Astra's Pentest is a comprehensive solution for penetration testing. It includes an intelligent vulnerability scanner and in-depth manual pentesting.
The automated scanner performs 10000+ security checks, including security checks for all CVEs listed in the OWASP top 10 and SANS 25. It also conducts all required tests to comply with ISO 27001 and HIPAA.
Astra provides an interactive pentest dashboard which allows users to visualize vulnerability analysis, assign vulnerabilities to team members, collaborate with security experts, and to collaborate with security experts. The integrations with CI/CD platforms and Jira are also available if users don't wish to return to the dashboard each time they want to use it or assign a vulnerability for a team member.
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Worldwide, professional researchers prefer a user-friendly and swift tool for the analysis and creation of presentation-ready biplots, correspondence maps, mdpref, and MCA maps. This powerful 64-bit software is compatible with both PCs and MACs. Our unique Brand Projector I enables users to compute and visually represent the necessary attribute alterations for repositioning a brand (column) to any desired location on a map. In addition, Brand Projector II offers researchers the ability to modify attributes (rows) interactively, allowing them to observe the corresponding movement of the brand (column) in real-time. This dynamic interaction enhances the understanding of brand positioning strategies significantly.
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DeepFND
DeepFND is an advanced, intuitive software solution specifically designed for the comprehensive design of deep foundation piles, combining both geotechnical and structural calculations in a seamless environment. This innovative tool empowers engineers to accurately calculate the axial geotechnical pile capacity, encompassing factors like skin friction and end bearing, while also allowing for the assessment of settlement responses based on Standard Penetration Test (SPT) or Cone Penetration Test (CPT) data. Furthermore, users can conduct thorough lateral pile analyses, focusing on displacement, shear, and moment, through specified head-loads or pushover methods. The software facilitates the design of individual piles, pile groups, and even pile rafts, accommodating various custom pile-cap geometries. DeepFND supports a wide range of pile types, including drilled, driven, continuous flight auger (CFA), caissons, drilled-in-displacement, micropiles, and helical piles, and effectively models soil-structure interaction through either soil springs or a sophisticated 3D finite-element analysis. Additionally, it allows for structural evaluations under both service and factored load conditions, adhering to numerous international design codes such as ACI, AISC, Eurocodes, AS/NZS, Chinese Standards, and AASHTO LRFD, ensuring versatility and compliance across different engineering standards. With its robust features and user-centric design, DeepFND stands out as an essential tool for engineers involved in deep foundation projects.
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PLAXIS 2D
Every project presents its own set of challenges, yet conducting geotechnical analysis can be straightforward with the right tools. PLAXIS 2D streamlines the process by offering rapid computational capabilities. It enables sophisticated finite element or limit equilibrium analysis concerning soil and rock deformation and stability, including aspects like soil-structure interaction, groundwater, and thermal dynamics. As an exceptionally powerful and intuitive finite-element (FE) software, PLAXIS 2D specializes in 2D analyses relevant to geotechnical engineering and rock mechanics. Used globally by leading engineering firms and academic institutions, PLAXIS is a staple in the civil and geotechnical sectors. The software proves to be versatile, accommodating various applications such as excavations, embankments, foundations, tunneling, mining, oil and gas projects, and reservoir geomechanics. Notably, PLAXIS 2D encompasses all necessary features for conducting deformation and safety assessments for soil and rock, without delving into complex factors like creep, steady-state groundwater, thermal flow, consolidation, or any time-dependent phenomena. This makes it an invaluable resource for engineers focused on efficiency and accuracy in their analyses.
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