Search alternatives:
large decrease » larger decrease (Expand Search), marked decrease (Expand Search), large increases (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
al large » ai large (Expand Search), _ large (Expand Search), b large (Expand Search)
a large » _ large (Expand Search)
large decrease » larger decrease (Expand Search), marked decrease (Expand Search), large increases (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
al large » ai large (Expand Search), _ large (Expand Search), b large (Expand Search)
a large » _ large (Expand Search)
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Geographical distribution of large cities and small cities.
Published 2024“…The Figure reveals two patterns: 1) the maximum level of innovation is higher in large cities (2.53) than in small cities (2.02); 2) among large cities in <b>a</b>, innovation levels in general decrease with nightlight density. …”
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High-Temperature Resistance, Lightweight, and Thermally Insulating Silica Aerogel via Doping Hollow Silica Nanoparticles
Published 2025“…A 71% reduction in density was achieved under ambient conditions. …”
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High-Temperature Resistance, Lightweight, and Thermally Insulating Silica Aerogel via Doping Hollow Silica Nanoparticles
Published 2025“…A 71% reduction in density was achieved under ambient conditions. …”
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High-Temperature Resistance, Lightweight, and Thermally Insulating Silica Aerogel via Doping Hollow Silica Nanoparticles
Published 2025“…A 71% reduction in density was achieved under ambient conditions. …”
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High-Temperature Resistance, Lightweight, and Thermally Insulating Silica Aerogel via Doping Hollow Silica Nanoparticles
Published 2025“…A 71% reduction in density was achieved under ambient conditions. …”
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High-Temperature Resistance, Lightweight, and Thermally Insulating Silica Aerogel via Doping Hollow Silica Nanoparticles
Published 2025“…A 71% reduction in density was achieved under ambient conditions. …”
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High-Temperature Resistance, Lightweight, and Thermally Insulating Silica Aerogel via Doping Hollow Silica Nanoparticles
Published 2025“…A 71% reduction in density was achieved under ambient conditions. …”
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