Gravity Prediction from Anomaly Degree Variances

Most of the geodetic boundary value problems were solved in terms of integral formulae extended over the whole earth. These formulae presuppose the knowledge of some of physical quantities at every point on the physical earth surface. In reality these quantities are only measured at a relatively few...

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Main Authors: Fashir, Hassan Hashim, A. Kadir, Abd. Majid
Format: Article
Language:English
Published: Fakulti Kejuruteraan & Sains Geoinformasi, Universiti Teknologi Malaysia. 1998
Subjects:
Online Access:http://eprints.utm.my/4951/
http://eprints.utm.my/4951/1/gravity.pdf
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author Fashir, Hassan Hashim
A. Kadir, Abd. Majid
author_facet Fashir, Hassan Hashim
A. Kadir, Abd. Majid
author_sort Fashir, Hassan Hashim
building UTeM Institutional Repository
collection Online Access
description Most of the geodetic boundary value problems were solved in terms of integral formulae extended over the whole earth. These formulae presuppose the knowledge of some of physical quantities at every point on the physical earth surface. In reality these quantities are only measured at a relatively few points on land ,although there are sufficient measurements in large parts of the oceans. Hence prediction of physical quantities is essential to fill in the gaps. The prediction of missing points ~nd mean anomalies from anomaly degree covariances were investigated. The essential parameters of the covariance functions using anomaly degree variances were computed. The closed form of evaluating empirical covariance functions to compute gravity anomalies with their accompanying statistics were thoroughly discussed.
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publishDate 1998
publisher Fakulti Kejuruteraan & Sains Geoinformasi, Universiti Teknologi Malaysia.
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spelling utm-49512010-06-01T03:22:12Z http://eprints.utm.my/4951/ Gravity Prediction from Anomaly Degree Variances Fashir, Hassan Hashim A. Kadir, Abd. Majid TA Engineering (General). Civil engineering (General) Most of the geodetic boundary value problems were solved in terms of integral formulae extended over the whole earth. These formulae presuppose the knowledge of some of physical quantities at every point on the physical earth surface. In reality these quantities are only measured at a relatively few points on land ,although there are sufficient measurements in large parts of the oceans. Hence prediction of physical quantities is essential to fill in the gaps. The prediction of missing points ~nd mean anomalies from anomaly degree covariances were investigated. The essential parameters of the covariance functions using anomaly degree variances were computed. The closed form of evaluating empirical covariance functions to compute gravity anomalies with their accompanying statistics were thoroughly discussed. Fakulti Kejuruteraan & Sains Geoinformasi, Universiti Teknologi Malaysia. 1998-12 Article PeerReviewed application/pdf en http://eprints.utm.my/4951/1/gravity.pdf Fashir, Hassan Hashim and A. Kadir, Abd. Majid (1998) Gravity Prediction from Anomaly Degree Variances. Buletin Geoinformasi, 2 (2). pp. 230-240. ISSN 1394-7702
spellingShingle TA Engineering (General). Civil engineering (General)
Fashir, Hassan Hashim
A. Kadir, Abd. Majid
Gravity Prediction from Anomaly Degree Variances
title Gravity Prediction from Anomaly Degree Variances
title_full Gravity Prediction from Anomaly Degree Variances
title_fullStr Gravity Prediction from Anomaly Degree Variances
title_full_unstemmed Gravity Prediction from Anomaly Degree Variances
title_short Gravity Prediction from Anomaly Degree Variances
title_sort gravity prediction from anomaly degree variances
topic TA Engineering (General). Civil engineering (General)
url http://eprints.utm.my/4951/
http://eprints.utm.my/4951/1/gravity.pdf