrations in the ocean, and by the motion of the vehicle, we can determine how these concentrations evolve over time. So that gives us a much more comprehensive, and full, data set to understand how microplastics move in the ocean. What conditions, like temperature, are they dependent on?

As researchers gather data on the marine environment, others at the Coastal Zone Observatory will study the impact of microplastics on marine life as that impact extends from individuals to species and moves up the food chain. In the Chesapeake Bay area, biologists from the College of Science and veterinarians from the Virginia-Maryland College of Veterinary Medicine will study the effects of ingesting microplastics on fish used for seafood. Others will collaborate with biologists from Radford University and Connecticuts Fairfield University to study microplastics consumption by tilapia and Magellanic penguins and learn which types of microplastics affect coastal organisms the most.

The Center for Coastal Studies is part of the Fralin Life Sciences Institute. Weiss launched the center in 2020 to coordinate research, teaching, and outreach aimed at ensuring a more sustainable coexistence of humankind and nature within coastal communities.

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Next Generation Computing Market |(CAGR) of 19.5%| Is Likely to Experience a Tremendous Growth in Near Future -2030 – Taiwan News

Report Ocean published a new survey report on the Next Generation Computing market. The research offers crucial details about growth plans, business opportunities, trends, innovations, the competitive environment in 2021, and a geographical outlook that takes into account North America, Europe, the Asia-Pacific region, Latin America, the Middle East, and Africa.

Market Overview

The comprehensive analyses of the most recent trends, growth prospects, and market growth drivers are offered to readers of the global market research reports. The COVID-19 effects on the Next Generation Computing market are also discussed in detail in the research, along with the markets predicted compound annual growth rate (CAGR) from 2022 to 2030.

The research also provides a market analysis using various analytical techniques, including Porters Five Forces Analysis and PESTEL Analysis. These tools provide an in-depth analysis of the micro- and macro-environmental elements that influence the markets expansion during the forecast period.

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Next-generation computing technologies are evolving with the emergence of new technologies and research disciplines such as distributed computing, artificial intelligence, machine learning, deep learning, cloud computing, parallel computing, grid computing, and related applications. Manage data, applications, etc., provide much more efficient data processing by centralizing storage, memory, processing, bandwidth, etc., by using the Internet and centralized remote services. It can also centralize all the computing resources and manage them automatically via software without intervention.

The global next-generation computing market size was US$ 158.3 billion in 2021. The global next generation computing market size is forecast to reach US$ 785.1 billion by 2030, growing at a compound annual growth rate (CAGR) of 19.5% during the forecast period from 2022 to 2030.

Factors Influencing Market Growth

Impact Analysis of COVID-19

The next-generation computing market has grown in recent years. However, due to the COVID-19 pandemic, software revenues declined slightly in 2020. Most countries implemented a lockdown and closed cities to prevent the virus from spreading. The next-generation computer market is likely to thrive in the coming years after recovering from the COVID 19 pandemic. In addition, various organizations in Asian countries were using advanced computing technology to improve business processes and improve operational efficiency. In addition, various countries have installed quantum computing applications and are adopting quantum computing solutions for healthcare and life science operations without the transmission of viruses.

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Regional Insights

The Asia Pacific is forecast to witness lucrative growth during the forecast period. Strong economic growth and continued development of next-generation computing and real-time data analytics are driving companies to invest heavily in the next-generation computing market to sustain growth and increase productivity. In addition, prominent players are focusing on optimizing their operations and enhancing their overall efficiency to stay competitive in the market, which is forecast to provide lucrative opportunities for the market during the forecast period.

Leading Competitors

The leading prominent companies profiled in the global next-generation computing market are:

Scope of the Report

The global next-generation computing market segmentation focuses on Type, Enterprise Size, Component, Offering, End-User, and Region.

Segmentation based on Type

Segmentation based on Enterprise Size

Segmentation based on Component

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Segmentation based on Offering

Segmentation based on End-User

Segmentation based on Region

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Next Generation Computing Market |(CAGR) of 19.5%| Is Likely to Experience a Tremendous Growth in Near Future -2030 - Taiwan News

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Artificial intelligence (AI) engineer: Learn about the role and skills needed for success – VentureBeat

Were you unable to attend Transform 2022? Check out all of the summit sessions in our on-demand library now! Watch here.

The engineers who build and manage AI systems are increasingly valuable to companies across industry sectors. Unsurprisingly, the demand for their services outstrips the supply.

But what is the role of an AI engineer? What are the key qualifications for the role? What really makes a good one? And how can they be made maybe even from current developers on staff if not found? Alternatively, how can the functionality otherwise be filled?

An AI engineer develops, programs, trains and deploys AI models. With 86% of companies in a recent survey reporting that AI is becoming mainstream in their businesses, the AI engineer has become a central figure.

While a data scientist focuses on finding and extracting business insights and applicable data from large datasets, an AI engineer comes from an IT infrastructure background and is charged with developing the algorithms for an AI application and integrating the application into a companys broader tech environment. An engineer focused on algorithms may also be known as a machine learning (ML) engineer. Someone who specializes in integrating AI applications with an organizations other technology may be known as an AI architect. Additionally, a professional specifically focused on writing code might have the title of AI developer.

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MetaBeat will bring together thought leaders to give guidance on how metaverse technology will transform the way all industries communicate and do business on October 4 in San Francisco, CA.

[ Also read: 97% of execs say data science is crucial to maintaining profitability ]

Because an important part of an AI engineers job is applying AI to real-world use cases, these workers must understand the problems their companies face and find ways that AI can help solve them. That often includes collaborating with other departments and teaching others about AIs potential.

AI engineers are highly skilled. They face a wide-open job market and are well compensated.ZipRecruiter reports that the average salary of an AI engineer is upwards of $158,000 a year, with top earners offered as much as $288,000 annually. Many companies employing these professionals also offer attractive benefits for these positions. AI engineering is a reasonably future-proof career, as AI is only becoming increasingly important to everyday life.

AI engineers typically require expertise in three broad areas:

Although more AI-specific courses are being added to undergrad and graduate programs all the time, many AI engineers have honed their specialties with certifications or a few courses to augment their foundational degrees.

AI engineers generally need at least a bachelors degree in a field such as computer science, IT, data science or statistics. Some positions may even require a masters degree.

An advanced degree in a related area will qualify applicants for more positions. However, it may become less of a necessity over time. As the need for these workers rises, more companies are seeking experience over education.

Relevant certifications may be more useful. Taking extra AI engineer courses and exams can earn job-seekers AI-specific certifications that ensure they have the needed skills. On top of grabbing employers attention, these certifications will indicate an applicant has some helpful real-world experience with the day-to-day work of AI engineering.

This means a relatively broad pool of tech professionals may be candidates for a mid-career specialty in AI. Such workers, of course, must be able and motivated, and they may be found within or beyond an employers organization.

[ Also read: Creating a powerful data department with data science ]

Lets look at some of the more specific skills required of an AI engineer:

One of the most important skills to have as an AI engineer is proficiency in at least one programming language. Ideally, applicants should have experience working with multiple languages, as some companies may prefer working in one language over another. The more diverse experience, the better.

The top programming languages in the field include:

Python is the most popular language for machine learning applications and the third most popular overall, so is often considered a default requirement for the role. Students should work with at least a few languages in their AI engineering courses, but many professionals are self-taught to at least some degree, and they have likely demonstrated proficiency with personal projects.

While general programming knowledge is important, engineers also need to accrue AI-specific experience. Building and training AI models is a unique practice, and those interested in an AI career seek varied opportunities to build this expertise.

Cultivating this experience is a lot like gaining proficiency in programming languages, and it is best done by working with various types of AI models, including linear regression, classification algorithms, decision trees and deep neural networks. Experimenting with different models can also help AI engineers discover what they enjoy working with the most.

Learning to work with models also resembles the programming language process. Students in AI engineering courses will build and test a few models in their studies, but personal research is valuable too. Forums and exchanges like GitHub are good places for support with AI projects.

AI engineers need a strong grasp of applied mathematics fields such as linear algebra and statistics. Different models require an understanding of different mathematical concepts. Engineers must know how to apply derivatives and integrals to tackle gradient descent algorithms, while probability theory and Gaussian distributions are important for Hidden Markov models. A college-level mathematics education will often provide the skills necessary.

An AI engineers work revolves around data, and data literacy is one of the most important skills to have when entering this field. AI engineers should be able to read, understand, analyze and apply data to various use cases.

Formal data science and statistics classes are useful, but the best practice is engaging with data projects first-hand, which is another reason why experienced tech workers may be good candidates to develop for the role.

Soft skills are also important in this field, although they are often harder to gauge. One of the most important soft skills in AI engineering is critical thinking.

AI models can be complicated, and the solution to a problem is rarely immediately evident. As a result, delivering timely and accurate results with these technologies requires a fast, creative approach to problem-solving.

AI engineers must be able to think through multiple solutions and determine the best course of action.

A skill that is sometimes overlooked but useful for AI engineers to have is a strong grasp of business concepts. Operations optimization and product enhancement are the most common AI use cases for businesses, so AI engineers should understand how these processes work. Effective AI application requires an understanding of how the company operates.

AI is only as effective as its users ability to apply it to their end goals. Top-performing AI engineers know not just how to build functioning AI models, but also how these models can help businesses serve their unique needs. That means understanding general business concepts and company-specific considerations.

Engineers can develop their business acumen in formal courses and/or by working with colleagues in other departments.

Another crucial soft skill to have is communication. AI engineers must be able to explain to their non-technical colleagues how different AI solutions might help teams reach their goals.

A lack of understanding of how AI can benefit businesses is the second-largest barrier to adoption, according to Gartner, with 42% of chief information officers (CIOs) citing it as a problem. Knowing how to explain AI concepts will improve cooperation.

As the technology becomes more important to a wider variety of business functions, AI engineers will work with more departments. They must be able to communicate with other workers effectively for these relationships to work. Presentation and summary skills are particularly critical.

Along those same lines, AI engineers must have excellent teamwork skills to thrive in the current market. This goes beyond telling other departments how to use AI models effectively. AI engineers must be open to feedback and cooperate with other workers to understand the challenges they face.

Many AI engineers also work in groups, even within their own departments and projects. If they are unable to work well with others, they will struggle to excel in the industry. Conversely, strong collaborative skills will help them find effective solutions faster.

Experience working in groups helps naturally build these skills, too, so prospective engineers should seek collaborative projects to improve in this area. The better they can work as part of a team, the more success theyll have in the field.

Building, testing and deploying AI models is often a time-consuming process, and time management is vitally important.

A recent study found that 83% of developers suffer from workplace burnout, with high workloads being the leading cause. While AI engineers may have little control over their workloads, they can adapt their habits to make the most of them. Of course, company culture and strong management are important for keeping such valuable professionals in peak form.

Artificial intelligence engineers should also gain experience in related technologies. Gathering relevant data and deploying AI models will likely involve working with technologies like internet of things (IoT) devices, robotics and cloud computing. Most AI projects fail, and the lack of an integrated environment is one of the most common reasons. If AI engineers hope to deploy their models effectively, working across a companys unique IT environment is important. That means understanding the various technologies they may use.

The AI engineers role is essential and in-demand, but the AI industry is developing tools and options to enable less-specialized workers to build out applications as well:

Organizations will adapt their solutions to their size and resources, the strategic importance of their implementations and their staffing markets and philosophies, and AI skills will continue to be diffused across the wider tech environment. The role of the AI engineer is still gaining importance and will be key to many companies adoption of the technology.

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Artificial Intelligence Is Being Used To Make A Movie – Giant Freakin Robot

By Nathan Kamal| Published 1 day ago

The advent of artificial intelligence promises to change nearly every aspect of human existence, so it makes sense that we will begin with our movie-going experience. We joke, of course. Artificial intelligence has already been here for some time and is constantly growing and changing in unexpected (but often regrettably racist) ways, so its not like filmmaking was first on the docket for this sea change in technology. However, people are beginning to experiment with just how they can use this new aspect of computer technology to create art and a German entrepreneur thinks he has found at least one way.

According to The Byte, German tech entrepreneur Fabian Stelzer is working to create an (almost) entirely artificial intelligence-made movie titled Salt. By using freely available online image-generating software like Midjourney, DALL-E 2, and Stable Diffusion and voice-generators like Murf, Stelzer is building a science fiction movie in serial installments. Basically, Stelzer gives text prompts to these artificial intelligence programs, they build images and voices, and those are edited together to create a narrative. Stelzer views it as a community choice driven story, in which the suggestions of viewers are used to build the next step of the plot. In a sense, it is similar to a Choose Your Own Adventure story, except that rather than human ghostwriters under the employ of Bantam Books, artificial intelligence is creating imagery that feeds to human imagination, which loops it back to the machines for the next step. Neat, right? You can actually see part of what is being developed here:

Salt appears to take its visual cues from lo-fi science fiction films of the 1970s like Silent Running and Dark Star. In particular, it has some real vibes of the original Ridley Scott Alien. From what can be seen from the artificial intelligence-generated footage, Salt appears to be centered on a group of space explorers (possibly some kind of miners or industrial workers, as in Alien) discovers a planet with overwhelming lodes of salt. There are flashes of ships floating in orbit, dark caverns full of mineral deposits, and some real spooky stuff. All of the voices (except Fabian Stelzers) are artificial intelligence-derived, which makes all of this a fascinating look.

As of right now, the artificial intelligence tools being used to make Salt can only work in still images, so it is not exactly a motion picture. However, there is certainly a history of science fiction films that take advantage of the still image (just ask 12 Monkeys), so that does not necessarily detract from what is being done here.

Given that Fabian Stelzer is described as an entrepreneur, it should be no surprise that he describes the project in overwhelmingly hyperbolic terms. Speaking to PCMag, Stelzer describes the experiment as part of a movement in artificial intelligence that rivals the development of photography itself. Not to speak in small terms, he says it might even be akin to the development of the written word, ie, the foundation of most of civilization. But even taking that with a grain of you know what, Salt looks pretty cool.

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‘Step the Brain Along a Path’ explores artificial intelligence and neuroethics through dance WABE – WABE 90.1 FM

Our experiences, self-perception and how we interpret the world around us all emanate from our brains. Interacting with the brain through artificial intelligence that is, AI or other technology can change our understanding. Terminus Modern Ballet Theatre partnered with Georgia Tech Arts, celebrated choreographer Troy Schumacher and the acclaimed new media artist Sergio Mora-Diaz to explore neuroscience and the ethics of intervention with technology.

The world premiere of Step the Brain Along a Path is on stage at the Ferst Center for the Arts this weekend, Sept. 9 and 11. Choreographer Troy Schumacher joined City Lights host Lois Reitzes via Zoom along with Dr. Christopher Rozell, professor of electrical and computer engineering at Georgia Tech, and Dr. Karen Rommelfanger, president and founder of the Institute of Neuroethics.

Interview highlights:

A brief introduction to the emerging field of neuroethics:

Simply put, neuroethics explores the ethical, legal and social implications of neuroscience. So on a daily basis, Im exploring things like how neuroscience and emerging neurotech will impact identity, personhood, privacy and, actually, pretty much life as we know it, Rommelfanger explained. It really emerged alongside the advances of science, not separately from them Even with things like brain injury, memory loss that comes with that, or diseases like dementia, you hear an expression of loss of personal identity that you just wouldnt hear with something like an appendectomy. Now we can create technologies that can help alleviate that kind of suffering in marvelous ways and even possibly augment and enhance that brain function, to enable us to have really powerful lives.

How a choreographer can express neurotechnology themes through dance:

Ive created this entire scenario in which people are tasked with thinking about how they would specifically choose to benefit from a technology like this, whether thats improving your memory, improving your physical control, improving your emotional control, improving your focus and things like that, Schumacher said. Each character in this ballet has a very specific motivation for why they would want to interface with a computer, and the entire work is broken up into different sections where we follow these specific people.

He went on, One of them is trying to slow down their experience of time. One of them is trying to remember something. One of them is trying to improve their physical control. Another one is trying to improve their emotional control. And then finally, we get into this situation where these devices become, maybe, widespread, and then children might end up becoming involved in this process and in this task with surviving in society.

New media artist Sergio Mora-Diazs interactive projections within the show:

When everybody gets to the theater, there is going to be a link where they go, and they take a short quiz, where they basically anonymously provide their thoughts on some of these ideas, like, How would you choose to benefit from technologies? And then it goes into a lot of ethical questions, Schumacher said. What Sergio is doing in the midst of these really beautiful abstract representations of the brain, and action potentials and data is actually, the performance is visually directly impacted by the audiences answers. So the audience gets to see how everybody else in the audience feels about certain topics, and then the audience gets to watch a specific dancer whose character feels a very specific way about these topics. So its all very beautifully integrated into a larger visual world.

Step the Brain Along a Path, presented by Terminus Modern Ballet Theatre and Georgia Tech Arts, takes place Sept. 9 and 11 at the Ferst Center for the Arts at Georgia Tech. Tickets and more information are available at http://www.terminusmbt.com/events/step-the-brain-along-a-path.

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Artificial Intelligence Shows Nefertiti, Julius Caesar And Mo Whether They Exist Today – Nation World News

According to AI Nefertiti would look like this

artificial intelligence In recent years, he has taken on the task of creating images related to a variety of subjects such as art, entertainment and world history.

A Brazilian artist named . Is Hidrelli Diao, Visually presenting symbolic characters of ancient and past civilizations, but rendering them with the present style Algorithms and various artificial intelligence technologies.

The Brazilian is the first to use comprehensive artA website that works with artificial intelligence and Creates artistic images based on machine learning Then he went to Remini, Gradient and FaceApp to create a portrait with the results already achieved, and finally, he makes some adjustments with Photoshop.

To give it a touch of reality, the artist searched the Internet for pictures of people with characteristics similar to the character and then superimposed both images, retouching their eyes and finally achieving that believable appearance.

But Hidrelli Diao hasnt stopped from representing historical figures like Napoleon Bonaparte or George Washington, having drank in a bar, hes also recreated animated characters and childrens stories such as snow White,

Even these hyper-realistic representations of cartoon characters have become the most popular on the web, as people have found it very funny to watch famous figures like Shrek, Fiona, El Chavo Del 8, but especially the Simpsons. Moe Joe has been one of his creations that has turned the most on the internet.

Similarly, South American paintersOr has it shown the world what young leaving the world celebrities like Princess Diana, Freddie Mercury or Marilyn Monroe would look like. And at the same time, he imagined how the characters in Stranger Things would look like people over 50 years old like Eleven who would be 53 today.

One work that caused some trouble to users was that of Adolf Hitler, who was portrayed as an older adult male.

for stories DisneyPrince Eric from The Little Mermaid seemed to be one of the most surprising results to the artists followers, with some users saying that if he were a real man, he would be very handsome.

Hollywood stars who did not get the expected results after going under the knife were also a source of inspiration for the artist, Who showed Instagram users with artificial intelligence how Donatella Versace, Melanie Griffith or Mickey Rourke would look.

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Artificial Intelligence Shows Nefertiti, Julius Caesar And Mo Whether They Exist Today - Nation World News

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Artificial Intelligence in Diagnostics Market: Increasing Utilization of AI in Different Medical Care Fields to Drive the Market – BioSpace

Wilmington, Delaware, United States, Transparency Market Research Inc. The increasing need for improving patient care and reducing treatment costs is a primary factor augmenting the growth of global artificial intelligence in the diagnostics market. The growing adoption and popularity of artificial intelligence in clinical imaging brings about quicker judgments and decreased mistakes when contrasted with a conventional examination of pictures delivered by X-beams and MRIs. Simulated intelligence brings more abilities to most diagnostics, including malignancy screening and chest CT tests pointed toward detecting COVID-19.

The global artificial intelligence in the diagnostics market is classified based on component, diagnosis type, and region. In terms of components, the market is divided into three parts namely, services, hardware, and software. Based on classification by diagnosis type, the market is grouped into neurology, chest and lung, radiology, pathology, oncology, cardiology, and others.

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The report provides an in-depth analysis of the global artificial intelligence in the diagnostics market and emphasizes the prime growth trajectories. Besides this, the report also highlights the impact of the novel COVID19 pandemic on this market and how revenues can be drawn for this market in the coming years. The report also discusses the table of segmentation in detail and lists the names of the leading segments and players functioning in this market. The report is available for sale on the company website.

Artificial Intelligence in Diagnostics Market: Company Profile

Companies operating in the global artificial intelligence in the diagnostics market are indulging in joint ventures and collaborative efforts to gain an upper hand in the overall market competition. Apart from this, players are also investing in the research and development of better therapeutics via artificial intelligence and machine learning to gain an upper hand in the overall market competition.

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Some of the prominent players of the global artificial intelligence in the diagnostics market include:

Artificial Intelligence in Diagnostics Market: Notable Developments

Clalit Health Services and Zebra Medical Vision entered into a strategic partnership for the development of cloud-based imaging AI to serve large-scale HMOs in November 2020.

Artificial Intelligence in Diagnostics Market: Trends and Opportunities

Increasing utilization of AI in different medical care fields, including diagnostics and the rising commonness of constant sicknesses, is a portion of the key variables driving the reception of artificial intelligence in diagnostics, is bolstering growth. Likewise, the growing deficiency of the general wellbeing labor force is further supporting the development and reception of innovation-based answers for better persistent administration and analysis.

The rising interest for reducing the expense of determination, reducing machine personal time, and enhancing patient consideration is a portion of the key elements propelling the utilization of AI-based analytic arrangements. Also, increasing interest and need for financially savvy symptomatic advances and methods, speedy demonstrative information age and solidification, and proficient report investigation are a couple of different variables expected to drive the development of this market. This has prompted the improvement of AI arrangements that would to cater these growing necessities.

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Artificial Intelligence in Diagnostics Market: Regional Analysis

Geographically, North America is holding the largest share in the global artificial intelligence in the diagnostics market on account of the presence of an established healthcare infrastructure facility and the latest medical aid. The presence of innovative diagnostic software and the rising adoption of IT healthcare solutions are factors augmenting the growth of this region. Besides this, the growing popularity of AI-driven surgeries and minimally invasive operations are also expected to help this region continue dominating the market in the coming years.

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Respiratory Panel Testing Market: The Europe and Middle East & Africa respiratory panel testing market is expected to surpass the value of US$ 3.1 Bn by the end of 2031.

Direct-to-Consumer Laboratory Testing Market: The direct-to-consumer laboratory testing market in North America is projected to expand at a CAGR of 22.6% during the forecast period.

Biobanking Market: The biobanking market is projected to expand at a CAGR of 5.9% during the forecast period from 2022 to 2031.

Cervical Cancer Diagnostic Tests Market: The global cervical cancer diagnostic tests market is expected to exceed value of US$ 13.6 Bn by the end of 2031.

Central Lab Market: The global central lab market is expected to reach the value of US$ 4 Bn by the end of 2031.

In Vitro Diagnostics Market: The global in vitro diagnostics market is expected to reach the value of US$ 115.43 Bn by the end of 2028.

ASRs and RUOs Market: The U.S. ASRs and RUOs market is expected to surpass the value of US$ 5.3 Bn by the end of 2031.

Companion Diagnostics Market: The global companion diagnostics market is expected to reach the value of US$ 9.30 Bn by the end of 2028.

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Artificial Intelligence in Diagnostics Market: Increasing Utilization of AI in Different Medical Care Fields to Drive the Market - BioSpace

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How artificial intelligence is helping to restore works of art – Forbes India

Vincent van Gogh probably painted "Two Wrestlers" in 1886. Image: Courtesy of Oxia Palus

This year, visitors to the Focus Art Fair were treated to a special kind of exhibition at the MORF Gallery booth. It was a selection of paintings by Vincent van Gogh and Leonardo da Vinci that the general public has never previously been able to see because they are covered over by other works by the two artists.

However, the Dutch painter covered it over with a still life, titled "Still life with meadow flowers and roses," currently kept in the Krller-Mller Museum in the Netherlands. The Oxia Palus start-up recreated this underpainting by teaching artificial intelligence how to reproduce Van Gogh's style.

The researchers trained a neural network on other works by Van Gogh. They thus taught it how to reconstruct Two Wrestlers with precision from an X-ray-style image. This gave rise to a result that is "very convincing -- by far the best guess we can get with current technology," according to Anthony Bourached, one of the co-founders of Oxia Palus, speaking to Artnet News.

This artificial intelligence has also managed to accurately reconstruct "Standing Female Nude" by Vincent van Gogh, "Madonna" by Leonardo da Vinci, "Beatrice Hastings" by Amedeo Modigliani and "Parc del Laberint d'Horta" by Santiago Rusiol.

These high-tech replicas have been dubbed "NeoMasters." They have the particularity of offering a precise idea of the original color and texture of the long-lost paintings. Oxia Palus' aim is to continue to put technology at the service of art restoration. "With potentially thousands of works of art hidden dormant beneath existing paintings, destroyed and missing, the journey in resurrecting the worlds lost art has only just begun," reads the start-up's website.

Proof of this ambition can be seen with the firm's latest project, "TextMasters." This resembles "NeoMasters," with the key difference being that the AI reconstructs lost paintings from textual descriptions, not from X-ray images -- a feat made possible by DALL-E 2, the innovation developed by the American company, OpenAI. This text-to-image artificial intelligence software uses language comprehension models, as well as learning without human supervision on very large amounts of data, to generate credible artificial images.

Oxia Palus researchers have already used DALL-E 2 to reproduce paintings by Diego Velzquez, Giotto, Leonardo da Vinci, Johannes Vermeer, Eugne Delacroix and Sandro Botticelli, among others. Some of them are currently being offered for sale as NFTs on the KnownOrigin platform, in order to attract the interest of crypto-collectors. "We hope that by starting with some of the most notable lost pieces in history, we will be able to generate wider public interest in restoring our collective cultural heritage," said Oxia Palus.

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How artificial intelligence is helping to restore works of art - Forbes India

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The air force industry found it harder to fill artificial intelligence vacancies in Q2 2022 – Airforce Technology

Artificial intelligence related jobs that were closed during Q2 2022 had been online for an average of 30 days when they were taken offline.

This was an increase compared to the equivalent figure a year earlier, indicating that the required skillset for these roles has become harder to find in the past year.

Artificial intelligence is one of the topics that GlobalData, our parent company and from whom the data for this article is taken, have identified as being a key disruptive technology force facing companies in the coming years. Companies that excel and invest in these areas now are thought to be better prepared for the future business landscape and better equipped to survive unforeseen challenges.

On a regional level, these roles were hardest to fill in the Middle East and Africa, with related jobs that were taken offline in Q2 2022 having been online for an average of 31 days.

The next most difficult place to fill these roles was found to be North America, while Europe was in third place.

At the opposite end of the scale, jobs were filled fastest in Asia-Pacific, with adverts taken offline after ten days on average.

While the air force industry found it harder to fill these roles in the latest quarter, these companies actually found it easier to recruit artificial intelligence jobs than the wider market, with ads online for 25% less time on average compared to similar jobs across the entire jobs market.

GlobalData's job analytics database tracks the daily hiring patterns of thousands of companies across the world, drawing in jobs as they're posted and tagging them with additional layers of data on everything from the seniority of each position to whether a job is linked to wider industry trends.

You can keep track of the latest data from this database as it emerges by visiting our live dashboard here.

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The air force industry found it harder to fill artificial intelligence vacancies in Q2 2022 - Airforce Technology

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