Path Category
Loading Path Category from the AllPath API…
Path Category
Loading Path Category from the AllPath API…
Path Category
Guided learning journeys that build knowledge step by step.
category · Learning · slug · learning · 7812 Paths
7812 Paths · page 423 / 782
This learning path equips automotive engineers with a deep understanding of operating systems used in vehicles, from foundational RTOS concepts to AUTOSAR Classic and Adaptive platforms. It covers real-time requirements, safety standards like ISO 26262, and communication stacks, providing the knowledge needed for professional development in automotive software.
This advanced learning path equips network engineers with a deep understanding of how operating systems support high-performance virtual network functions (VNFs). It covers virtualization fundamentals, data plane acceleration technologies such as DPDK and SR-IOV, and the OS-level implications for performance and resource management. The path is designed for professionals seeking to enhance their career skills in NFV environments.
This learning path equips storage engineers with the knowledge to understand and work with operating systems specialized for storage systems. It covers core OS storage concepts, file systems, networking, storage virtualization, software-defined storage, distributed storage architectures, and data protection, focusing on practical systems like Ceph and GlusterFS.
This advanced professional learning path equips security analysts with the knowledge to conduct OS-level digital forensics and incident response. It covers file system, memory, and log analysis, as well as event correlation and timeline analysis, with a strong foundation in OS internals and security.
This advanced path equips security engineers with the knowledge and skills to harden operating systems against security threats. It covers foundational OS security concepts, then progresses through minimal installation, patch management, mandatory access control with SELinux/AppArmor, system auditing, intrusion detection, and zero-trust principles. The curriculum emphasizes practical application and real-world scenarios.
This advanced graduate-level learning path equips HPC professionals with a deep understanding of operating system requirements and design principles for high-performance computing systems. It covers lightweight kernels, scalability challenges, job scheduling, I/O optimization, and MPI-based inter-process communication, emphasizing the interplay between OS design and parallel computing.
This advanced learning path equips cloud administrators with a deep understanding of operating systems designed for cloud environments. It covers core concepts, resource management, multi-tenancy, orchestration, and security, building from foundational OS and virtualization knowledge to specialized cloud OS topics.
This learning path explores design principles for making operating systems more accessible. It covers the foundations of OS and HCI, the needs of users with disabilities, accessibility APIs, assistive technologies, and inclusive design principles, culminating in a project to design an accessible OS feature.
This advanced learning path equips IoT developers with the knowledge to design and implement power-efficient systems using real-time operating systems (RTOS) like FreeRTOS and Zephyr. It covers essential hardware concepts, RTOS fundamentals, and advanced power management techniques including sleep modes, dynamic voltage and frequency scaling, and energy harvesting integration.
This path equips engineers with the knowledge to select, evaluate, and work with operating systems used in critical infrastructure such as power grids and transportation. It covers foundational OS concepts, real-time and high-availability requirements, fault tolerance, security standards, and safety certification, culminating in a practical understanding of safety-certified OS architectures.