The Mac @TheMac
06 August, 08:03

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Mr. Boxoffrogs @boxoffrogs
06 August, 08:45
In response The Mac to his Publication
Except it's not silver iodine... it's aluminum, strontium, and beryllium... all much cheaper and much more toxic.

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Mr. Boxoffrogs @boxoffrogs
06 August, 08:46
In response Mr. Boxoffrogs to his Publication
Weather made here...

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The Mac @TheMac
06 August, 09:46
In response Mr. Boxoffrogs to his Publication
Silver nanoparticles produce a stronger plasmon resonance than gold nanoparticles it can be due to the large reflectivity from the metal surface. TEM images indicate that change in the size of nanoparticles with increasing the laser fluence is in good agreement with the Mie theory.

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Mr. Boxoffrogs @boxoffrogs
06 August, 10:13
In response The Mac to his Publication
The list of common ferrous metal properties include: Durable Good tensile strength Good electrical conductivity Low corrosion resistance Silver in colour Recyclable Usually magnetic Ferrous metals can include a wide range of different alloying elements, including chromium, nickel, manganese, molybdenum, and vanadium, manganese. Are we going down a climate change rabbit hole here? Silver is too expensive. They are using exactly the metals found in the rainwater samples, appearing as Aluminum, Beryllium and Strontium. It has killed several species of plants in my yard both here and in Maryland where I lived when this program began. https://youtu.be/Zbkwjno7T...
In the End - Rush - YouTube

Baltimore Skies last few months highlights. :-)


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The Mac @TheMac
06 August, 11:32
In response Mr. Boxoffrogs to his Publication
hold on..

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The Mac @TheMac
06 August, 11:47
In response The Mac to his Publication

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Only people mentioned by TheMac in this post can reply
Jennifer Brown @TILasVegasStrong
06 August, 05:54
In response The Mac to his Publication

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The Mac @TheMac
06 August, 11:50
In response The Mac to his Publication

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The Mac @TheMac
06 August, 11:50
In response The Mac to his Publication
Coal is the most abundant and readily combustible energy resource being used worldwide. However, its structural characteristic creates a perception that coal is only useful for producing energy via burning. Here we report a facile approach to synthesize tunable graphene quantum dots from various types of coal, and establish that the unique coal structure has an advantage over pure sp2-carbon allotropes for producing quantum dots.

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