Skip to content

Instantly share code, notes, and snippets.

0 the dose rate of the Fugen Nuclear Power Station can be calculated in detail using the DERS software .
0 the dose rate of the Fugen Nuclear Power Station is calculated in detail using the DERS software .
0 the dose rate of the Fugen Nuclear Power Station can be calculated in detail using the DERS software .
1 the VRdose software knows the change of the situation when the dose rate is calculated , that is , the change of the object is known by the special marker in DERS .
1 the change of the situation when the dose rate is calculated , namely , the change of the object is known by the special marker in DERS .
1 the change of the situation in calculating the dose rate , that is , the change of the object , is known by the VRdose software with the special marker in DERS .
2 DERS can calculate new dose rate in proportion to these changes .
2 DERS allows the calculation of new dose rate in proportion to these changes .
2 DERS can calculate new dose rate in proportion to these changes .
3 the features , usage man
0 the dose rate of the Fugen Nuclear Power Station can be calculated in detail using the DERS software .
0 the dose rate of the Fugen Nuclear Power Station is calculated in detail using the DERS software .
0 the dose rate of the Fugen Nuclear Power Station can be calculated in detail using the DERS software .
1 the VRdose software knows the change of the situation when the dose rate is calculated , that is , the change of the object is known by the special marker in DERS .
1 the change of the situation when the dose rate is calculated , namely , the change of the object is known by the special marker in DERS .
1 the change of the situation in calculating the dose rate , that is , the change of the object , is known by the VRdose software with the special marker in DERS .
2 DERS can calculate new dose rate in proportion to these changes .
2 DERS allows the calculation of new dose rate in proportion to these changes .
2 DERS can calculate new dose rate in proportion to these changes .
3 the features , usage man
0 the dose rate of the Fugen Nuclear Power Station can be calculated in detail using the DERS software .
0 the dose rate of the Fugen Nuclear Power Station is calculated in detail using the DERS software .
0 the dose rate of the Fugen Nuclear Power Station can be calculated in detail using the DERS software .
1 the VRdose software knows the change of the situation when the dose rate is calculated , that is , the change of the object is known by the special marker in DERS .
1 the change of the situation when the dose rate is calculated , namely , the change of the object is known by the special marker in DERS .
1 the change of the situation in calculating the dose rate , that is , the change of the object , is known by the VRdose software with the special marker in DERS .
2 DERS can calculate new dose rate in proportion to these changes .
2 DERS allows the calculation of new dose rate in proportion to these changes .
2 DERS can calculate new dose rate in proportion to these changes .
3 the features , usage man
This file has been truncated, but you can view the full file.
0 ▁School s ▁are ▁encouraged ▁to ▁focus ▁more ▁on ▁mathematics , ▁spell ing ▁and ▁grammar .
0 ▁School s ▁will ▁be ▁encouraged ▁to ▁focus ▁more ▁on ▁mathematics , ▁spell ing ▁and ▁grammar .
0 ▁School s ▁become ▁more ▁focused ▁on ▁ma th , ▁spell ing , ▁and ▁grammar .
1 ▁In ▁English ▁literature ▁courses , ▁students ▁will ▁have ▁to ▁deal ▁with ▁at ▁least ▁one ▁piece ▁of ▁Shakespeare , ▁a ▁19 th ▁century ▁novel , ▁romantic ▁poetry ▁and ▁contemporary ▁British ▁novel s ▁from ▁1914 .
1 ▁Student s ▁in ▁English ▁literature ▁will ▁have ▁to ▁deal ▁with ▁at ▁least ▁one ▁piece ▁of ▁Shakespeare , ▁a ▁19 th ▁century ▁novel , ▁romantic ▁poetry ▁and ▁contemporary ▁British ▁novel s ▁from ▁1914 .
1 ▁In ▁English ▁literature ▁courses ▁students ▁will ▁have ▁to ▁deal ▁with ▁at ▁least ▁one ▁piece ▁of ▁Shakespeare , ▁a ▁19 th ▁century ▁novel , ▁romantic ▁poetry ▁and ▁contemporary ▁British ▁novel s ▁from ▁1914 .
2 ▁The ▁examination ▁also ▁contains ▁" un exp ect ed ▁texts " ▁in ▁order ▁to ▁encourage ▁wider ▁reading .
2 ▁The ▁examination
0 the dose rate of the Fugen Nuclear Power Station can be calculated in detail using the DERS software .
0 the dose rate of the Fugen Nuclear Power Station is calculated in detail using the DERS software .
0 the dose rate of the Fugen Nuclear Power Station can be calculated in detail using the DERS software .
1 the VRdose software knows the change of the situation when the dose rate is calculated , that is , the change of the object is known by the special marker in DERS .
1 the change of the situation when the dose rate is calculated , namely , the change of the object is known by the special marker in DERS .
1 the change of the situation in calculating the dose rate , that is , the change of the object , is known by the VRdose software with the special marker in DERS .
2 DERS can calculate new dose rate in proportion to these changes .
2 DERS allows the calculation of new dose rate in proportion to these changes .
2 DERS can calculate new dose rate in proportion to these changes .
3 the features , usage man
#!/usr/bin/python3
import sys, os
import time
import random
import getpass
import subprocess
if not os.path.exists("/tmp/waitgpu"):
os.mkdir("/tmp/waitgpu")
0 the dose rate of the `` Fugen '' can be calculated in detail using the DERS software .
0 the dose rate of the `` Fugen '' can be calculated in detail using the DERS software .
0 the dose rate of the `` Fugen '' is calculated in detail using the DERS software .
1 the change of the situation in calculating the dose rate , i.e. the change of the object , is known by the special marker in DERS .
1 the change of the situation in calculating the dose rate , that is , the change of the object is known by the special marker in DERS .
1 the VRdose software enables the change of the situation in calculating the dose rate , that is , the change of the object by the special marker in DERS .
2 DERS can calculate the new dose rate in proportion to these changes .
2 the new dose rate can be calculated in proportion to these changes .
2 DERS calculates new dose rate corresponding to these changes .
3 this paper summarizes the characteristics of R5 version of this software , the utilization manual and the design document .
0 the dose rate of the `` Fugen '' can be calculated in detail using the DERS software .
0 the dose rate of the `` Fugen '' can be calculated in detail using the DERS software .
0 the dose rate of the `` Fugen '' is calculated in detail using the DERS software .
1 the change of the situation in calculating the dose rate , i.e. the change of the object , is known by the special marker in DERS .
1 the change of the situation in calculating the dose rate , that is , the change of the object is known by the special marker in DERS .
1 the VRdose software enables the change of the situation in calculating the dose rate , that is , the change of the object by the special marker in DERS .
2 DERS can calculate the new dose rate in proportion to these changes .
2 the new dose rate can be calculated in proportion to these changes .
2 DERS calculates new dose rate corresponding to these changes .
3 this paper summarizes the characteristics of R5 version of this software , the utilization manual and the design document .
0 the dose rate of the `` Fugen '' can be calculated in detail using the DERS software .
0 the dose rate of the `` Fugen '' can be calculated in detail using the DERS software .
0 the dose rate of the `` Fugen '' is calculated in detail using the DERS software .
1 the change of the situation in calculating the dose rate , i.e. the change of the object , is known by the special marker in DERS .
1 the change of the situation in calculating the dose rate , that is , the change of the object is known by the special marker in DERS .
1 the VRdose software enables the change of the situation in calculating the dose rate , that is , the change of the object by the special marker in DERS .
2 DERS can calculate the new dose rate in proportion to these changes .
2 the new dose rate can be calculated in proportion to these changes .
2 DERS calculates new dose rate corresponding to these changes .
3 this paper summarizes the characteristics of R5 version of this software , the utilization manual and the design document .
| 12 the minimum detection strain of the sensor was 10-5 . | 12 the minimum detectable strain was 10-5 . |
| 12 the minimum detection strain was 10-5 . | 12 the minimum detectable strain is 10-5 . |
| 12 the minimum detection strain was 10-5 . | 12 the minimum detectable distortion was 10-5 . |
| 48 the titled tape was produced by the PIT method . | 48 the tape of the title was produced by the PIT method . |
| 48 the titled tape was produced by the PIT method . | 48 the tape was prepared by the PIT method . |
| 48 the titled tape was produced by the PIT method . | 48 the PIT method was applied to the preparation of the tape . |