sensing n. 1.感覺(jué)。 2.【無(wú)線電】測(cè)向;偏航顯示;【計(jì)算機(jī)】讀出。 remote sensing 遙感。 sensing elements 靈敏部件。 sensing units 傳感器。
material adj. 1.物質(zhì)的(opp. spiritual)。 2.身體上的,肉體上的;物欲的,追求實(shí)利的;卑俗的。 3.有形的,實(shí)體的;物質(zhì)性的。 4.重要的,實(shí)質(zhì)性的,必需的。 5. 【邏、哲】實(shí)質(zhì)上的,實(shí)體上的,內(nèi)容上的 (opp. formal);【法律】本質(zhì)的。 the material universe 物質(zhì)世界。 material civilization 物質(zhì)文明。 material comforts 使物質(zhì)生活舒適的東西〔食品、衣服等〕。 material pleasure 肉體的快樂(lè)。 material point 【理】質(zhì)點(diǎn)。 a material being 有形物。 material property 有形財(cái)產(chǎn)。 a very material difference 重大的差別。 a point material to one's argument 論證要點(diǎn)。 material element 要素。 be material to 對(duì)于…重要。 in material form 用具體的形式。 n. 材料,原料;(軍用)物資;織物,料子;資料;題材;素材;〔pl.〕必需品,用具;設(shè)備;品質(zhì);人材,人物。 building material(s) 建筑材料。 raw material(s) 原(材)料。 condemned material(s) 報(bào)廢器材。 material for a novel 小說(shuō)素材。 writing materials 筆墨紙類,文具。
A review of preparation of nano-sized-fe2o3 gas-sensing material 3氣敏材料制備方法綜述
The synthesis and characterization of nanosized wo3 gas-sensing material 3氣敏材料的制備與表征
According to the existed researches, fbg has stable sensing properties, and thus is an ideal kind of temperature sensing material 但是必須對(duì)bragg光柵進(jìn)行有效的封裝,才能使其成為能滿足工程實(shí)際要求的傳感器。
But among the four factors have been displayed, the film thickness of sensing material has a decisive effect on feature of elements and a relatively optimal thickness is discussed whose range is 200-400a 但是,在以上談到的四個(gè)因素中,敏感材料的厚度對(duì)元件的特性起著決定性的作用,有一個(gè)相對(duì)理想的厚度范圍200-400(?)。
2 as something which we add to the given, as intellectual functions which, though unchangeable themselves, would have constructed a nature with a different content had they had different sense materials to work upon 是我們?cè)黾右恍〇|西到被給定的東西上,就像心智功能(雖然無(wú)法改變他們)用不同的內(nèi)容將自然加以建構(gòu)出來(lái),而這內(nèi)容是不同的感官材料。
For this reason, the sensing materials for automobile exhaust gas are widely studied and exploited . in this paper, rare-earth perovskite-like complex oxide la _ 2nio _ 4 has been studies as a newly gas-sensing material used for automotive oxygen sensor 本文從la_2nio_4系稀土復(fù)合氧化物薄膜的制備方法、氣敏性、摻雜改性三方面對(duì)這種新型的氧敏材料進(jìn)行了系統(tǒng)的研究。
For this reason, the sensing materials for automobile exhaust gas are widely studied and exploited . in this paper, rare-earth perovskite-like complex oxide la _ 2nio _ 4 has been studies as a newly gas-sensing material used for automotive oxygen sensor 本文從la_2nio_4系稀土復(fù)合氧化物薄膜的制備方法、氣敏性、摻雜改性三方面對(duì)這種新型的氧敏材料進(jìn)行了系統(tǒng)的研究。
Thin film resistive-type polymer humidity sensors have been prepared on small interdigital gold electrodes, using sodium polystyrenesulfonate ( n pss ) and sodium salt of hydrated poly ( styrene-alt-maleic anhydride ) ( na-sma ) as sensing materials 本文以聚苯乙烯磺酸鈉(napss)、苯乙烯?馬來(lái)酸酐共聚物鈉鹽(na-sma)等為濕敏材料,在小型叉指金電極上成膜,制備了高分子電阻型薄膜濕敏元件。
Ferric oxides have been used as the third series of gas-sensing materials following sno2 and zno, especially a-fe _ 2o _ 3 nanomaterials with high chemical stability and unnecessarily doping the noble metal have attracted much attention 氧化鐵系材料成為繼氧化錫、氧化鋅之后的第三大系氣敏材料。尤其是具有較高穩(wěn)定性、選擇性,且不用摻雜貴金屬作催化劑的?fe_2o_3基氣敏納米材料,引起了人們的廣泛興趣。
The effect of sensing materials on humidity response of sensors has been investigated . humidity sensor based on na-sam exhibits fast response and small hysteresis, and sensors with high sensitivity, small hysteresis and wide sensing range can be prepared using composite of na-sma and napss 研究了濕敏材料對(duì)元件響應(yīng)特性的影響,發(fā)現(xiàn)na-sma具有響應(yīng)快,濕滯小的特點(diǎn),其與napss以一定比例復(fù)合,可制得靈敏度高、濕滯小、感濕范圍寬的濕敏元件。