80,739 research outputs found
Martin Williams and the Armstrongian prophecy
This study examines the place of Louis Armstrong in the work of the jazz critic Martin Williams. By tallying Williams’s lasting interest in Armstrong from his teenage years to his last projects, the study shows that the critic’s focus on Armstrong’s rhythmic innovation depended on the argument that this particular aspect of Armstrong’s art was the major axis in the development of jazz history, an axis crucial to the emergence of other jazz musicians deemed most significant by Williams. The study further shows that Williams’s approach was most heavily influenced by the literary criticism of T. S. Eliot and the foundationalism of André Hodeir, and that Williams’s persistent interest in aesthetic lineage could be traced to the ambivalence he felt toward his own parentage.M.A.Includes bibliographical referencesby Michael Tom L
Data for Using a 2.5D boundary element model to predict the sound distribution on train external surfaces due to rolling noise
This dataset supports the publication:
Hui Li; David Thompson; Giacomo Squicciarini; Xiaowan Liu; Martin Rissmann; Francisco D Denia; Juan Giner-Navarro. Using a 2.5D boundary element model to predict the sound distribution on train external surfaces due to rolling noise. Journal of Sound and Vibration DOI:https://doi.org/10.1016/j.jsv.2020.115599</span
Revealing the Effect of High Ni Content in Li‐Rich Cathode Materials: Mitigating Voltage Decay or Increasing Intrinsic Reactivity
Li-rich layered oxides are considered as one of the most promising cathode materials for secondary lithium batteries due to their high specific capacities, but the issue of continuous voltage decay during cycling hinders their market entry. Increasing the Ni content in Li-rich materials is assumed to be an effective way to address this issue and attracts recent research interests. However, a high Ni content may induce increased intrinsic reactivity of materials, resulting in severe side reactions with the electrolyte. Thus, a comprehensive study to differentiate the two effects of the Ni content on the cell performance with Li-rich cathode is carried out in this work. Herein, it is demonstrated that a properly dosed amount of Ni can effectively suppress the voltage decay in Li-rich cathodes, while over-loading of Ni, on the contrary, can cause structural instability, Ni dissolution, and nonuniform Li deposition during cycling as well as severe oxygen loss. This work offers a deep understanding on the impacts of Ni content in Li-rich materials, which can be a good guidance for the future design of such cathodes for high energy density lithium batteries
MT310_xyl(+)_metal(+)_A22(+)
Raw data files of MT310_xyl(+)_metal(+)_A22(+)<strong>Tilt Series Date:</strong> 2009-06-17</p>
<strong>Data Taken By:</strong> Zhuo Li</p>
<strong>Species / Specimen:</strong> Caulobacter crescentus</p>
<strong>Strain:</strong> NA1000</p>
<strong>Tilt Series Settings:</strong> Single Axis, tilt range: (-60.0°, 60.0°), step: 1°, constant angular increment, dosage: 180.0 eV/Ų, defocus: -12.0 μm, magnification: 0x. </p>
<strong>Acquisition Software:</strong> Leginon</p>
<strong>Upload Method:</strong> webload</p>
<strong>Processing Software Used:</strong> RAPTOR, Peach</p>
<strong>Collaborators and Roles:</strong> MT310 was constructed by Martin Thanbichler. The cell was cultured and treated by Zhuo Li. Data were collected and processed by Zhuo Li.</p>
<strong>Purification / Growth Conditions / Treatment:</strong> MT310 cells were induced by xylose and treated with 50 uM AuCl for 20 hours, and treated with 10 ug/ml A22 for 1.5 hours.</p>
<strong>Sample Preparation:</strong> 10 nm gold. </p>Files available via S3 at https://renc.osn.xsede.org/ini210004tommorrell/tomography_archive/zla2009-06-17-11</p>09jun17a_A22c_016.mrc, Tilt Series (Pixel Size 0.95 nm), 1.0 GB
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09jun17a_A22c_016_part.rec, Reconstruction (Pixel Size 1.9 nm), 471.9 MB
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MT310_xyl(+)_metal(+)_A22(+)
Raw data files of MT310_xyl(+)_metal(+)_A22(+)<strong>Tilt Series Date:</strong> 2009-06-17</p>
<strong>Data Taken By:</strong> Zhuo Li</p>
<strong>Species / Specimen:</strong> Caulobacter crescentus</p>
<strong>Strain:</strong> NA1000</p>
<strong>Tilt Series Settings:</strong> Single Axis, tilt range: (-60.0°, 60.0°), step: 1°, constant angular increment, dosage: 180.0 eV/Ų, defocus: -12.0 μm, magnification: 0x. </p>
<strong>Acquisition Software:</strong> Leginon</p>
<strong>Upload Method:</strong> webload</p>
<strong>Processing Software Used:</strong> RAPTOR, Peach</p>
<strong>Collaborators and Roles:</strong> MT310 was constructed by Martin Thanbichler. The cell was cultured and treated by Zhuo Li. Data were collected and processed by Zhuo Li.</p>
<strong>Purification / Growth Conditions / Treatment:</strong> MT310 cells were induced by xylose and treated with 50 uM AuCl for 20 hours, and treated with 10 ug/ml A22 for 1.5 hours.</p>
<strong>Sample Preparation:</strong> 10 nm gold. </p>Files available via S3 at https://renc.osn.xsede.org/ini210004tommorrell/tomography_archive/zla2009-06-17-28</p>09jun17a_A22c_033.mrc, Tilt Series (Pixel Size 0.95 nm), 1.0 GB
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09jun17a_A22c_033_part.rec, Reconstruction (Pixel Size 1.9 nm), 471.9 MB
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MT310_xyl(+)_metal(+)_A22(+)
Raw data files of MT310_xyl(+)_metal(+)_A22(+)<strong>Tilt Series Date:</strong> 2009-06-17</p>
<strong>Data Taken By:</strong> Zhuo Li</p>
<strong>Species / Specimen:</strong> Caulobacter crescentus</p>
<strong>Strain:</strong> NA1000</p>
<strong>Tilt Series Settings:</strong> Single Axis, tilt range: (-60.0°, 60.0°), step: 1°, constant angular increment, dosage: 180.0 eV/Ų, defocus: -12.0 μm, magnification: 0x. </p>
<strong>Acquisition Software:</strong> Leginon</p>
<strong>Upload Method:</strong> webload</p>
<strong>Processing Software Used:</strong> RAPTOR, Peach</p>
<strong>Collaborators and Roles:</strong> MT310 was constructed by Martin Thanbichler. The cell was cultured and treated by Zhuo Li. Data were collected and processed by Zhuo Li.</p>
<strong>Purification / Growth Conditions / Treatment:</strong> MT310 cells were induced by xylose and treated with 50 uM AuCl for 20 hours, and treated with 10 ug/ml A22 for 1.5 hours.</p>
<strong>Sample Preparation:</strong> 10 nm gold. </p>Files available via S3 at https://renc.osn.xsede.org/ini210004tommorrell/tomography_archive/zla2009-06-17-18</p>09jun17a_A22c_023.mrc, Tilt Series (Pixel Size 0.95 nm), 1.0 GB
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09jun17a_A22c_023_full.rec, Reconstruction (Pixel Size 1.9 nm), 471.9 MB
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MT310_xyl(+)_metal(+)_A22(+)
Raw data files of MT310_xyl(+)_metal(+)_A22(+)<strong>Tilt Series Date:</strong> 2009-06-17</p>
<strong>Data Taken By:</strong> Zhuo Li</p>
<strong>Species / Specimen:</strong> Caulobacter crescentus</p>
<strong>Strain:</strong> NA1000</p>
<strong>Tilt Series Settings:</strong> Single Axis, tilt range: (-60.0°, 60.0°), step: 1°, constant angular increment, dosage: 180.0 eV/Ų, defocus: -12.0 μm, magnification: 0x. </p>
<strong>Acquisition Software:</strong> Leginon</p>
<strong>Upload Method:</strong> webload</p>
<strong>Processing Software Used:</strong> RAPTOR, Peach</p>
<strong>Collaborators and Roles:</strong> MT310 was constructed by Martin Thanbichler. The cell was cultured and treated by Zhuo Li. Data were collected and processed by Zhuo Li.</p>
<strong>Purification / Growth Conditions / Treatment:</strong> MT310 cells were induced by xylose and treated with 50 uM AuCl for 20 hours, and treated with 10 ug/ml A22 for 1.5 hours.</p>
<strong>Sample Preparation:</strong> 10 nm gold. </p>Files available via S3 at https://renc.osn.xsede.org/ini210004tommorrell/tomography_archive/zla2009-06-17-6</p>09jun17a_A22c_011.mrc, Tilt Series (Pixel Size 0.95 nm), 1.0 GB
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09jun17a_A22c_011_full.rec, Reconstruction (Pixel Size 1.9 nm), 471.9 MB
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MT310_xyl(+)_metal(+)_A22(+)
Raw data files of MT310_xyl(+)_metal(+)_A22(+)<strong>Tilt Series Date:</strong> 2009-06-17</p>
<strong>Data Taken By:</strong> Zhuo Li</p>
<strong>Species / Specimen:</strong> Caulobacter crescentus</p>
<strong>Strain:</strong> NA1000</p>
<strong>Tilt Series Settings:</strong> Single Axis, tilt range: (-60.0°, 60.0°), step: 1°, constant angular increment, dosage: 180.0 eV/Ų, defocus: -12.0 μm, magnification: 0x. </p>
<strong>Acquisition Software:</strong> Leginon</p>
<strong>Upload Method:</strong> webload</p>
<strong>Processing Software Used:</strong> RAPTOR, Peach</p>
<strong>Collaborators and Roles:</strong> MT310 was constructed by Martin Thanbichler. The cell was cultured and treated by Zhuo Li. Data were collected and processed by Zhuo Li.</p>
<strong>Purification / Growth Conditions / Treatment:</strong> MT310 cells were induced by xylose and treated with 50 uM AuCl for 20 hours, and treated with 10 ug/ml A22 for 1.5 hours.</p>
<strong>Sample Preparation:</strong> 10 nm gold. </p>Files available via S3 at https://renc.osn.xsede.org/ini210004tommorrell/tomography_archive/zla2009-06-17-10</p>09jun17a_A22c_015.mrc, Tilt Series (Pixel Size 0.95 nm), 1.0 GB
<a role="button" class="ui compact mini button" href="https://renc.osn.xsede.org/ini210004tommorrell/tomography_archive/zla2009-06-17-10/rawdata/09jun17a_A22c_015.mrc"
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09jun17a_A22c_015_full.rec, Reconstruction (Pixel Size 1.9 nm), 471.9 MB
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MT310_xyl(+)_metal(+)_A22(+)
Raw data files of MT310_xyl(+)_metal(+)_A22(+)<strong>Tilt Series Date:</strong> 2009-06-17</p>
<strong>Data Taken By:</strong> Zhuo Li</p>
<strong>Species / Specimen:</strong> Caulobacter crescentus</p>
<strong>Strain:</strong> NA1000</p>
<strong>Tilt Series Settings:</strong> Single Axis, tilt range: (-60.0°, 60.0°), step: 1°, constant angular increment, dosage: 180.0 eV/Ų, defocus: -12.0 μm, magnification: 0x. </p>
<strong>Acquisition Software:</strong> Leginon</p>
<strong>Upload Method:</strong> webload</p>
<strong>Processing Software Used:</strong> RAPTOR, Peach</p>
<strong>Collaborators and Roles:</strong> MT310 was constructed by Martin Thanbichler. The cell was cultured and treated by Zhuo Li. Data were collected and processed by Zhuo Li.</p>
<strong>Purification / Growth Conditions / Treatment:</strong> MT310 cells were induced by xylose and treated with 50 uM AuCl for 20 hours, and treated with 10 ug/ml A22 for 1.5 hours.</p>
<strong>Sample Preparation:</strong> 10 nm gold. </p>Files available via S3 at https://renc.osn.xsede.org/ini210004tommorrell/tomography_archive/zla2009-06-17-27</p>09jun17a_A22c_032.mrc, Tilt Series (Pixel Size 0.95 nm), 1.0 GB
<a role="button" class="ui compact mini button" href="https://renc.osn.xsede.org/ini210004tommorrell/tomography_archive/zla2009-06-17-27/rawdata/09jun17a_A22c_032.mrc"
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09jun17a_A22c_032_part.rec, Reconstruction (Pixel Size 1.9 nm), 471.9 MB
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MT310_xyl(+)_metal(+)_A22(+)
Raw data files of MT310_xyl(+)_metal(+)_A22(+)<strong>Tilt Series Date:</strong> 2009-06-17</p>
<strong>Data Taken By:</strong> Zhuo Li</p>
<strong>Species / Specimen:</strong> Caulobacter crescentus</p>
<strong>Strain:</strong> NA1000</p>
<strong>Tilt Series Settings:</strong> Single Axis, tilt range: (-60.0°, 60.0°), step: 1°, constant angular increment, dosage: 180.0 eV/Ų, defocus: -12.0 μm, magnification: 0x. </p>
<strong>Acquisition Software:</strong> Leginon</p>
<strong>Upload Method:</strong> webload</p>
<strong>Processing Software Used:</strong> RAPTOR, Peach</p>
<strong>Collaborators and Roles:</strong> MT310 was constructed by Martin Thanbichler. The cell was cultured and treated by Zhuo Li. Data were collected and processed by Zhuo Li.</p>
<strong>Purification / Growth Conditions / Treatment:</strong> MT310 cells were induced by xylose and treated with 50 uM AuCl for 20 hours, and treated with 10 ug/ml A22 for 1.5 hours.</p>
<strong>Sample Preparation:</strong> 10 nm gold. </p>Files available via S3 at https://renc.osn.xsede.org/ini210004tommorrell/tomography_archive/zla2009-06-17-8</p>09jun17a_A22c_013.mrc, Tilt Series (Pixel Size 0.95 nm), 1.0 GB
<a role="button" class="ui compact mini button" href="https://renc.osn.xsede.org/ini210004tommorrell/tomography_archive/zla2009-06-17-8/rawdata/09jun17a_A22c_013.mrc"
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09jun17a_A22c_013_full.rec, Reconstruction (Pixel Size 1.9 nm), 471.9 MB
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