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Radiation: Applications01:17

Radiation: Applications

1.2K
The average temperature of Earth is the subject of much current discussion. Earth is in radiative contact with both the Sun and dark space; it receives almost all its energy from the radiation of the Sun and reflects some of it into outer space. Dark space is very cold, about 3 K, so Earth radiates energy into it. For instance, heat transfer occurs from soil and grasses, the rate of which can be so rapid that frost can occur on clear summer evenings, even in warm latitudes.
The average...
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Radiation Pressure: Problem Solving01:09

Radiation Pressure: Problem Solving

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The radiation pressure applied by an electromagnetic wave on a perfectly absorbing surface equals the energy density of the wave. The wave's momentum also gets transferred to the surface when an electromagnetic wave is entirely absorbed by it. The rate at which momentum is transmitted to an absorbing surface perpendicular to the propagation direction equals the force on the surface.
The average value of the rate of momentum transfer divided by the absorbing area represents the average force...
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Related Experiment Video

Updated: Jul 23, 2025

A Basic Positron Emission Tomography System Constructed to Locate a Radioactive Source in a Bi-dimensional Space
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Radiation Source Localization Using a Model-Based Approach.

András Molnár1,2, Daniel Kiss2, Zsolt Domozi3

  • 1Faculty of Economy, J. Selye University, Bratislavská cesta 3322, 945 01 Komárno, Slovakia.

Sensors (Basel, Switzerland)
|July 14, 2023
PubMed
Summary

This study presents an optimization method to locate a single radiation source using gamma dose measurements. The technique successfully estimates radiation position and intensity without prior positional data, proving reliable for analytical applications.

Keywords:
dronefield dose distributiongamma radiation

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Area of Science:

  • Radiation detection and measurement
  • Geophysical surveying
  • Environmental monitoring

Background:

  • Gamma dose measurements can originate from background radiation and localized sources.
  • Accurate source localization is crucial for radiation safety and environmental assessment.
  • Existing methods may require extensive prior data or complex processing.

Purpose of the Study:

  • To develop and validate an optimization method for locating a single radiation source.
  • To estimate the geographical coordinates and intensity of a gamma-emitting source.
  • To assess the method's reliability as a standalone analytical tool.

Main Methods:

  • An optimization procedure assuming gamma dose values stem from background and a single source.
  • Spatial search for a geographical coordinate adhering to the radiation's distance law.
  • Validation using independently measured experimental data where source parameters were predefined but withheld during processing.

Main Results:

  • The method accurately estimated radiation position without initial positional parameters.
  • Source intensity was also reliably determined.
  • Validation confirmed the procedure's effectiveness in locating a single source.

Conclusions:

  • The developed method is a reliable analytical tool for single radiation source localization.
  • It can serve as a foundational step for more complex multi-source detection processes.
  • The technique demonstrates the feasibility of estimating source parameters from dose measurements alone.