• NIST - p1
  • Clusters, Grids, Clouds - p2
  • Virtualization - p3-11
    • Categories - p3
    • Type of Hypervisor - p3
    • Binary Translation - p5
    • Full Virtualization - p5
    • OS-assisted - p6
    • Hardware-Assisted -p7-8
    • VM vs Container -p8-11
  • Containers - p11-20
    • Linux feats - p12-13
    • Docker - p13-16
    • Kubernetes - p16-19
  • Cloud Infra Management - p20-27
    • Openstack - p20
    • IaC - p21-24
    • VM migration - p24-27
  • Devops - p27-29
    • Spinnaker - p29
  • Cloud Sys Design - p29-46
    • Fallacies of Dist Comp - p29-30
    • Quality Attributes - p30
    • Failure/Faults - p31 -32
    • Dependability - p32
    • Availability - p32-34
    • Microservices - p34-35
    • Layering / Tiering - p35
    • Monolith vs Dist - p36
    • Redundancy - p36-37
    • Scalability - p37-38
    • Fault Toelrance Patterns - p42-43
    • Load balance - p44-46
  • Cloud Service Models - p46-54
    • IaaS/PaaS/SaaS - p46 -48
    • Serverless - p48-50
    • Community/Private/Public Cloud - p50-52
    • Datacenter Basics - p52-p54
  • Cloud Deployment Models - p54-57
  • Cloud Sustainability - p57-68
    • Lifecycle Emmissions - p57
    • Measuring Footprint - p58-60
    • Practical Implementaiton Considerations -60
    • Energy Efficiency - p60-62
    • PUE - p63-64
    • Categories - p63
    • WUE/CUE/ERE/DCIE/GEC - p65
    • Carbon Aware Strategies - p66
    • Jevons Paradox - p68