5,881 to 5,890 of 11,415 Results
Nov 26, 2021 -
Salmon keratocyte DIC microscopy videos
Plain Text - 4.0 MB -
MD5: a96feb154245c6484cd12950a8e20ee4
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Nov 26, 2021 -
Salmon keratocyte DIC microscopy videos
TIFF Image - 19.5 GB -
MD5: 766720795af805fdd5a6313920b25a38
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Nov 26, 2021 -
Salmon keratocyte DIC microscopy videos
AVI Video - 18.4 MB -
MD5: 0789a6ddd32f85ef8f183c2c52bd4c0c
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Nov 26, 2021 -
Salmon keratocyte DIC microscopy videos
Plain Text - 542.8 KB -
MD5: 961e3b53f779095378d57d96fd36e9ed
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Nov 26, 2021 -
Salmon keratocyte DIC microscopy videos
TIFF Image - 2.6 GB -
MD5: eba52ed171837f48830d6891134243fb
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Nov 16, 2021
Myrvang, Margaretha, 2021, "Code for: Modelling the influence of meteoric smoke particles on artificial heating in the D-region", https://doi.org/10.18710/D4REDW, DataverseNO, V1
This MATLAB code computes the electron temperature during artificial heating in the ionospheric D-region between 60-120 km. Goal: This code investigate if meteoric smoke particles (MSP) influences the electron temperature during heating in the D-region. Electron attachment to MSP, which charges MSP negatively, reduces the electron density in the he... |
Nov 16, 2021 -
Code for: Modelling the influence of meteoric smoke particles on artificial heating in the D-region
Plain Text - 8.3 KB -
MD5: d7f7a430c4a007e202faf95d29250bfd
Read me file. |
Nov 16, 2021 -
Code for: Modelling the influence of meteoric smoke particles on artificial heating in the D-region
Plain Text - 1.8 KB -
MD5: 2d9a4e0aa9937cf78acf210900d58c30
Function that computes the imaginary part of the plasma refractive index by using the Appleton-Hartree dispersion relation. |
Nov 16, 2021 -
Code for: Modelling the influence of meteoric smoke particles on artificial heating in the D-region
Plain Text - 2.9 KB -
MD5: 3bfa8d2761bd64f9a9e18c1c673acf10
Function that computes Q - L, where Q is absorbed radio wave energy and L is electron cooling rates. |
Nov 16, 2021 -
Code for: Modelling the influence of meteoric smoke particles on artificial heating in the D-region
Plain Text - 8.3 KB -
MD5: bd49282a897f7a5595701ffd084f3cd7
Function that computes electron cooling rates of electron collisions with the neutral species molecular nitrogen, molecular oxygen and atomic oxygen, both elastic and inelastic collisions, where electrons lose energy and are cooled. |
