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- Role of niobium in glass structures
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- Why tiny droplets stick or bounce: The physics of speed, size and more!
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- Editorial - Proc. Instn Civil. Engrs: Energy, July 2025
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- Lift Recovery in the Post-Stall Region
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- Rotor performance while transitioning from horizontal to vertical flight
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- Why using appropriate screening tools matter
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- ICE Energy editorial on the global achievement of 'net-zero' greenhouse gas emissions by 2050
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- Life-cycle Energy Densities and Spatial Footprints of Various Electrical Power Systems
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- Industrial Energy Use and Carbon Emissions Reduction in a UK Context
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- Transformations to the aluminum coordination environment and network polymerization in amorphous aluminosilicates under pressure
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- The Background to and Outcomes from the 2023 Dubai Climate Summit (COP28)
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- Structure of GeO2 glass by neutron diffraction at pressures up to 17.5 GPa
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- Structure of GeO2 glass under pressure
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- Structure of liquids and glasses by neutron and x-ray diffraction techniques
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- Structure of liquid alumina near its melting point
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- Structural change in glassy GeSe2 under pressure
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- Structural transformations in glassy B2O3 under pressure
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- Pressure induced transformation from a tetrahedral to octahedral network in glassy silica
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- Symbiotic relationship between experiment and simulation: A case example
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- Structure and properties of amorphous materials by molecular dynamics
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- Temperature dependent structure of a network glass-forming system
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- Mapping the structural trends in zinc aluminosilicate glasses
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- Pressure dependent structure of amorphous magnesium aluminosilicates: The effect of replacing magnesia by alumina at the enstatite composition
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- Existential loneliness in older people
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- Cognitive ability mattered in the UK’s vote for Brexit, research shows
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- How social media mobilizes mass protests
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- Dark personality traits appear in the dreams of those who possess them
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- Structure of semiconducting versus fast-ion conducting glasses in the Ag–Ge–Se system
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- Densification Mechanisms of Oxide Glasses and Melts
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- Identifying and characterising the different structural length scales in liquids and glasses: an experimental approach
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- Packing and the structural transformations in liquid and amorphous oxides
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- Structure of liquid and glassy materials under pressure
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- Structure of Glassy Ag–Ge–Se by Neutron Diffraction with Isotope Substitution
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- Optimizing the counting times for sample-in-container scattering experiments
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- Impact of pressure on the structure of glass and its material properties
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- Topological Ordering and Viscosity in the Glass-Forming Ge–Se System
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- Structure of magnesium silicate glasses by 25Mg NMR
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- Structure and related properties of amorphous magnesium aluminosilicates
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- Structure of amorphous materials in the NASICON system Na_(1+x)Ti_2Si_xP_(3-x)O_12
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- Ring compaction as a mechanism of densification in amorphous silica
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- Characterising the ordering in liquid and amorphous materials on different length scales
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- Pressure induced structural transformations in amorphous MgSiO3 and CaSiO3
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- Structure of the Intermediate Phase Glasses GeSe3 and GeSe4: The Deployment of Neutron Diffraction With Isotope Substitution
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- Structure and properties of densified silica glass: characterizing the order within disorder
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