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Space science and communication for sustainability 1st ed.

Author
Additional Author(s)
  • Suparta, Wayan
  • Abdullah, Mardina
  • Ismail, Mahamod
Publisher
Singapore: Springer Nature Singapore Pte Ltd., 2018
Language
English
ISBN
9789811065743
Series
Subject(s)
  • REMOTE SENSING
  • SUSTAINABLE DEVELOPMENT
  • ELECTRICAL ENGINEERING
Notes
. .
Abstract
This book addresses space science and communication – one of the main pillars of space science sustainability, an area that has recently become of great importance. In this regard, research and development play a crucial role in sustainability development. However, obtaining essential data in the physical world to interpret the universe and to predict what could happen in the future is a challenging undertaking. Accordingly, providing valid information to understand trends, evaluate needs, and create sustainable development policies and programs in the best interest of all the people is indispensable. This book was prepared in conjunction with the fifth meeting of the 2017 International Conference on Space Science and Communication (IconSpace2017), held in Kuala Lumpur, Malaysia on 3-5 May 2017 to introduce graduate stuandents, researchers, lecturers, engineers, geospatialists, meteorologists, climatologists, astronomers and practitioners to the latest applications of space science, telecommunications, meteorology, remote sensing and related fields. The individual papers discuss a broad range of space science and technology applications, e.g. the formation of global warming from space, environmental and remote sensing, communication systems, and smart materials for space applications.
Physical Dimension
Number of Page(s)
1 online resource (ix, 348 p.)
Dimension
-
Other Desc.
ill. (in color.)
Summary / Review / Table of Content
Characterization of Lightning Energy During 2014-2015 Summer and Winter Over the Antarctic Peninsula --
Parametric Studies of ANFIS Families Capability for Thunderstorm Prediction --
Performance and Evaluation of Eight Cloud Models on Earth-Space Path for a Tropical Station --
Comparison of Insitu Observation, NOAA-AIRS Satellite and MACC Model on Surface Ozone Over Ushuaia, Southern Ocean and Antarc-tic Peninsula Region --
A Brief Review: Response of the Lonosphere to Solar Activity Over Malaysia --
Time Derivative of Horizontal Geomagnetic Field of Low Latitude MAGDAS LANGKAWI Station for Geomagnetically Induced Cur-rent Estimation.
Exemplar(s)
# Accession No. Call Number Location Status
1.01351/20628 SpaOnline !Available

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