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The milling beaker material affects the temperature of the milling beakers as well.
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That, of course, interests the dean (Mr. Miller and Buddyy, now out on his own, who is determined to steal a beaker of the material from a fridge at Papa Klump's.
The impacts of the beaker size, grinding stock material and grinding tool material were at the same level with approximately 23 K.
The temperature/time profiles were reproducible for the same experimental conditions used in the synthesis, including the type of combustion beaker used (geometry and material) and the final mass of the produced samples.
Table 1 Maximal measured temperature difference obtained by variation of one parameter Condition ΔT max−min (K) ν osc 55.1 Changed Φ GS 37.3 Changed Φ MB 31.2 Beaker size 23.9 Grinding stock material (Φ GS = const).
To investigate the effect of synthesis process on the nanostructure formation, the MgBO2(OH) samples were also produced by heating the starting materials in open beaker at 150 °C for 6 h in air.
The test material was placed in a beaker with an amount enough to immerse the spindle to be in the centre of the glass beaker.
Different weights of the adsorbent materials were added in each beaker and shacked well.
The influence of the operating frequency, the milling ball and grinding stock filling degree, the material of the milling balls and beakers, the milling ball diameter and the size of the milling beakers on the temperature increase inside the milling beakers in a mixer ball mill was investigated.
Two grams of starting material (CoCl2·3H2O) was taken in a beaker and mixed with Na2CO3 as a molar ratio 1 1.
Each beaker was loaded with approximately 500 grams of material including corn stover, 50% (w/w) sodium hydroxide solution, and deionized water.
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