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In addition, as the electron dose increases the patterned area also expanded in lateral direction.
The high dose increases the surface roughness for F-implantation, and in contrast, HF-implantation retains the surface smoothness.
Lowering the dose increases the noise in the image, while increasing the dose increases the possibility of harming the patient (e.g. by inducing cancer).
Generally, increasing the adsorbent's dose increases the percentage removal of adsorbate which is attributed to the increase in surface area and hence more active sites are available.
For example, Rau et al. [31], in the synthesis of silver nanoparticles by gamma radiation in the presence of gum acacia, have found that as the irradiation dose increases the corresponding optical absorption intensity increases with concomitant blue shifts.
Based on these results, we hypothesize that a non-curative amount of 177Lu-octreotate as a priming dose increases the tumor uptake of subsequently administered 177Lu-octreotate in NE tumors, leading to an increased tumor-absorbed dose and anti-tumor effect.
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As the dose increased, the collagen adhesive strength also increased.
As the MSGW dose increased, the biomass yield decreased, decreasing the N-use efficiency.
The potentiodynamic tests showed that with the bombardment dose increasing, the passive current density, closely related to the surface corrosion resistance, decreased firstly and increased subsequently.
Increase in biomass dose increased the percentage removal of carbaryl.
Either glucocorticoid dose increased the total adenylate cyclase catalytic activity (assessed with forskolin).
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