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The vacuum and teat-cup chamber ratio are important operating parameters that affect milking performance by milking machines.
The objective of this experiment was to determine the effects of vacuum and teat-cup chamber ratio on the performance of a unique mono-block silicone milking machine liner that is round in the open position and triangular in the collapsed position.
In 13 patients with myocardial infarction, 11C-DAG was significantly correlated with the myocardium-to-left atrium chamber ratio, the left ventricle ejection fraction, and the brain natriuretic peptide concentration.
The hydrogen production volume increased with dark-to-photo chamber ratio from 1 2 to 1 4, and decreased with a ratio from 1 4 to 1 5.
The hydrogen yield increased with increasing working volume of the photo chamber, and reached 3.38 mol H2/mol glucose at the dark-to-photo chamber ratio of 1 4.
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System vacuum settings (set at receiver) were 40.6, 43.9, and 47.3 kPa, whereas teat-cup chamber ratios were 60 40, 65 35, and 70 30.
There may also be specific methodological issues in critically ill patients where assumptions about chamber ratios and the possibility of shunting and thermal sinks may reduce the accuracy of the results [ 17, 18].
Effect of the valve spool side chambers ratio of the EOPDCV on the pneumatic actuators and the EOPDCV dynamic performances was introduced.
The final-to-initial chamber concentration ratio was used to determine the global chamber removal efficiency for each pollutant.
Myocardial fibre elongation increases the ventricular radius, causing eccentric ventricular hypertrophy, with decreased wall thickness to chamber diameter ratio and increased ventricular sphericity.
Moreover, derived parameters, such as myocardial wall thickness, wall thickness to chamber radius ratio and regional functional parameters (e.g. systolic wall thickening and wall motion), can be reliably assessed.
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CEO of Professional Science Editing for Scientists @ prosciediting.com