Difference between revisions of "Thesis"

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[[Media:Thesis Dissertation-Manual.pdf]]
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=Writing=
 
=Writing=
  
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[[OSLs]]
 
[[OSLs]]
  
=Introduction=
+
[[Experimental Methods]]
  
Here, a machine (which is allegedly known as “TRIMeV”) is used to fire a beam of butt-loads of tiny little charged particles – most likely electrons – that travel at supersonic speeds towards a measuring apparatus which is capable of profiling the flux of particles on a plane perpendicular to the beam, by means of a bunch of tiny weird OSL thingies.
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[[OSL Reader]]
  
 +
[[Radiation Dose Theory]]
  
 +
[[OSL Data Analysis]]
  
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=[[Title Page]]=
 
 
 
  
TLDR: fuck it just skip this section and dive right in!
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=Table of Contents=
  
=Theory=
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=Introduction=
For the sake of brevity and elegance, the reader is referred to the internet, where in due time he or she can find a fantastically large supply of papers pertaining to this study, some of which may contain content covering the relevant theory. 
 
  
==[[Related Papers/Links]]==
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=[[Radiation Dose Theory]]=
see above.
 
  
==[[TriMev_Simulations]]==
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===[[Related Papers/Links]]===
Literally fake news.
 
  
== Why does 114.5 R = 100 rad?==
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===[[Deposited Energy Simulations]]===
This is why: [[Roentgen to Rad Conversion]]
 
  
Checkmate ( ͡° ͜ʖ ͡°)
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===[[TriMev_Simulations]]===
  
=Apparatus=
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===Why does 114.5 R = 100 rad?===
 +
This is why: [[Roentgen to Rad Conversion]].
  
==[[OSLs]]==
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Note that 1Gy = 100 Rad
  
==Accelerators==
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-> important in calibration of OSLs
  
===TriMeV Description===
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===[[Absorbed Dose Information]]===
  
[[Cathode Profile]]
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=Apparatus=
  
==Detectors==
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===[[OSLs]]===
  
[[OSL Info]]
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Get pictures from experiment for experimental setup, etc
  
===Nanodot Calibration===
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==Nanodot Calibration==
  
 
====<math>^{137}\text{Cs Source}</math>====
 
====<math>^{137}\text{Cs Source}</math>====
  
 
[[Reproducibility with 137Cs]]
 
[[Reproducibility with 137Cs]]
 +
 +
[[Calibration Info]]
  
 
===[[First Board for Beam Profile]]===
 
===[[First Board for Beam Profile]]===
  
=Experimental Methods=
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==Accelerators==
Here I discuss '''how''' I used the experimental apparatus, as described in the preceding section, to make all these damn measurements!
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 +
===25b Description===
 +
 
 +
=[[Experimental Methods and Setup]]=
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===[[May 31st 2018 - 25b 0 degree port]]===
  
=Data Analysis=
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=[[OSL Data Analysis]]=
  
 
==[[OSL Reader]]==
 
==[[OSL Reader]]==
  
==[[TriMeV Shot Log]]==
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-> Code used to create images and background subtraction
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 +
 
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[[File:Pulse_v_Dose_Fit.png]]
  
 
=Error Analysis=
 
=Error Analysis=
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[[Forest Error Analysis for the Physical Sciences]]
 +
 +
standard deviations and propagated errors
 +
 +
error in OSL reader and OSLs (check manufacturer's paperwork)
  
 
=Conclusion=
 
=Conclusion=

Latest revision as of 00:49, 30 January 2019

Media:Thesis Dissertation-Manual.pdf

Writing

Calibration Info

OSLs

Experimental Methods

OSL Reader

Radiation Dose Theory

OSL Data Analysis

Title Page

Table of Contents

Introduction

Radiation Dose Theory

Related Papers/Links

Deposited Energy Simulations

TriMev_Simulations

Why does 114.5 R = 100 rad?

This is why: Roentgen to Rad Conversion.

Note that 1Gy = 100 Rad

-> important in calibration of OSLs

Absorbed Dose Information

Apparatus

OSLs

Get pictures from experiment for experimental setup, etc

Nanodot Calibration

137Cs Source

Reproducibility with 137Cs

Calibration Info

First Board for Beam Profile

Accelerators

25b Description

Experimental Methods and Setup

May 31st 2018 - 25b 0 degree port

OSL Data Analysis

OSL Reader

-> Code used to create images and background subtraction


Pulse v Dose Fit.png

Error Analysis

Forest Error Analysis for the Physical Sciences

standard deviations and propagated errors

error in OSL reader and OSLs (check manufacturer's paperwork)

Conclusion


User:Harpconn