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In this video, I will cover the basics of static seismic analysis and different factors required to calculate the base shear and design lateral force following the guidelines of Indian code. I will discuss about static seismic criteria, minimum base shear, seismic weight and distribution of base shear at floor. For analysis and design of any structure (concrete, steel or composite) which is in low or high seismic prone area, we need to perform a detailed seismic analysis and based on the analysis results, design the member/connection. Static seismic analysis is one of the easiest method of earthquake force consideration but it is not only limited to that. For dynamic analysis and seismic detailing, we need static seismic inputs. There are 15 different inputs required for IS1893:2016 code and if any incorrect input is assigned, that may lead to unsafe design. Previous Part -- Part 1: Introduction || Earthquake Resistant Design -- • Static Seismic Analysis with IS 1893:... Next Part-- Part 3: Design Horizontal Acc. Coeff.(Ah) || Sa/g, Z, R, Response Spectra -- • Static Seismic with IS1893 - pt.3: De... For more details on Seismic analysis, check this video -- • Modelling for Seismic Analysis in STA... Also check this playlist -- • Seismic Analysis with STAAD ******************************************************************** Define Seismic Weight/Mass Model for Static Seismic & Dynamic Analysis || IS1893: 2016 || ASCE 7-- • Define Seismic Weight/Mass Model for ... STAAD Advanced Concrete Designer -- • Advanced Concrete Designer Steel Structure Optimization with STAAD -- • Steel Structure Optimization with STAAD Modelling Analysis and Design of PEB Structure -- • Modelling Analysis and Design of PEB ...