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Why You Should Hire .Net Developers for Business Growth
Running a business today means you have to make smart choices about technology. One of the biggest decisions you can make is whether to hire .NET developers. The Microsoft .NET framework helps create strong, reliable applications. It’s become important for many businesses, big and small.
In this blog post, I will share why hiring .NET developers can help your business grow. Whether you own a startup, manage a team, or work in IT, this blog post will show you the benefits of using .NET. Let’s get started!
Understanding .NET and Its Importance for Modern Businesses
What is .NET?
The .NET framework is a tool created by Microsoft that helps developers build many types of applications. Here are some parts of .NET:
.NET Core: A version that works on different operating systems like Windows, Linux, and macOS.
.NET Framework: The original version for Windows.
ASP.NET: This is used for making websites and online services.
Why Cross-Platform Matters
Today, customers use many devices to access your services. Cross-platform capabilities mean that applications built with .NET can run on different devices. This saves time and money because you don’t have to create separate apps for each platform.
Types of Applications Built with .NET
With .NET, you can create:
Web Applications: For engaging customers online.
Desktop Applications: For powerful software on computers.
Cloud Applications: For flexible and scalable solutions.
Mobile Applications: To reach users on their phones or tablets.
IoT Applications: To connect smart devices.
Why Choose .NET Developers?
1) Scalability: Grow Your Business
One of the best things about .NET is its ability to grow with your business. As you expand, your applications can handle more users and data without starting over. This is great for both startups and large companies.
2) Security: Keep Your Data Safe
In today’s world, security is critical. .NET has built-in features to protect your applications:
Encryption: This keeps sensitive information safe.
Authentication: This makes sure only the right people can access your app.
3) Cost Efficiency: Save Money
When you hire .NET developers, you can save money in several ways:
One Codebase: You can write code once and use it on many platforms, cutting down on development costs.
Open Source: The open-source nature of .NET means no licensing fees, which can help your budget.
Cloud Integration: .NET works well with Microsoft Azure, allowing you to build cloud-based apps easily.
Versatility and Flexibility: Meeting Different Needs
Many Types of Applications:
.NET developers can create many types of applications to fit your needs:
Web Applications for engaging customers.
Mobile Apps to reach users on the go.
Desktop Applications for rich user experiences.
Custom Solutions:
Every business is unique. .NET developers can create custom solutions that match your specific needs. Whether you are in healthcare, logistics, real estate, Food & Restaurant, or Education, there is a .NET solution for you.
Faster Time-to-Market with .NET Developers
Quick Development with Great Tools:
.NET developers use tools like Visual Studio that help them work faster. These tools make it easier to write code, find mistakes, and keep things organized.
Libraries and Frameworks:
.NET has many pre-made libraries that speed up development. This means your developers can focus on what makes your application special rather than starting from scratch.
Agile and Rapid Prototyping:
.NET supports agile development, which helps teams work quickly. This means you can launch your product sooner and make changes based on customer feedback.
Long-Term Benefits of Hiring .NET Developers
Easy Maintenance and Upgrades:
Applications built with .NET are easy to maintain. When you need to update your software, .NET makes it simple to do so without starting from the ground up.
Staying Ahead with New Innovations:
With new features coming out for .NET, your business can stay competitive. Technologies like .NET MAUI and improvements in AI can keep your applications up to date.
How to Hire the Right .NET Developer
Skills to Look For:
When you decide to hire .NET developers, here are some skills to check for:
C#: The main programming language for .NET.
ASP.NET: Important for web projects.
Azure: Useful for cloud solutions.
Where to Find .NET Developers
Job Boards: Websites like LinkedIn and Indeed can help you find qualified candidates.
Freelance Sites: You can also look on sites like Upwork for temporary help.
Outsourcing Agencies: These can provide dedicated teams for your projects.
Conclusion
Businesses should hire .NET developers to leverage scalable, secure, and cost-effective solutions that can enhance their applications. This investment supports growth, improves efficiency, and ensures adaptability in a competitive market.
Want to make your business better? Hire .NET developers from iQlance today and unlock the full potential of your projects! Our skilled team is here to provide strong and safe solutions just for you.
Contact us now or call us at (+1) 469 398 8817 to get started!
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Hawaii Core B is Now Available for HI Real Estate Agents
Attention Hawaii Real Estate Agents! 2024 Hawaii Real Estate Core Course Part B: Regulation, RICO, and Your License is now available at Training Cove! Why is this important? Hawaii real estate agents must complete Core B before renewing their real estate licenses. The deadline is coming up quickly on November 30, 2024. Training Cove has the Core B course included in our packages. Or you can…
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Hire C++ Developers from India
Create highly scalable & powerful enterprise solutions by hiring C++ developers from VE. Outsource C++ development services to India starting at just US $9/hour.
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Software Engineer - C++ Job Job For 0-50 Year Exp In Yash Technologies Private Limited Pune, India - 3977297
Software Engineer – C++ Job Job For 0-50 Year Exp In Yash Technologies Private Limited Pune, India – 3977297
Job Description :We are looking forward to hireC++ professionals at the Leadlevel who thrives on challenges and desire to make a real difference in the business world.With an environment of extraordinary innovation andunprecedentedgrowth,This is an exciting opportunity for a self-starter who enjoys working in a fast-paced, quality-oriented, and team environment.You are required to have skills in…
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Global Super hydrophobic Coatings Market : Forecast and Analysis (2020-2027), by property, Applications and by Region.
Global Super hydrophobic Coatings Market was valued at USD 2.05 Bn in 2019 and is expected to reach at USD 62.60 Bn by 2027 at a CAGR of 53.32 % over forecast period 2020-2027.
The report covers the analysis of COVID-19 pandemic impact on the market by region and on the key players revenue affected till April 2020 and expected short term and long term impact on the market.
Global Super hydrophobic Coatings Market Drivers and Restrains:
A superhydrophobic coating is a nanoscopic surface layer that repel water. Superhydrophobic coatings are applied to almost all surfaces regardless of their complex geometry or composition as they are inspired biometrically from natural sources such as the lotus leaf and desert beetle. Rapidly developing construction sector is mainly playing an important role because of increasing need to extend life of concrete structures and reduce maintenance costs associated with high rise glass buildings. Rapid growth in urbanization mainly in emerging economies such as India, China, Brazil and japan and South Africa is expected to drive growth in building and construction industry, which is expected to increase the demand for innovative superhydrophobic coatings and surface treatment technologies.
However, high cost associated with superhydrophobic coatings and surface treatment technologies is expected to restrain the market growth over forecast period.
Global Super hydrophobic Coatings Market Segmentation Analysis:
Global Super hydrophobic Coatings Market is segmented by property, end users and by Region. By property, antimicrobial type segment is expected to hold 41.54% of marker share over forecast period at a CAGR of 9.6% over the forecast period. Anti-microbial types are increasingly utilized to manufacture biocompatible, water repellent surgical tools, medical devices, and nonwovens such as operating gowns and gloves because water repellent surfaces reduces the risk of harbouring deadly pathogens.
Global Super hydrophobic Coatings Market Request For View Sample Report Page :@https://www.maximizemarketresearch.com/request-sample/56600
By end users, electrical and electronics segment held 28.67% of market share in 2019 and is expected to keep its dominance over forecast period owing to growing demand for self-cleaning and water-repellent consumer electronics such as smartphones and others such as solar panels. Various technological advancements in underwater electronics, flexible and wearable electronics are expected to create opportunities for the market. Medical and healthcare segment is expected to hold 21.43% of market share over forecast period owing to on account of rising demand for anti-microbial, superhydrophobic equipment, and materials.
Global Super hydrophobic Coatings Market Regional Analysis:
By geography, North America held 38.54% of market share in 2019 and is expected to keep its dominance over forecast period owing to presence of major market players. Furthermore, factors such as an economic recovery and increasing demand for advanced consumer electronics are driving the market in this region.
North America is followed by APAC and Europe. APAC is expected to hold 31.23% at a CAGR of 11.34% of market share over forecast period. Factors such as availability of raw material, expanding electronics industry and growing consumer awareness regarding the benefits of these coatings in automobiles, textiles, and food packaging are driving the market in this region.
Global Super hydrophobic Coatings Market Competitive Landscape:
Report covers key development and company profiles of market leaders, potential players and followers. Global superhydrophobic coatings market is highly fragmented. Some of the major players in the market include Rust-Oleum, UltraTech International Inc., and P2i Limited, Lotus Leaf Inc, NEI Corporation and NTT Advanced Technology. By using various organic and inorganic growth strategies such as merger & acquisition, expansion, strategic alliances, joint ventures and patent these players are increasing their regional presence and business opeartions.
The objective of the report is to present a comprehensive analysis of the Global Super hydrophobic Coatings Market including all the stakeholders of the industry. The past and current status of the industry with forecasted market size and trends are presented in the report with the analysis of complicated data in simple language. The report covers all the aspects of the industry with a dedicated study of key players that includes market leaders, followers and new entrants. PORTER, SVOR, PESTEL analysis with the potential impact of micro-economic factors of the market have been presented in the report. External as well as internal factors that are supposed to affect the business positively or negatively have been analysed, which will give a clear futuristic view of the industry to the decision-makers. The report also helps in understanding Global Super hydrophobic Coatings Market dynamics, structure by analyzing the market segments and project the Global Super hydrophobic Coatings Market. Clear representation of competitive analysis of key players by price, financial position, Product portfolio, growth strategies, and regional presence in the Global Super hydrophobic Coatings Market make the report investor’s guide. Scope of Global Super hydrophobic Coatings Market
Global Super hydrophobic Coatings Market by property
• Anti-wetting • Anti-icing coatings • Anti-microbial coatings Global Super hydrophobic Coatings Market by Applications
• Transportation • Medical & Healthcare • Textiles • Constructions • Electrical and Electronics • Others Global Super hydrophobic Coatings Market by Region
• North America • APAC • Europe • MEA and Africa • Latin America Global Super hydrophobic Coatings Market key players
• P2i International Ltd. • UltraTech International Inc. • Lotus Leaf Inc. • NEI Corporation • NTT Advanced Technology • Hydrobead • Aculon • Pearl Nano • United Protec • DryWired • Advanced NanoTech Lab (India) • Hirec Paints • Surfectis Technologies.
Global Super hydrophobic Coatings Market Do Inquiry Before Purchasing Report Here @ :https://www.maximizemarketresearch.com/inquiry-before-buying/56600
About Us:
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Contact info: Name: Vikas Godage Organization: MAXIMIZE MARKET RESEARCH PVT. LTD. Email: [email protected] Contact: +919607065656 / +919607195908 Website:www.maximizemarketresearch.com Twitter : Maximize Market Research at : https://twitter.com/MMR_Busines
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Graduate position: OhioStateU.CichlidAdaptation
PhD position in Aquatic Physiological & Behavioral Ecology School of Environment and Natural Resources The Ohio State University October 2017 The Gray and Pintor Labs at The Ohio State University's School of Environment and Natural Resources are seeking a PhD student to work on an NSF funded project starting in Autumn 2018 (with the possibility of a pre-enrollment field season in Summer 2018). The project aims to determine the key drivers and functional significance of sensory and behavioral trait divergence in an African cichlid facing human-induced rapid environmental change (HIREC). Research in Dr. Suzanne Gray's lab aims to understand how fish respond to HIREC, while Dr. Lauren Pintor's lab focuses on the examining the behavioral mechanisms driving species interactions in the face of environmental change. We are seeking highly qualified students with competitive GPA and GRE scores, experience working in aquatic ecosystems, and who are highly motivated to pursue an advanced degree in this field. The successful candidate will tackle field and lab based experiments that include behavioral and physiological performance tests of fish from different populations that are experiencing different human-induced environmental stressors. In the laboratory, we conduct long-term rearing experiments to help disentangle the role of multiple stressors in shaping divergent sensory and behavioral traits. This means that the student will be expected to spend up to two months each year performing field work in Uganda, Africa, with the rest of the year based in Columbus, Ohio. Field work in Uganda can be extremely rewarding but can also be strenuous: our facilities are very basic (e.g., we have intermittent electricity and no running water) and are shared with a number of other researchers. The School of Environment and Natural Resources (SENR) is home to ~45 faculty whose specialties range across several natural and social science disciplines. Within a framework of interdisciplinarity, our graduate students take courses that advance their knowledge within their chosen field but also introduce them to diverse fields integral to a holistic understanding of human-natural coupled systems. Students benefit from bi-weekly seminar speakers across this range of fields, funds for travel to conferences, access to computer labs and discipline-specific advanced courses across the University. Columbus is a vibrant and progressive city with lots to do, great food, access to a series of Metro Parks and rivers, and an easy drive to Lake Erie in the North or hiking in Hocking Hills to the south. Interested students should contact Dr. Suzanne Gray ([email protected]) and Dr. Lauren Pintor ([email protected]) directly via email, with "Graduate position" as the subject line. Please include a cover letter briefly describing your research interests, a curriculum vitae, GRE scores, unofficial undergraduate/graduate transcripts, and contact information for three references - preferably as a single PDF. Review of applicants will begin immediately. Qualified applicants will be invited to apply to SENR by January 1st, 2018 (November 30^th for international students). SENR offers graduate teaching and research assistantships and competitive fellowships to support admitted students (http://bit.ly/2gaJjkq). We are committed to increasing diversity in STEM and so encourage students from diverse and underrepresented communities to apply. Suzanne M. Gray Assistant Professor School of Environment and Natural Resources The Ohio State University CFAES 210 Kottman Hall 2021 Coffey Rd, Columbus, OH, 43210 Phone: 614-292-4643 Email: [email protected] "Gray, Suzanne M." via Gmail
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In Cities, Wildlife Evolves Astonishingly Fast
Animals, plants, and insects adapt to the extreme urban environment—and even to specific subway lines.
In Sendai, Japan, carrion crows put walnuts on roads so that vehicles will drive over them, crushing the shells and allowing the birds to get to the food inside.
By Simon Worrall
MAY 5, 2018
Most naturalists turn up their noses at cities, regarding them as anti-nature—sterile wastelands of concrete and steel. But evolutionary biologist Menno Schilthuizen, author of Darwin Comes to Town, takes the opposite view: Urban environments are in fact “powerhouses of evolution,” where animals as diverse as blackbirds and bobcats are adapting to their new surroundings, with startling results.
Speaking from his home in Leiden, Netherlands, Schilthuizen explains why mosquitoes on the Piccadilly Line in London’s Underground are genetically different from those on the Bakerloo Line; why cities accelerate evolution in ways Darwin could not have imagined; and why sex in the city is helping urban blackbirds evolve into a new species. [Find out how coyotes have found a way to thrive.]
Of all the adaptations you describe, the most extraordinary is surely the London Underground mosquito. Tell us how it evolved.
Despite its name, the London Underground mosquito is not restricted to London. It’s the name that has caught on for a species that lives in human-constructed, underground spaces all over the world—including the Amsterdam Metro—and cellars and basements all over the world.
It is called the London Underground mosquito because it affected people who hid there during the Blitz in 1940. What’s special about it is that it seems to be a species that has evolved very recently. Its ancestor was culex pipiens, a common mosquito that lives above ground, feeds only on birds, and forms large mating swarms.
This new species, culex pipiens molestus, is different. It feeds on human blood, mates one on one, and the female doesn’t require a blood meal before it lays eggs, as an aboveground mosquito does. On top of that is the fact that it has recently evolved: Because the mosquitoes are confined to separate subway lines, they don’t mix and so have specific genes, which may be an adaptation to conditions in that particular subway line. The only way they would become a unified species is if they all changed trains at Oxford Circus. [laughs]
Most naturalists regard cities as sterile wastelands. How did you get interested in urban ecology and why do you call cities “evolutionary powerhouses"?
I got interested in ecology and evolution in cities because cities are, in many ways, extreme environments. Cities have urban heat islands; they are polluted and noisy; they have artificial light; and there’s concrete everywhere. Because the environment is so different, some subspecies disappear, but others adapt to the new conditions.
The evolution of species also occurs faster because new mutations, which give a species the ability to survive in that extreme environment, will spread very rapidly. This is what we call HIREC, or human-induced rapid evolutionary change. We see that in cities and also in other environments where humans create a new habitat or ecological situation. In those places you see very, very fast evolutionary adaptations, which can take place in the space of decades or even years.
That contradicts a core tenet of Darwin’s theory, doesn’t it? That evolution is a very slow process that unfolds over millions of years.
I think Darwin underestimated the speed it can happen, particularly with species that have numerous generations in a short space of time. Generation time is the evolutionary clock speed, so if you have multiple generations per year you can accumulate evolutionary changes much more quickly than humans can, for example, which have one generation every 20 years.
An example is the Hawk’s-Beard plants in the French city of Montpellier. A French researcher named Pierre-Olivier Cheptou studied the seed science of these weeds that grow in little patches of soil around trees that are planted along city streets. These plants make two kinds of seeds, big seeds and small ones. The small ones have little parachutes that they use to float on the wind. In the city, we found that these small-sized seeds are disappearing. That has to do with the fact that in the city those drifting seeds will probably land on tarmac and will not be able to germinate. So the plant’s genes invest more in the heavy seeds, which fall to the floor and germinate at the foot of the parent plant. Those genes have an advantage in the city, which has resulted in a change in as little as 10 to 20 years. So, really fast!
In recent years, studying the DNA of urban species has yielded some startling results. Explain why bobcats in Hollywood are different from those living north of the 101 freeway.
Fragmentation in cities is a common theme. In urban ecology humans create all kinds of barriers, like roads and highways. North of Los Angeles, the bobcat population is divided by two very large highways, which bisect the area where they live. These barriers cause something similar to what happens to mosquitoes in the London subway lines, whereby evolution is restricted to the areas cut off from other populations.
In Los Angeles, there was a mange epidemic caused by exposure to mites, which resulted in high mortality. But high mortality also means strong natural selection and in the section of the bobcat population that is cut off by the 101 freeway, genes evolved to make these bobcats more resistant to mange. In other words, the species in that particular area evolved a change to be better able to deal with this particular disease.
In Japan, crows in the city of Sendai have found a very clever way of cracking walnuts. Explain how this works and why urban creatures tend to be what you call “fearless problem solvers.”
The crows are a good example of an animal that is a fearless problem solver. I spent some time in the city of Sendai and have seen those crows with my own eyes. They have been feeding on walnuts for a long time, which they drop from a great height. At some point in the 1980s, the crows discovered that it’s easier to take a walnut and put it in front of the wheel of a slowly moving vehicle, like the cars at this driving school. The habit of putting walnuts in front of car wheels then spread to other crows in the city.
This is an example of the cleverness we see in many urban birds. It is not evolution, in the sense that there is not a gene for putting walnuts in front of car wheels. But there are genes for personality traits, which have to do with problem solving, curiosity, and being tolerant of people. Urban birds and mammals all over the world constantly find new ways of making use of the human inhabitants of the city. There are new foods, resources, and nesting opportunities. Wild animals are shyer, because curiosity kills the cat. But in cities, you do see that mammals and birds are evolving different personalities.
You compare the urban blackbird to Darwin’s finches, in terms of its importance to the study of city ecology. Unpack the parallels for us.
Many examples I’ve given up to now are of evolution within a species. There’s a change, but you don’t see a new species. The blackbird is one of the few cases where it seems there is in fact a new species evolving. Blackbirds started colonizing cities about two hundred years ago, in Germany and Italy. The urban streak then spread throughout Europe and into Asia. Before that time they were shy forest birds.
City blackbirds have changed in so many different ways that you can say, like Darwin’s finches, that they have adapted to a new ecological niche. City blackbirds have shorter beaks; don’t migrate anymore; have different stress responses; start breeding much earlier in the year; and sing at a different pitch.
All these things prevent them from crossbreeding with forest blackbirds, which is also a crucial step in producing a new species. So the blackbird is a good example of a real urban species that is in the process of evolving, similar to the Darwin finches evolving in the Galapagos Islands.
Toward the end of the book, you describe some fascinating new attempts to harness urban ecology in our cities. Tell us about some of these, including Japan’s satoyama revival.
Satoyama is a term for the traditional Japanese natural landscape around villages, this mosaic of rice fields and bits of forest, managed by local populations. That concept is now being revived in the mega-cities of Japan as local communities begin to set up urban farms, or build little vegetable plots and orchards right in the heart of the city. That’s one way to become aware of the fact that an urban ecosystem exists in the first place and that we are a part of it.
Urbanites can also become part of studying the evolution of city ecosystems. Here in Holland, we have introduced an app called Snail Snap, which allows people to take pictures of the garden snail. We’re studying the colors of the shells they photograph, and we’re seeing that, inside the city, snail shells are lighter in color. This probably has to do with the fact that in the city you have this urban heat island and snails may have a higher chance of overheating in the summer. By having a lighter shell, they can reflect more of the sun’s heat and survive better. We’re hoping that this kind of citizen science project will expand all over the world to help study urban evolution.
There is also a big trend in urban planning and architecture to include ecology in buildings or city design, by having green roofs or green walls, and pockets of vegetation in or between buildings. It’s a good idea, although I think it could be improved by having a better understanding of urban evolution. Many of the plants planted on green walls and roofs are simply picked out of the catalogue of a garden center. But in the city, there are many wild plants that are in the process of adapting to urban conditions. So I would argue it would be better to simply provide the space or soil and let these areas be colonized naturally by the plants that are already growing in the city.
What about us? Are humans evolving in cities as well?
We also are living in an extreme environment, even though we’ve created it ourselves. Our ancestors never lived as we do now, in dense, artificial mega-villages. We could adapt to that evolutionarily, but for evolution you need what are called differential survivals. Some people with certain genetic characteristics would need to survive better or have more offspring than other people. But that is one way we differ from wild animals and plants that die in large numbers in cities, whereas we tend to survive, as there’s not so much death as in the past, fortunately. But that also means our evolution is slowed down, even though it could be good for us to adapt.
There is some evidence from the study of the genes of skeletons in graveyards in very early cities that people’s immune systems were already adapting to deal better with infectious diseases, which spread much more easily in cities than among sparse populations in the countryside. That will still be going on in cities today. But for the rest, we’ll just have to wait and see.
Are you optimistic about our future on Earth?
I’m optimistic in the short run. In the long run, I’m not sure if we can maintain this huge population. It’s a completely unprecedented situation that the Earth is in nowadays, with one species dominating the ecosystem in such a dramatic way. This has never happened before. So we don’t have any examples from paleontology to predict what’s going to happen. If you look at smaller ecosystems, where one species dominates, that’s usually not a stable situation. So, in the long run, I think we might become less dominant. [laughs] But how that’s going to happen, I don’t know.
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