Szilard-Chalmers' Reaction Solution

STEP 0: Pre-Calculation Summary
Formula Used
Recoil Energy = 536*(Energy of Photon^2/Mass of Recoil Atom)
Er = 536*(Eγ^2/m)
This formula uses 3 Variables
Variables Used
Recoil Energy - (Measured in Electron-Volt) - Recoil Energy defines the amount of energy of the recoil atom.
Energy of Photon - (Measured in Electron-Volt) - Energy of Photon is defined as the quantity of energy possessed by a photon.
Mass of Recoil Atom - (Measured in Atomic Mass Unit) - Mass of Recoil Atom is defined as the amount of the recoil atom present.
STEP 1: Convert Input(s) to Base Unit
Energy of Photon: 4.5 Megaelectron-Volt --> 4500000 Electron-Volt (Check conversion ​here)
Mass of Recoil Atom: 50 Atomic Mass Unit --> 50 Atomic Mass Unit No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Er = 536*(Eγ^2/m) --> 536*(4500000^2/50)
Evaluating ... ...
Er = 217080000000000
STEP 3: Convert Result to Output's Unit
3.47800654796402E-05 Joule -->217080000000000 Electron-Volt (Check conversion ​here)
FINAL ANSWER
217080000000000 2.2E+14 Electron-Volt <-- Recoil Energy
(Calculation completed in 00.004 seconds)

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Szilard-Chalmers' Reaction Formula

​LaTeX ​Go
Recoil Energy = 536*(Energy of Photon^2/Mass of Recoil Atom)
Er = 536*(Eγ^2/m)

What is the Szilard-Chalmers' Effect?

An effect discovered in 1934 by Leo Szilard and Thomas Chalmers; it has been used to separate radioactive products in a nuclear reaction involving the absorption of a neutron and the emission of gamma rays. If a material absorbs a neutron and subsequently emits a gamma ray, the emission of the gamma ray causes the nucleus to recoil. Frequently, the recoil energy is sufficient to break the chemical bond between the atom and the molecule of which it forms part. Thus, although the atom that has absorbed the neutron is an isotope of the original atom it is in a different form chemically, enabling separation to take place.

How to Calculate Szilard-Chalmers' Reaction?

Szilard-Chalmers' Reaction calculator uses Recoil Energy = 536*(Energy of Photon^2/Mass of Recoil Atom) to calculate the Recoil Energy, The Szilard-Chalmers' Reaction formula is used to produce a carrier-free source. All the various inorganic iodine and iodine compounds in the reaction mixture will have been formed from free-radical reactions after the n irradiation. Recoil Energy is denoted by Er symbol.

How to calculate Szilard-Chalmers' Reaction using this online calculator? To use this online calculator for Szilard-Chalmers' Reaction, enter Energy of Photon (Eγ) & Mass of Recoil Atom (m) and hit the calculate button. Here is how the Szilard-Chalmers' Reaction calculation can be explained with given input values -> 5.3E+32 = 536*(7.20979798500003E-13^2/8.30270100093084E-26).

FAQ

What is Szilard-Chalmers' Reaction?
The Szilard-Chalmers' Reaction formula is used to produce a carrier-free source. All the various inorganic iodine and iodine compounds in the reaction mixture will have been formed from free-radical reactions after the n irradiation and is represented as Er = 536*(Eγ^2/m) or Recoil Energy = 536*(Energy of Photon^2/Mass of Recoil Atom). Energy of Photon is defined as the quantity of energy possessed by a photon & Mass of Recoil Atom is defined as the amount of the recoil atom present.
How to calculate Szilard-Chalmers' Reaction?
The Szilard-Chalmers' Reaction formula is used to produce a carrier-free source. All the various inorganic iodine and iodine compounds in the reaction mixture will have been formed from free-radical reactions after the n irradiation is calculated using Recoil Energy = 536*(Energy of Photon^2/Mass of Recoil Atom). To calculate Szilard-Chalmers' Reaction, you need Energy of Photon (Eγ) & Mass of Recoil Atom (m). With our tool, you need to enter the respective value for Energy of Photon & Mass of Recoil Atom and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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