What's new

Welcome to W9B - Most Trusted Web Master Form By The Web Experts

Join us now to get access to all our features. Once registered and logged in, you will be able to create topics, post replies to existing threads, give reputation to your fellow members, get your own private messenger, and so, so much more. It's also quick and totally free, so what are you waiting for?

Linear Models in the Mathematics of Uncertainty

TUTBB

Change Here
Gold
Platinum
Silver
Joined
Jul 3, 2023
Messages
96,087
Reaction score
1
Points
38
0   0   0
844b156fd4ae1543f93c671e3391d610.webp

Free Download Linear Models in the Mathematics of Uncertainty By John N. Mordeson, Mark J. Wierman, Terry D. Clark, Alex Pham, Michael A. Redmond (auth.)
2013 | 265 Pages | ISBN: 3642352235 | PDF | 3 MB
The purpose of this book is to present new mathematical techniques for modeling global issues. These mathematical techniques are used to determine linear equations between a dependent variable and one or more independent variables in cases where standard techniques such as linear regression are not suitable. In this book, we examine cases where the number of data points issmall (effects of nuclear warfare), where the experiment is not repeatable (the breakup of the former Soviet Union), and where the data is derived from expert opinion (how conservative is a political party). In all these cases the data is difficult to measure and an assumption of randomness and/or statistical validity is questionable. We apply our methods to real world issues in international relations such as nuclear deterrence, smart power, and cooperative threat reduction. We next apply our methods to issues in comparative politics such as successful democratization, quality of life, economic freedom, political stability, and failed states. Finally, issues involving deaf and hard of hearing children are explored.


Buy Premium From My Links To Get Resumable Support and Max Speed

Rapidgator
pghkh.7z.html
TakeFile
pghkh.7z.html
Fileaxa
Fikper
pghkh.7z.html

Links are Interchangeable - Single Extraction
 
Top Bottom