Difference between revisions of "User:Troels Emtekær Linnet"

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yCAR_ppm = 118.078
 
yCAR_ppm = 118.078
 
</source>
 
</source>
 
= Google Cloud Computing =
 
This follows the same idea as from [[Run_relax_at_cloud.sagemath.com|Run relax at cloud.sagemath.com]]
 
 
== pricing ==
 
For this example of '''Google Cloud Computing''', we wan't to have access to as many computer cores as possible
 
 
* The pricing explained here: https://cloud.google.com/pricing/
 
* A pricing calculator is here: https://cloud.google.com/products/calculator/
 
 
For calculation of:
 
* '''1''' server
 
* using '''Free: Debian, CentOS, ...'''
 
* with a '''regular''' VM Class
 
* Instance type of (HIGH CPU) '''n1-highcpu-32    (vCPUs: 32, RAM: 28.80 GB)'''
 
* 0 '''SSD'''
 
* Datacenter location '''Europe'''
 
* Average days per month each server is running: '''1''' days, per month.
 
The '''monthly''' price was of November 2015, '''$32.26'''.
 
 
At November 2015, google give free trial of 300$. https://cloud.google.com/free-trial/
 
 
 
== Start free trial ==
 
Please first see this video: https://cloud.google.com/compute/docs/linux-quickstart or https://www.youtube.com/watch?v=BnEhYaUY4sA
 
 
Go to: https://cloud.google.com/free-trial/ and click '''Start your free trial'''.
 
 
You need to sign up with a credit card. To prevent mis-abuse from robots and hackers.
 
 
* Then go to: https://console.developers.google.com/
 
* You should already have a project called '''My First Project'''. You can '''create a new project''' in top right corner of the browser under the dropdown of '''My First Project'''.
 
* Call the new project '''relax''' with '''App Engine location''' at '''europe-west'''
 
* Click then at '''Try Compute Engine'''
 

Latest revision as of 15:59, 28 November 2015

Troels Emtekær Linnet PhD student Copenhagen University SBiNLab

Tests

80px 80px

<include src="https://raw.github.com/Pymol-Scripts/Pymol-script-repo/master/cyspka.py" />

Test2

<include src="http://www.ietf.org/rfc/rfc1945" />

Test DPL imagecontainer=Screenshots

[[%PAGE%|thumb|185px|A random relax screenshot. See Screenshots.]]


SeriesTab

ls -v -d -1 */*.ft2 > allplanes.list
cd analysis_FT/int_corr_ft_method_all_awk/coMDD
seriesTab -in peaks.dat
seriesTab -in ../../peaks.dat -out allplanes_coMDD_ser.ser -list allplanes_coMDD.list

Test randomimagebycategor


Test

from math import pi
from lib import nmr
from lib.physical_constants import return_gyromagnetic_ratio


id = 'test'
H_frq = 900.0e6
B0_tesla =  H_frq / return_gyromagnetic_ratio(nucleus='1H') * 2.0 * pi
print "B0 in Tesla:", B0_tesla
isotope = '15N'

yOBS_N15_rad_s = return_gyromagnetic_ratio(nucleus=isotope) * B0_tesla
yOBS_N15_ppm = nmr.frequency_to_ppm_from_rad(frq=yOBS_N15_rad_s, B0=H_frq, isotope=isotope)

print yOBS_N15_ppm

# Convert hz
offset_hz = 2100.
offset_ppm = nmr.frequency_to_ppm(frq=offset_hz, B0=H_frq, isotope=isotope)
print offset_ppm


#yOBS_rad_s = return_gyromagnetic_ratio(nucleus=isotope) * B0_tesla
#print yOBS_rad_s
#yOBS_ppm = nmr.frequency_to_ppm_from_rad(frq=yOBS_rad_s, B0=H_frq, isotope=isotope)
#print yOBS_ppm


# Center carriage In ppm
yCAR_ppm = 118.078