Suggestions(1)
Exact(3)
The estimated electron density agreed with the plasma frequency obtained from the plasma wave measurement made by LRS/WFC instrument onboard Kaguya (courtesy of Y. Kasahara).
The COSMIC RO estimated electron density profiles have significant errors at lower altitudes and topside, mainly at the equatorial and low-latitude belt.
In the latter case, cytochrome c is less deeply buried in the cavity between the two WD domains of Apaf-1, "peeking" slightly out of the estimated electron density (Fig. 1 a and b) and, consequently, leaving a part of the electron density map underneath cytochrome c unoccupied.
Similar(57)
The estimated electron plasma density is found to be in close proximity with the plasma simulation code 'OOPIC Pro'.
The estimated vertical electron density profile from FORMOSAT-3/COSMIC GPS-RO satellite, considering all the satellite line of sight around the time of eclipse totality shows maximum depletion of 43%.
A new technique is presented to estimate the electron density topside profile from information derived from ground-based ionograms.
Future flights of CITRIS can provide valuable complements to other satellite instruments such as GPS occultation receivers used to estimate vertical electron density profiles in the ionosphere.
Computerized ionospheric tomography (CIT) is a method to estimate ionospheric electron density distribution by using the global positioning system (GPS) signals recorded by the GPS receivers.
A different approach to estimate the electron density reference and its proper potential reference is developed to overcome the problems of instability and divergence of previous approaches.
MM and QM calculations have been used to estimate the electron density, electrostatic potential maps, partial charges, dipolar moments and other parameters to correlate the stereo-electronic properties with the differential biological activity of complexes.
We used the method of Ohya et al. (2003) to estimate the electron density of the nighttime D-region ionosphere via the following equation: n_{e} = 1.241times10^{-8}f_{p}left(,f_{p}+f_{H}right) (1).
Write better and faster with AI suggestions while staying true to your unique style.
Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com