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- A unit of magnetic induction equal to1, 000(103) gauss. 千高斯磁感應彈度單位,等于1,000(103)高斯
- To link(two circuits or currents) as by magnetic induction. 連接如通過(guò)電磁感應連接(兩條線(xiàn)路或電流)
- The centimeter-gram-second unit of magnetic induction, equal to one maxwell per square centimeter. 高斯電磁感應的厘米-克-秒單位,等于每平方厘米的麥克斯韋爾
- Compact, high magnetic induction intensity and long coil service life. 結構緊湊,磁感應強度高,線(xiàn)圈使用壽命長(cháng)。
- The centimeter - gram - second unit of magnetic induction, equal to one maxwell per square centimeter. 高斯電磁感應的厘米-克-秒單位,等于每平方厘米的麥克斯韋爾
- So ID card is the "magnetic induction," and it simply does not need or do not need initialization problem. 所以說(shuō)ID卡就是“感應式磁卡”,也就根本談不上需要還是不需要初始化的問(wèn)題。
- The calculating method of space magnetic induction of circular permanent magnet in the field of magnetic biologY efiect. 磁生物效應研究中圓片永磁磁源空間磁感強度的計算方法。
- The centimeter - gram - second unit of magnetic induction,equal to one maxwell per square centimeter. 高斯電磁感應的厘米-克-秒單位,等于每平方厘米的麥克斯韋爾
- Formulas, which are applied to the space magnetic induction of circular permanent magnet, are deduced from BiotSavart-Laplaces law in electromagnetics. 本文根據電磁學(xué)中的比奧-沙伐--拉普拉斯定律,推倒出了圓片永磁磁源空間磁感強度的計算公式;
- Line of magnetic induction is densest near the coil from the distributing result of the electromagnetic field. 從電磁場(chǎng)分布情況來(lái)看,電磁場(chǎng)的磁感線(xiàn)在靠近線(xiàn)圈附近的區域最密集。
- The use of infrared sensors and the magnetic induction principle has been triggered. 利用紅外感應與磁感應被觸發(fā)的原理。
- Electromagnetic induction: when a conductor of a closed electric circuit move cutting the magnetic induction lines, the conductor produces current. 電磁感應現象:閉合電路的一部分導體在磁場(chǎng)里做切隔磁感線(xiàn)運動(dòng)時(shí),導體中就產(chǎn)生電流的現象。
- The nano-meter bismuth material may probably become into the potential magnetic induction and/or thermoelectric materials. 鉍納米材料可能成為具有生產(chǎn)開(kāi)發(fā)價(jià)值的磁感應材料與熱電轉化材料。
- We elucidate the development of avian biomagnetism in relation to magnetic compass,navigating map and mechanism of magnetic induction in this paper. 本文從鳥(niǎo)類(lèi)使用的磁羅盤(pán)、航行地圖以及磁感應機制等幾方面闡述了目前在鳥(niǎo)類(lèi)生物磁學(xué)方面的研究進(jìn)展。
- Measuring discharging current with current divider, and measuring magnetic induction intensity with magnetic test coil are feasible in practice. 通過(guò)各種方法的比較分析,得出分流器法測放電電流、探測線(xiàn)圈法測感生磁場(chǎng)是切實(shí)可行的方法。
- The voltage induced in the pickup coil by this waveform is directly proportional to the rate of change of magnetic induction. 這種波形在拾波線(xiàn)圈中產(chǎn)生的電磁感應與磁感應變化率是成比例的。
- The conductor gets the force is direct ratio with the current and the length of conductor in magnetic field and the intension of magnetic induction of magnetic field. 載流導體所受電磁力與導體中的電流、導體在磁場(chǎng)中的有效長(cháng)度及導體所處磁場(chǎng)的磁感應強度成正比。
- A stable programme control exciter and weak signal pickup circuits are designed, and a 16 channels magnetic induction tomography hardware system is finally completed. 設計并實(shí)現了穩定的程控激勵源和弱信號檢測電路,完成了一個(gè)16通道的磁感應斷層成像硬件系統。
- Residual magnetic induction and the increase of self-magnetization occur in ferromagnetism structures due to the influence of working load and geomagnetic field. 在工作載荷和地磁場(chǎng)的作用下,針對鐵磁性構件存在殘余磁感應和自磁化增長(cháng)的現象,進(jìn)行了引起磁記憶特性及其與檢測時(shí)間關(guān)系的研究。
- AIM: To study the distribution of the sinusoidally time-varying electromagnetic fields in our single measurement channel of magnetic induction tomography (MIT). 目的:探討腦磁感應斷層成像(MIT)單通道測量的正弦時(shí)變電磁場(chǎng)分布。