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Description
Eiffel represents a highly effective methodology for creating successful object-oriented software systems. This approach minimizes costs associated with development, debugging, and maintenance, enabling you to identify and resolve issues before they escalate. As a result, you can launch high-quality products more quickly than your rivals. Its simplicity enhances various aspects, including understanding, maintenance, reuse, and extension of the software. Uniquely, Eiffel integrates analysis, design, implementation, and maintenance within a unified framework. Additionally, systems developed with Eiffel are easily portable across major industry platforms. It is rooted in a few fundamental concepts from computer science and software engineering. The Eiffel Method ensures that all documentation for products at different stages is consolidated into a single document that offers multiple perspectives. It is specifically designed to articulate the outcomes of the Eiffel Methodology. The framework includes features that may not be present in competing technologies, such as exception handling grounded in software specifications rather than relying on ad hoc try/catch mechanisms. As a result, it is widely acclaimed for being both the simplest and most comprehensive implementation of object-oriented principles. By adopting Eiffel, developers can enhance their productivity and software quality significantly.
Description
Incorporate optimization and simulation models into your desktop, web, or mobile applications effortlessly by utilizing consistent high-level objects such as Problem, Solver, Variable, and Function, along with their respective collections, properties, and methods across various programming languages. This uniformity extends to a standardized object-oriented API that is accessible remotely via Web Services WS-* standards for clients using languages like PHP, JavaScript, and C#. Additionally, procedural languages are able to invoke traditional calls that align intuitively with the properties and methods of the object-oriented API. The suite of optimization techniques available encompasses linear and quadratic programming, mixed-integer programming, smooth nonlinear optimization, as well as global optimization and non-smooth evolutionary and tabu search methodologies. Furthermore, premier optimization tools from Gurobi™, XPRESS™, and MOSEK™ for handling linear, quadratic, and conic models, along with KNITRO™, SQP, and GRG methods for nonlinear challenges, can be seamlessly integrated into the Solver SDK. You can also effortlessly generate a sparse DoubleMatrix object containing an impressive 1 million rows and columns, making it easier to handle large datasets. This flexibility in creating and managing complex optimization problems allows developers to tailor solutions that meet specific application needs efficiently.
API Access
Has API
API Access
Has API
Integrations
Overleaf
jEdit
Pricing Details
Free
Free Trial
Free Version
Pricing Details
$2495 one-time payment
Free Trial
Free Version
Deployment
Web-Based
On-Premises
iPhone App
iPad App
Android App
Windows
Mac
Linux
Chromebook
Deployment
Web-Based
On-Premises
iPhone App
iPad App
Android App
Windows
Mac
Linux
Chromebook
Customer Support
Business Hours
Live Rep (24/7)
Online Support
Customer Support
Business Hours
Live Rep (24/7)
Online Support
Types of Training
Training Docs
Webinars
Live Training (Online)
In Person
Types of Training
Training Docs
Webinars
Live Training (Online)
In Person
Vendor Details
Company Name
Eiffel Software
Founded
1985
Website
www.eiffel.org
Vendor Details
Company Name
Frontline Systems
Website
www.solver.com/solver-sdk-platform
Product Features
Product Features
Risk Management
Alerts/Notifications
Auditing
Business Process Control
Compliance Management
Corrective Actions (CAPA)
Dashboard
Exceptions Management
IT Risk Management
Internal Controls Management
Legal Risk Management
Mobile Access
Operational Risk Management
Predictive Analytics
Reputation Risk Management
Response Management
Risk Assessment
Simulation
1D Simulation
3D Modeling
3D Simulation
Agent-Based Modeling
Continuous Modeling
Design Analysis
Direct Manipulation
Discrete Event Modeling
Dynamic Modeling
Graphical Modeling
Industry Specific Database
Monte Carlo Simulation
Motion Modeling
Presentation Tools
Stochastic Modeling
Turbulence Modeling