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Open AccessJournal ArticleDOI

Phd by thesis

Richard Lathe
- 01 Apr 1988 - 
- Vol. 332, Iss: 6166, pp 676-676
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TLDR
In this paper, a sedimentological core and petrographic characterisation of samples from eleven boreholes from the Lower Carboniferous of Bowland Basin (Northwest England) is presented.
Abstract
Deposits of clastic carbonate-dominated (calciclastic) sedimentary slope systems in the rock record have been identified mostly as linearly-consistent carbonate apron deposits, even though most ancient clastic carbonate slope deposits fit the submarine fan systems better. Calciclastic submarine fans are consequently rarely described and are poorly understood. Subsequently, very little is known especially in mud-dominated calciclastic submarine fan systems. Presented in this study are a sedimentological core and petrographic characterisation of samples from eleven boreholes from the Lower Carboniferous of Bowland Basin (Northwest England) that reveals a >250 m thick calciturbidite complex deposited in a calciclastic submarine fan setting. Seven facies are recognised from core and thin section characterisation and are grouped into three carbonate turbidite sequences. They include: 1) Calciturbidites, comprising mostly of highto low-density, wavy-laminated bioclast-rich facies; 2) low-density densite mudstones which are characterised by planar laminated and unlaminated muddominated facies; and 3) Calcidebrites which are muddy or hyper-concentrated debrisflow deposits occurring as poorly-sorted, chaotic, mud-supported floatstones. These

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Strain glass and ferroic glass – Unusual properties from glassy nano‐domains

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A measurement of the ratio of the nucleon structure function in copper and deuterium

J. G. Ashman, +90 more
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Natural Equilibrium States for Multimodal Maps

TL;DR: In this paper, the authors studied the thermodynamic formalism for a class of real multimodal maps and proved the existence and uniqueness of equilibrium states for the geometric potentials −t log |Df|, for the largest possible interval of parameters t.
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Approaches to Uncertainty in Spatial Data

TL;DR: In this paper, the authors focus on the nature of uncertainty in GIS and the importance of awareness of uncertainty for all users of GIS that awareness should be as widespread as possible.
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K*0 production in Cu + Cu and Au + Au collisions at √sNN=62.4 GeV and 200 GeV

Madan M. Aggarwal, +384 more
- 20 Sep 2011 - 
TL;DR: In this paper, K*(0) production at midrapidity in Au + Au and Cu + Cu collisions at root s(NN) = 62.4 and 200 GeV at the Relativistic Heavy Ion Collider detector is reported.
References
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Journal ArticleDOI

A new generation of Ca2+ indicators with greatly improved fluorescence properties.

TL;DR: A new family of highly fluorescent indicators has been synthesized for biochemical studies of the physiological role of cytosolic free Ca2+ using an 8-coordinate tetracarboxylate chelating site with stilbene chromophores that offer up to 30-fold brighter fluorescence.
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Feature-Oriented Domain Analysis (FODA) Feasibility Study

TL;DR: This report will establish methods for performing a domain analysis and describe the products of the domain analysis process to illustrate the application of domain analysis to a representative class of software systems.
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Unified models for active galactic nuclei and quasars

TL;DR: The straw person model (SPM) as mentioned in this paper has been proposed to explain the orientation effects of active galactic nuclei (AGN) and quasars in the line of sight (LOS) images.
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Nanocelluloses: A New Family of Nature-Based Materials

TL;DR: This Review assembles the current knowledge on the isolation of microfibrillated cellulose from wood and its application in nanocomposites; the preparation of nanocrystalline cellulose and its use as a reinforcing agent; and the biofabrication of bacterial nanocellulose, as well as its evaluation as a biomaterial for medical implants.
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A review of the features and analyses of the solid electrolyte interphase in Li-ion batteries

TL;DR: The solid electrolyte interphase (SEI) is a protecting layer formed on the negative electrode of Li-ion batteries as a result of electrolyte decomposition, mainly during the first cycle as discussed by the authors.