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Further, electrochemical measurement of one sample required only ~30 min.
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To demonstrate our method, we simulate one-dimensional elastodynamic shock propagation using the Heterogeneous Multiscale Method (HMM); we find that spatial adaptive sampling requires only ≈50×N0.14 fine-scale simulations to reconstruct the stress field at all N grid points.
Another strength of X-ray spectromicroscopy is that samples require only minimal preparation.
We have developed a technology based upon arrays of silicon photonic microring resonator sensors that fills this void, facilitating the rapid and automated analysis of multiple phosphoprotein levels from both cell lines and primary human tumor samples requiring only minimal sample preparation.
It is capable of detecting compounds in the gas phase in the low parts per billion to low parts per million concentration range (around 0.02 to 20 mg/m) [ 12], whilst the response rate of the instrument makes it suitable for rapid headspace profiling of samples, requiring only 20 seconds for the analysis of each sample.
The sample preparation protocol was time efficient (~5 min per sample) and required only 10 mg of sample powder.
When used to detect Pb in blood, urine, and saliva, the analyzer has many advantages: it was very reliable, easy to use with automation, had high throughput (3 min per sample), and required only simple pretreatment of the samples that did not involve acid digestion and large sample dilution.
Samples that required only one attempt at FNB had a sensitivity increase by >10% compared to samples with more than one attempt (z = 4.8, P < 0.001).
Specifically, compared with 20 000 iterations of MCMC sampling, emBayesR required only 300 to 1000 iterations with the 630 K real dairy data (Table 9).
The device demonstrated a pseudo-linear response of concentration vs. time from 0.005 to 0.1 mmol/L with a slope of 67.48 μA/mmol L. It also showed high ion selectivity with detectable interfering species less than 1%, a high temporal resolution, and a reduced sampling time (as it required only 3μLL of fluid sample to complete a measurement).
The analytical cycle including sampling, separation and cooling required only 15 min.
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