55 research outputs found

    Table1_Financial openness and energy structure transformation.XLSX

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    Energy structure transformation is the only way for China to achieve the “dual carbon” goal, and one of the difficulties faced by energy transformation is financing. In the context of China’s steadily promoting the high-level opening-up of financial industry, this paper uses the panel data of China’s provincial level from 2010 to 2019 to systematically examine the impact of financial opening-up on the transformation of energy structure. The results show that: 1) Financial openness has a significant positive impact on the energy structure transition; 2) In different stages of energy structure transformation, as the main driving force in the initial stage of energy structure transformation is the government’s policy support, with the continuous maturity of energy structure transformation, the impact of financial openness on energy structure transformation gradually increases; 3) With different levels of economic development, the driving effect of financial openness is also different. The lower the level of economic development is, the stronger the driving effect of financial openness on energy structure transformation is due to the lack of financing channels. This paper provides a theoretical basis for China’s energy structure transformation, and also provides rich policy implications for promoting China’s financial industry to open up at a high level.</p

    sj-docx-2-dhj-10.1177_20552076231205741 - Supplemental material for Mobile-based program improves healthy eating of ulcerative colitis patients: A pilot study

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    Supplemental material, sj-docx-2-dhj-10.1177_20552076231205741 for Mobile-based program improves healthy eating of ulcerative colitis patients: A pilot study by Wenjing Tu, Shuxia Yan, Tingting Yin, Sumin Zhang, Wenjing Xu, Ping Zhang and Guihua Xu in DIGITAL HEALTH</p

    sj-docx-3-dhj-10.1177_20552076231205741 - Supplemental material for Mobile-based program improves healthy eating of ulcerative colitis patients: A pilot study

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    Supplemental material, sj-docx-3-dhj-10.1177_20552076231205741 for Mobile-based program improves healthy eating of ulcerative colitis patients: A pilot study by Wenjing Tu, Shuxia Yan, Tingting Yin, Sumin Zhang, Wenjing Xu, Ping Zhang and Guihua Xu in DIGITAL HEALTH</p

    sj-docx-1-dhj-10.1177_20552076231205741 - Supplemental material for Mobile-based program improves healthy eating of ulcerative colitis patients: A pilot study

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    Supplemental material, sj-docx-1-dhj-10.1177_20552076231205741 for Mobile-based program improves healthy eating of ulcerative colitis patients: A pilot study by Wenjing Tu, Shuxia Yan, Tingting Yin, Sumin Zhang, Wenjing Xu, Ping Zhang and Guihua Xu in DIGITAL HEALTH</p

    Graphene Oxide Glue-Electrode for Fabrication of Vertical, Elastic, Conductive Columns

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    Graphene has a planar atomic structure with high flexibility and might be used as ultrathin conductive glues or adhesion layers in electronics and other applications. Here, we show that graphene oxide (GO) sheets condensed from solution can act as a pure, thin-layer, nonpenetrating glue for fabrication of vertical architectures anchored on rigid and flexible substrates. Carbon nanotube (CNT) sponges are used as a porous template to make polymer-reinforced composite columns, to achieve both high conductivity and elastic behavior. These vertical columns are fixed on a substrate by reduced GO sheets as an electrode and exhibit reversible resistance change under large-strain compression for many cycles. Similar to the CNT gecko feet, we disclose high adhesion forces at the CNT-GO and GO-SiO<sub>2</sub> interfaces by mechanical tests and theoretical calculation. Three-dimensional CNT, graphene, and nanowire networks with our GO glue-electrodes have potential applications as energy storage electrodes, flexible sensors, functional composites, and vertical interconnects

    The relationship of SCUB to intron number.

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    <p>NNC/G to NNA/T ratio is defined as the ratio between the number of all SCs with C or G as the final base to the number of all SCs as A or T as the final base. N denotes any base.</p

    Phylogenic tree and principal component analysis of SCUB frequencies.

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    <p>A: the phylogenic tree based on the normalized SCUB frequencies of 59 SCs. B-C: the two-dimensional scatter plots using PC1-PC2 (B) and PC1-PC3 (C) coefficients, respectively. SCUB frequency are defined as the number of each SC to that number of total SCs.</p

    The relationship between the SCUB and exon position.

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    <p>NNC/G to NNA/T ratio is defined as the ratio between the number of all SCs with C or G as the final base to the number of all SCs as A or T as the final base. N denotes any base.</p
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