Melio is an accounts payable platform designed to simplify bill payments, improve workflows, and maximize cash flow efficiency for businesses of all sizes. To get started, try all of Melio's features free for 30 days!
You can pay vendors online using bank transfers or credit/debit cards—even if they only accept checks—while Melio takes care of the manual tasks. Integrate seamlessly with QuickBooks and Xero to keep your accounting up-to-date.
Melio allows you to pay through bank transfer or card, helping you extend your cash flow and gain rewards. Enter vendor or bill details manually, upload, or snap a photo of the invoice—it’s that simple. Schedule payments according to your cash flow plan and let Melio manage them. Additionally, you can pay international vendors in their local currency for services and products.
On-the-go? No problem, just get the Melio mobile app on iOS or Android to manage your payments, process approvals, and much more no matter where your business day takes you.
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Azore is software for computational fluid dynamics. It analyzes fluid flow and heat transfers. CFD allows engineers and scientists to analyze a wide range of fluid mechanics problems, thermal and chemical problems numerically using a computer. Azore can simulate a wide range of fluid dynamics situations, including air, liquids, gases, and particulate-laden flow. Azore is commonly used to model the flow of liquids through a piping or evaluate water velocity profiles around submerged items. Azore can also analyze the flow of gases or air, such as simulating ambient air velocity profiles as they pass around buildings, or investigating the flow, heat transfer, and mechanical equipment inside a room. Azore CFD is able to simulate virtually any incompressible fluid flow model. This includes problems involving conjugate heat transfer, species transport, and steady-state or transient fluid flows.
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Chutes
Chutes represents a revolutionary advancement in serverless computing tailored for AI at scale, serving as a premier open source and decentralized platform designed for the deployment, scaling, and execution of open-source models in real-world applications. Engineered for the demands of hyperscaling AI-driven products, it empowers developers with high-performance AI inference capabilities across a range of cutting-edge open source models, along with support for ephemeral and batch processing tasks. Operating continuously, Chutes ensures that the latest open-source models are available within minutes of their release, enabling builders to be at the forefront of innovation as new models emerge. There exists a Chute for nearly every application, extending beyond just the expected large language models to include functionalities for image, video, speech, music, embeddings, content moderation, and custom workloads, all consistently available and poised to scale. With Chutes, teams simply need to provide their code while the platform efficiently manages all other aspects, leveraging swift APIs, the Chutes SDK, or one-click deployment options to seamlessly operate serverless AI applications without any infrastructure concerns. This innovative approach not only streamlines development but also enhances productivity, allowing teams to focus more on their creative solutions rather than on the complexities of deployment.
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Simcenter EDEM
Simcenter EDEM is an advanced tool utilizing the Discrete Element Method to simulate bulk materials and particles, providing engineers with essential insights into the interactions of granular substances with handling equipment under various operational and processing scenarios. It effectively models and evaluates the dynamics of materials such as coal, minerals, soils, fibers, grains, tablets, powders, rocks, and crops. With a wide array of pre-existing, calibrated material model libraries for rocks, ores, soils, and powders, users can quickly begin their simulations, while the validated physics models accommodate a variety of material behaviors, including dry, sticky, and compressible types. Furthermore, Simcenter EDEM excels at simulating intricate, large-scale particle systems that can consist of millions of particles, offering rapid and scalable computing capabilities on CPU, GPU, and multi-GPU configurations. This versatility makes it an invaluable resource for engineers seeking to optimize the handling and processing of granular materials across diverse industries.
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