医学物理学实验报告5%的葡萄糖溶液

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11G 王旁青头戋五一

11G 王旁青头戋五一

11G 王旁青头戋五一解释:G键位上有字根:王, ,戋,五,一,共5个字根。

12F 土士二干十寸雨解释:F键位上有字根:土,士,二,干,十,寸,雨,共8个字根。

补充口诀:不要忘了革字底,在F键位上,其实还有一个字根,即“革”字的下面部份那个字根。

13D 大犬三(羊)古石厂解释:在D键位上有字根:大,犬,三,“羊底字根” 古,石,厂共7个字根。

补充口诀:套上套下,龙头左右百(摆)补充口诀说明:D键位上包括了“套”字的上下两部分字根:即:大,镸;还包括:龙的左上部分字根,左右两个字的左上部分字根,即“ ”字根;还包括“百”字的上面部分字根,即“丆”字根。

14S 木丁西解释:S键位上字根只有三个,即:木,丁,西15A 工戈草头右框七(“右框”即“匚”)解释:A键位上的字根有:工,戈,艹,匚,七,共5个字根,此外,草头字根还包括:廿, ;“七”字根还包括多个变种,如“东”字上面部分,即去掉小的部分,也是“七”字根,还有“切”字左边部分字根。

21H 目具上止卜虎皮(“具”指具字的上部)解释:H键位上的字根有:目,“具字上面部分字根”,上,止,卜,“虎字上面部分字根”,“皮字上面部分字根”补充:事实上,H键位上还包括“丨”这个字根。

22J 日早两竖与虫依解释:J键位上的字根有:日,早,刂,虫共4个字根,其中两坚有多个变种:如:竖的上面左边部分字根,师字的左边部分字根,利字的右边部分字根。

23K 口与川,字根稀解释:K键位上的字根只有:口,川2个字根,字根稀,就只是说明这个键位的字根太少的意思。

24L 田甲方框四车力(“方框”即“囗”)解释:这句口诀说明L键位上的字根有:田,甲,囗,四,车,力6个字根,但个键位还有其它字根没有包括在这句口诀中。

补充口诀:黑头皿说明:L键位上,还有字根,黑头字根,曾头去两点字根,“皿”字根,罒字根25M 山由贝,下框几(下框即冂)解释:这句口诀说明M键位上的字根有:山,由,贝,冂,4个字根。

fb离心泵

fb离心泵

fb离心泵需用泵来供水先等。

在电力部门,核电站需要核主泵、二级泵、三级泵、热电厂需要大量的锅炉给水泵、冷凝水泵、循环水泵和灰渣泵等。

在国防建设中,飞机襟翼、尾舵和起落架的调节、军舰和坦克炮塔的转动◆一用一备,运行可靠专有技术体现内置自动换向运行装置的独特构思,当一台发生故障,另一台自动投入运行,保证供水不中断◆成熟可靠的核心部件和优化设计, 节能效果好内置自动换向装置精心设计制作,强化其组装质量和形位公差控制、实现其灵活、密封、可靠、耐用度高;波纹管机械密封和强制环流冷却循环系统比一般离心泵的普通机封寿命长2倍以上;机泵同轴震动小;对流道结构作了优化设计,保证高效运行。

配用Y2系列电机,效率提高2-4%、F级绝缘、电机耐热145℃以上,特殊结构的叶轮,优化的水力模型使液体流动更加顺畅,采用树脂砂造型铸件,铸件内部过流部件其表面粒度均匀、平滑光洁,水力损失小,保证其最佳性能。

◆简化系统环节,提高可靠性出水管道连接、阀类、附件、配件等对于采用备用泵设计而言,数量减少,系统环节简化,可靠性提高,维护简便。

Y2电机超载能力强、即使在145℃仍可在额定功率下可靠运行。

◆降低机组噪声,有利于环保双联泵将原单体水泵配套电机的功率数一分为二,降低了起动电流和起动噪声,降低单电机的功率数也就降低电机的噪音分贝,从而有效的降低了水泵机组的噪声。

◆降低安装费用50%,简化安装工序泵体的安装与输水管路的连接仅需一套管、阀、附件、泵基座,极大地简化了安装,与普通管道泵相比,既节省安装费用又缩短了工期,使投资大幅度减少◆节省机组占地面积双联泵的独特设计思想,大大节省泵房和管路的占地面积50%以上,由于减少基建投资、节省占地面积、便于系统整体管理。

◆运行费用,降低50% ~70% 用水呈高峰、低估连续或阶梯形变化的应用工况(如供暖和冷却系统),在用水低谷时,双联泵为单泵运行模式,在用水高峰时,双联泵可双泵运行,从而实现了工作的高效节能。

【免费下载】11G 王旁青头兼五一

【免费下载】11G 王旁青头兼五一
11G 王旁青头兼五一, 12F 土十二干士寸雨, 13D 大犬三羊古石厂, 14S 木丁西, 15A 工戈草头右框七。 21H 目具上止拔虎皮, 22J 日早两竖与虫依, 23K 口中两川字根稀, 24L 田甲方框四车力, 25M 山由贝骨下框几。 31T 禾竹一撇双人立, 反文条头共 31 32R 白手看头三二斤, 33E 月衫乃用家衣底, 豹头豹尾与舟底 34W 人和八三四里, 祭头登头在其底 35Q 金勾缺点无尾鱼。 41Y 言文方广在 41 高头一瞥谁人去, 42U 立辛两点六门病, 43I 水旁兴头小倒立, 44O 火业头四点米, 45P 之字宝盖建到底,摘示衣。 51N 已半巳满不出己,左框折尸心和羽。 52B 子耳了也框向上,两折也在 五耳里 53V 女刀九臼山向西, 54C 又巴马, 经有上,勇字头,丢失矣。 55X 慈母无心弓和匕,幼无力。
31 T 禾竹一撇双人立 反文条头共三一 (禾竹丿彳夂攵) 32 R 白手看头三二斤 (白手扌斤) 33 E 月彡乃用家衣底 (月彡乃爫豖豕用) 34 W 人和八 三四里 (人亻癶八) 35 Q 金勺缺点无尾鱼 犬旁留乂儿一点夕 氏无七 (金釒钅勹儿乄乂犬)
捺区(4 区): 41 Y 言文方广在四一 高头一捺谁人去 (言讠讠文方广彳亠丶乀) 42 U 立辛两点六门病 (立辛冫丬丷六门疒) 43 I 水旁兴头小倒立 (水氵小) 44 O 火业头 四点米 (火米灬) 45 P 之宝盖 摘示衣 (之宀冖礻衤辶廴)
折区(5 区):
51 N 已半巳满不出己 左框折尸心和羽 (已巳己乛乙乚尸忄心羽)
52 B 子耳了也框向上 (子孑卩耳了也凵巜阝) 53 V 女刀九臼山朝西 (女九臼巛彐) 54 C 又巴马 丢矢矣 (又巴马厶) < --------11 王旁青头戋(兼)五一,(“兼”与“戋”同音) F--------12 土士二干十寸雨,一二还有革字底 D--------13 大犬三羊古石厂,羊有直斜套去大 (“羊”指羊字底“”) S--------14 木丁西, A--------15 工戈草头右框七。 (“右框”即“匚”) H--------21 目具上止卜虎皮, J--------22 日早两竖与虫依。 K--------23 口与川,字根稀, L--------24 田甲方框四车力。 (“方框”即“囗”) M--------25 山由贝,下框几。 T--------31 禾竹一撇双人立, (“双人立”即“彳”) 反文条头共三一。 (“条头”即 “夂”) R--------32 白手看头三二斤, E--------33 月彡(衫)乃用家衣底,爱头豹头和豹脚,舟下象身三三里 W--------34 人和八登祭取字头 Q--------35 金勺缺点无尾鱼, (指“勹) 犬旁留叉多点少点三个夕,氏无七(妻)。

五笔98版

五笔98版
劳囡漶
蒙囡邃
蔻囡邂
茔囡邋
莞囡屦
莹囡骧
苎囡驽
萱囡骀
荥囡梏
萤囡轸
营囡觋
荤囡腴
菅囡礤
茕囡礤
荧囡铘
莺囡疰
菀囡疳
蓥囡疱
荣囡螋
荦囡箧
蓉囡鲫
蓿囡鲩
萦囡麒
匹囵
芪囵噌
苑囵後
泰泠梏
春泠殄
蠢泠殚
矶泠
戡泠磬
甚泠磲
勘泠礓
斟泠礤
欺泠瘀
斯泠耒
砜泠聒
秦泠篝
雁泠鲽
赝泠鲮
綦泠麒
矾泠
碓泠
礁泠
龙泖
砩泖殓
砒泖黜
聋泖
砻泖
袭泖
垄泖
龚泖
太泺
礅泺狍
硫泺怅
丈泺
态泺眙
碥泺磬
磅泺豇
碲泺翮
碎泺鲥
有沅
肛溧
腻溧屮
胨溧桫
磺汔祧
碟汔眚
礞汔镤
奁汔耵
砹汔聒
硗汔箴
砌汔躞
礤汔鲨
硭汔
破汜
顾汜沆
耷汜
础汜扃
厄汜
友汊
磉汊怛
碜汊沅
码汊骀
雄汊鲽
大沣沣
磊沣沐
靥沣沐
飙沣泷
碱沣骊
砺沣骛
厦沣珞
厌沣
厣沣腙
硕沣禅
厉沔痄
魇沣疋
套沣
厮沣鲴
餍沣鲺
历沅
郁沅徵

《五笔难拆字表》

《五笔难拆字表》

十画
艳:DHQC 袁:FKEU 哥:SKSK 鬲:GKMH
高:YMKF 离:YBMC 弱:XUXU 哿:LKSK
孬:GIVB 乘:TUXV 鬯:QOBX 玺:QIGY
能:CEXX
十一画
焉:GHGO 黄:AMWU 乾:FJTN 啬:GULK
象:QJEU 够:QKQQ 馗:VUTH 孰:YBVY
尽:NYUU 丞:BIGF 买:NUDU
七画
甫:GEHY 更:GJQI 两:GMWW
邑:KCB 我:TRNT 囱:TLQI 希:QDMH
兑:UKQB 弟:UXHT 君:VTKD 束:GKII
戒:AAK 严:GODR 巫:AWWI 求:FIYI
丽:GMYY 来:GOI 芈:GJGH 串:KKHK
甲:LHNH 由:MHNG 史:KQI 央:MDI
失:RWI 乍:THFD 丘:RGD 斥:RYI
甩:ENV 氐:QAYI 乐:QII 匆:QRYI
头:UDI 必:NTE 司:NGKD 民:NAV
正:GHD 甘:AFD 世:ANV 本:SGD
山:MMMM
户:YNE 一点一尸
快:NNW一心一左框一人
出:BM 一上框一山
来:GO 一横一米
尽:NYU一尸一捺一两点
速:GKIP 一横一口一小一走字底
度:YA 一广一草(AJJ)一又(CCCC)
才:FT 一十一撇(RUMT)
你:WQ 一人一夕一小(IHT)
年:RH
“降”-btah “浇”-iatq “嚼”-kelf “睫”-hgvh
“戒”-aak “巾”-mhk “斤”-rtth “谨”-yakg

FS5 Spectrofluorometer brochure

FS5 Spectrofluorometer brochure

FS5 Fluorescence Spectrometerfrom Single Photons to a Multitude of MeasurementsEnvironmental ScienceManufacturingFood Science and Agriculture• Unique Software, tailored for Fluorescence Spectroscopy• Unique Range in Upgrade Routes, includingº NIR – Extension of Spectral Coverage up to 1650nm º POL – For Measurements of Polarisation and Anisotropy º MCS – Lifetime Measurements in Microsecond to Second Range º TCSPC – Lifetime Measurements in Picosecond to Microsecond Range• Unmatched Range of Measurement ModulesFS5FS5 – Outstanding Instrument SensitivityThe FS5 is designed to meet the highest specifications in the research and analytical markets. From an air-sealed excitation path to enhance the signal in the UV , to performance selected photomultipliers in temperature stabilised housings, from an optical design that includes plane, spherical, toroidal, and ellipsoidal mirrors to fully optimised mirror coatings, the instrument is unique in its spectral performance and sensitivity.Furthermore, the optical design does not only guarantee highest sensitivity and unique wavelength coverage, it has also been optimised for a small bright focus at the sample position. This is important for measuring small sample volumes and benefits many sample holder attachments like plate reader, fibre launch optics, titrators and sample positioners.FS5 – Unique Optical DesignThe FS5 has an optical design that is superior to all known instruments of this class and it uses optical components that are specially selected.The embedded monochromators are of a large focal length (225mm), which ensures better imaging quality and higher optical throughput. The instrument uses a minimum of optical reflections; all optical coatings are ofhighest reflectivity and lowest scatter. We use gratings from the source with the best reputation (Richardson Gratings) and have selected those with highest efficiency and best wavelength coverage.This figure shows typical pulses from a single photon counting photomultiplier.Only photon pulses above a certain threshold value are counted; this eliminates unstable background and associated noise. The amplitude of each accepted pulse is not relevant, a feature of digital data processing.FS5 – Photon CountingSingle Photon Counting is detection at the quantum limit. This detection method is intrinsically digital and therefore less susceptible to noise interference than other methods. As a true counting technique each measured count-value comes with a known statistical accuracy. Therefore the technique is not only the most sensitive, it also offers unique ways in the analysis of your data.Single Photon Counting is employed for all measurement modes, not only for standard spectral scanning and kinetic measurements but also for the optional fluorescence and phosphorescence lifetime measurements.Efficiency curves of the excitation and emission gratings of the FS5.The Raman spectrum of water, exited at 350nm, with a spectral band width of 5nm in excitation and emission, measured with an integration time of 1s, is generally used as a means to specify sensitivity.The FS5 guarantees a signal-to-noise ratio of 4000:1 for these measurement conditions, calculated from the signals taken at the peak at 397nm (b) and the background at 450nm (a) using SNR SQRT = (b-a)/SQRT(a). We can also provide alternative figures which are based on alternative estimates for the noise at 450nm.FS5 – Unique SoftwareThe operating software for the Spectrofluorometer FS5 is Fluoracle, a unique software package specifically written to handle data and instrumentation in fluorescence spectroscopy.Fluoracle is the successor of the proven F980 software. The new Fluoracle controls all Edinburgh Instruments steady state and time resolved spectrometers.The design concept of Fluoracle is straight forward: Focus on all modernphotoluminescence spectroscopy applications, while at the same time provide a user friendly interface with ‘ready to publish’ outputs.Whether you select a basic spectral scanning version of the FS5 or you go for an advanced version that includes TCSPC lifetime measurements, the software will include all instrument options, including data acquisition, analysis and presentation.FS5 – Reliability and AccuracyThorough calibration procedures are used for spectral calibration (wavelength accuracy and repeatability) and photometric calibration (presentation of true spectra without distortion of instrumental throughput functions).We use traceable standards for calibration throughout the full wavelength coverage. We will verify calibration, in photons per unit bandwidth, by NIST and BAM standards. The FS5 delivers data you can trust.NIST standards (top) and BAM standards (bottom), as measured with the FS5 under recommended measurement conditions.Load / Save Measurement Settings ✓Batch Measurements ✓Detailed Measurement Properties ✓Higher Order Removal ✓ASCII Input / Output ✓Recognition of Sample Holders / Accessories ✓Chromaticity Analysis ✓Quantum Yield Analysis ✓Reflection / Absorption✓Synchronous Scans - with concentration dependenceIn synchronous spectral scans the excitation and emission monochromators scan at the same time with a fixed wavelength offset. For dilute mixtures this type of scan is used to identify species with a strong overlap between absorption and emission.Synchronous scans, together with the integrating sphere attachment, can also be used to measure the absorption spectra of strongly scattering powders.YAG: Ce powder, diluted with BaSO 4 to study the effect of re-absorption/emission, concentration change from 100% down to 20%. The software wizard is used to calculatethe Absorbance (top left) from the raw data of synchronous scans (bottom right).Absorption Scans / Kinetic ScansThe FS5 can record the time course of a fluorescence signal, and – at the same time – record the signal transmitted through the sample. This enables experiments to be performed with chemically or biologically unstable samples, or with samples where very small changes are to be measured very accurately.The transmission detector is standard in the FS5.Caspase Assay, fluorescence time course recorded for a 100% enzyme addition (blue) and a 0% enzyme control (red). Peptide cleavage is recorded by an organic dye excited at 400nm, emitting at 460nm.Excitation Scans - with pH dependenceFluorescence excitation spectra are more selective than absorption spectra, as they reveal – by virtue of the selected emission wavelength – the absorption of a particular emitting species.Accurate excitation spectra require a sensitive instrument, as the concentration of the sample must be kept low to avoid inner filter effects, and require reliable spectral correction, as the xenon lamp has narrow features at certain wavelengths.Fluorescein in water , with pH adjusted between pH2 and pH7Spectral Band width: 1.5nm, dwell time: 0.1spH adjusted between pH2 (blue shifted spectrum) and pH7 (spectrum of maximum intensity)Measurements of absolute fluorescence quantum yieldFluorescence quantum yields can be measured by using the optional integrating sphere. The absolute method requires two measurements of the number of absorbed photons and the number of the emitted photons. The number of absorbed photons of a sample is determined by the reduction of the light scatter compared to a blank measurement.The quantum yield calculation is made using a wizard within the operating software.Plate ReaderMultiple sample measurements can be made using the plate reader sample holder accessory. This can be used for liquid samples with commercial plates of up to 96 wells, but is also suitable for routine quality assessment of fluorescent powders. As with all the sample holder accessories this is also compatible with the FS5 upgrade options, including the lifetime upgrades.Excitation-Emission MapsExcitation-Emission Maps (EEMs) provide a ‘Finger Print’ of complex mixtures of substances. These maps can be measured either by a series of emission scans with stepwise increase, or decrease of the excitation wavelength or by a series of synchronous scans and stepwise increase of the excitation-emission offset.A map measurement over a wide range of excitation and emission wavelengths, as shown here, can only be performed properly if higher order scatter is automatically removed during the measurement.Chinese Green Tea (Wuyi region).Spectral Band width: 5nm, step size: 2nm, dwell time: 0.1sfor the determination of colour co-ordinates and luminocity values using CIE 1931 and CIE Quinine bisulphate in Perchloric acid.The red curve shows the scan over the excitation scatter at 350nm and the emission of the sample, the blue curve shows the scatter of the blank measurement. The scatter region has been scaled by a factor 100 for better demonstration.Quality control measurement of Y 2O 3 Eu 3+ powder samples, in a 12 well powder tray. The graph shows 12 superimposed identical measurements. The inset is an example of the measurement progress display.FS5 – NIR Extension of the Spectral Coverageinto the Near InfraredThis is a unique upgrade route that is only available to the FS5. The FS5-NIR has a SECOND detector fitted to expand the operating spectral range without sacrificing the performance of the standard instrument.There are two NIR versions available: FS5-NIR is fitted with an extra cooled side window PMT and selected grating for sensitivity up to 1100nm; FS5-NIR+ is fitted with a TE cooled NIR-PMT and NIR-grating for sensitivity up to 1650nm.Both options are based on single photon counting for maximum sensitivity and compatibility with any of the lifetime options, should they be added.FS5 – POL Measurements of FluorescencePolarisation and AnisotropyThis upgrade comprises the standard FS5 with fully computerised polarisers in both excitation and emission arms. The polarisers enable polarised fluorescence and fluorescence anisotropy studies.Automated measurements and generation of anisotropy curves, both raw and G-factor corrected, are supported by the software. If combined with the TCSPC option, time resolved fluorescence anisotropy measurements and analysis will also be possible.FS5-POL uses a BBO polarising prisms with an operational range of 250nm-900nm for both excitation and emission. This version is therefore compatible with the standard detector of the FS5. An option is available to replace the polarising prism of the emission beam path by a Calcite prism with an operational range 300nm to >1650nm. This ensures compatibility with the N IR options FS5-NIR and FS5-NIR+.All the standard features of the FS5 are retained when an Upgrade Option has been added. Many of the options can be combined.This offers outstanding flexibility for an instrument of this class.Fluorescence Anisotropy measurement of Rhodamin 6G in glycerol at room tem-perature.Raw data for vertical (red) and horizontal (green) emis-sion polarisa-tion plane.Steady state anisotropy of excitation (blue) and emission (magenta)Measurement of the emission spectrum from an infrared laser dye with standard FS5 photomultiplier (blue) and with the FS5-NIR (brown)The emission spectrum of Nd:YAG, meas-ured with the FS5-NIR+The instrument has all the features of the standard FS5, plus the capability of long lifetime (>10m s) measurements for the time resolved measurement of strong phosphors and rare earth emissions.The changeover between the standard continuous light source and the pulsed xenon flash lamp is software controlled and the acquisition mode automatically changes from standard photon counting to time resolved photon counting. The software incorporates fitting and reconvolution analysis for lifetime evaluation.For longer working sessions in lifetime mode, the continuous lamp can be switched off via the spectrometer software as it is not required. This saves energy and increases the lifespan of this lamp.The instrumental response width of this instrument is 2m s. Lifetimes from below 10m s to above 10s can be accurately measured.FS5 – TCSPC Measurement ofLifetimes in Picosecond to Microsecond RangeThe instrument has all the features of the standard FS5, plus the capability of fluorescence lifetime measurements in the picosecond, nanosecond and the lower microsecond (<10m s) time range. The FS5-TCSPC version requires picosecond pulsed diode lasers and LEDs for excitation, which are simply attached to the special FS5-TCSPC housing and are compatible to all sample holder options.There is no stand-alone laser driver or data acquisition module! The software is fully compatible with all measurement options and offers numerical reconvolution and curve fitting.Note that the picosecond diode lasers (EPL series) and the picosecond pulsed LEDs (EPLED series) come with different output wavelengths. More than one of these picosecond pulsed light sources may be required to cover your range of applications.TCSPC lifetime measurements with the standard FS5 detector will have an instrumental response width of ~800ps (FS5-TCSPC ). The exact value depends on which EPL or EPLED model is used. For challenging applications the instrumental response width can be improved by fitting a SECOND, faster detector (FS5-TCSPC+). Using an EPL as an excitation source in this configuration will result in an instrumental response width of ~250ps.MCS measurements in the microsecond andmillisecond time scale on an example immune-assay.In this assay, the FRET rate of the donor-acceptor pair (Europium cryptate-APC) used to label the antibodies depends on the concentration of the antigen. Very low antigen concentrations can be measured due to the discrimination by lifetimes.Measurement example for theFS5-TCSPC upgrade, using an EPLED 280 and the standard detector. (Sample: Norharmane in ethanol, atdifferent emission wavelengths.)Measurement example for the FS5-TCSPC+upgrade, with EPL 405 and faster detector. (Sample: Hematoporphyrine in PBS, at different emission wavelength.)The FS5-TCSPC, with EPL / EPLED sources.Measurement ModulesSC-80 Cryostat CassetteSC-60 Calibration KitSC-25 TE Cooled Sample HolderSC-05 Standard Cuvette HolderSC-20 Cuvette Holder with Temp Sensor for Coolant CirculationSC-10 FF Holder for Cuvettes, Powders and FilmsSC-15 FF Holder (Vertical) for Powders and FilmsMeasurement modules are available for practically all applications.These accessories can be purchased at any time and can be easily installed by the user. The installation takes no which of the measurement modules is in use. This reduces complexity in the user interface and ensures SC-50 Remote Fibre InterfaceSC-40 Plate ReaderSC-30 Integrating SphereSC-70 Liquid Nitrogen DewarWavelength Accuracy – Excitation/Emission:FS5 Fluorescence SpectrometerFor more information contact:Edinburgh Instruments Ltd。

汉语拼音表(带声调)

汉语拼音表(带声调)

a1 吖阿啊锕a2 嗄ai1 哎哀唉埃溾锿鎄銰ai2 挨啀捱皑凒溰嘊皚癌ai3 毐昹矮蔼躷藹譪霭靄ai4 嗳噯艾伌爱砹硋隘塧嫒愛碍暧瑷僾壒嬡懓薆曖璦鴱皧瞹馤鑀an1 安峖桉氨庵谙萻腤鹌蓭誝鞌鞍盦馣盫韽an2 啽雸an3 侒垵俺唵埯铵隌揞罯銨an4 闇鮟晻犴岸按荌案胺豻堓暗貋儑錌黯ang1 肮骯ang2 岇昂昻枊ang4 盎醠ao1 凹爊ao2 敖厫隞嗷嗸廒滶獒獓遨熬璈蔜翱聱螯翶翺鳌鏖鰲鼇ao3 芺袄媪镺襖ao4 坳垇柪軪嶅謷鷔抝岙扷岰傲奡奥嫯慠骜奧嶴澳懊擙謸鏊ba1 八仈巴叭扒朳玐夿岜芭疤哵捌笆粑紦羓蚆釟豝釛丷ba2 叐犮抜坺拔茇炦癹胈菝跋軷魃ba3 把靶ba4 鲃坝弝爸罢鲅覇矲霸壩灞欛ba0 吧bai1 挀掰bai2 白bai3 百佰柏栢捭竡粨摆擺bai4 拝败拜敗稗粺薭贁ban1 扳攽班般颁斑搬斒瘢癍辬ban3 阪坂岅昄板版瓪钣粄舨鈑蝂魬闆ban4 办半伴姅怑拌绊秚絆鉡靽辦瓣ban0 扮bang1 邦垹帮捠梆浜邫幇幚幫鞤bang3 绑綁榜bang4 縍玤蚌傍棒谤塝稖蜯磅镑艕謗bao1 勹包佨孢苞胞笣煲龅蕔褒闁齙剥裦bao2 窇雹薄bao3 宝饱保鸨珤堡堢媬葆寚飹飽褓駂鳵緥鴇賲藵寳寶靌宀bao4 怉勽报抱豹菢鲍靤骲暴髱虣鮑儤曓爆忁鑤蚫瀑bei1 襬卑杯盃桮悲揹碑鹎藣鵯柸bei3 北鉳bei4 垻贝狈貝邶备昁牬苝背钡俻倍悖狽被偝偹梖珼鄁備僃惫焙琲軰辈愂碚禙蓓蛽犕誖骳輩鋇憊糒鞴鐾孛bei0 呗唄褙ben1 奔贲犇锛錛ben3 本苯奙畚楍翉ben4 泍倴渀逩坌捹桳笨撪輽beng1 伻崩绷閍嵭嘣傰beng2 甭beng3 埲菶琫鞛beng4 綳繃泵迸塴甏镚蹦鏰揼bi1 屄毴逼鲾鵖鰏楅榌bi2 荸鼻bi3 匕比夶朼佊吡妣沘疕彼柀秕俾笔舭筆鄙聛貏bi4 鞁賁粊币必毕闭佖坒庇诐妼怭畀畁哔毖珌疪荜陛毙狴畢袐铋婢庳敝梐萆萞閇閉堛弻弼愊愎湢皕禆筚詖貱赑嗶彃滗滭煏痹腷蓖蓽蜌裨跸閟飶幣弊熚獙碧箅綼蔽鄪馝幤潷獘罼襅駜髲壁嬖廦篦篳縪薜觱避鮅斃濞臂蹕髀奰璧鄨饆繴襞襣鏎韠躃躄魓贔鐴驆鷝鷩鼊鸊bian1 边砭笾编煸箯蝙獱邉鍽鳊鞭鯾鯿籩辺bian3 豍萹編贬扁窆匾惼碥稨褊糄鴘藊bian4 邲卞弁忭抃汳汴苄釆便变変昪覍徧揙遍閞辡艑辧辨辩辫辮變玣bian0 邊biao1 彪标飑髟猋墂幖滮骠熛膘瘭镖飙飚儦颷瀌爂臕贆鏢镳飆飇飈飊鑣磦biao2 嫑biao3 表婊裱諘褾錶檦biao4 脿標俵摽鳔鰾bie1 憋鳖鱉鼈虌龞bie2 柲苾别咇莂蛂徶襒蟞蹩bie3 瘪癟bie4 別bie0 彆bin1 邠宾彬傧斌椕滨缤槟瑸賓賔镔濒濱濵虨豳瀕霦繽鑌顮bin4 儐摈殡膑髩擯鬂殯臏髌鬓髕鬢bing1 絣仌氷冰兵栟掤梹檳仒bing3 鞞鞸丙邴陃怲抦秉苪昞昺柄炳窉蛃棅禀鈵餠bing4 并並併幷庰倂栤病竝偋傡寎摒誁鮩靐疒bing0 饼餅bo1 妭鮁趵癶拨波玻盋砵钵紴缽菠鉢僠嶓播蹳驋鱍溊bo2 詙萡袯脖仢伯驳帛泊狛瓝侼勃柭胉郣亳挬浡秡钹铂桲舶博渤葧鹁愽搏鈸鉑馎鲌僰煿牔箔膊艊馛駁踣鋍镈駮鮊懪礡簙鎛餺鵓犦欂襮礴鑮bo3 跛箥bo4 簸孹擘糪譒蘗bo0 饽啵餑蔔bu1 峬庯逋钸晡鈽誧巭bu2 轐bu3 卜卟补哺捕鳪鵏鸔bu4 餔醭不布佈步咘怖歨歩钚勏埗悑部埠瓿廍蔀踄篰餢簿抪bu0 補ca1 擦ca3 礤礸ca4 遪cai1 猜cai2 才材财財裁cai3 采倸婇寀彩採睬跴綵踩毝啋cai4 埰菜棌蔡縩can1 参飡骖湌嬠餐驂爘can2 残蚕惭殘慚蝅慙蠶蠺can3 惨慘憯黪黲can4 灿粲儏澯薒燦璨cang1 仓沧苍舱凔嵢滄獊蒼濸艙螥篬cang2 藏鑶cang4 賶cao1 撡操糙cao2 曺曹嘈嶆漕蓸槽褿艚螬鏪cao3 艹艸草愺騲cao4 肏襙ce4 册侧厕恻测荝敇萗惻測策萴筞蓛墄箣憡cen1 嵾cen2 岑梣涔ceng1 噌ceng2 层層竲驓曾ceng4 蹭cha1 嚓叉芆杈肞臿挿偛嗏插揷銟锸艖鍤cha2 垞查査茬茶嵖搽猹靫槎察碴檫cha3 衩镲鑔cha4 奼汊岔侘诧姹差紁chai1 扠疀拆钗釵chai2 犲侪柴祡豺喍儕chai4 訍虿袃瘥蠆囆chan1 觇梴掺搀鋓chan2 辿婵谗孱棎湹禅馋嬋煘獑蝉誗鋋廛潹潺緾磛毚鄽瀍劖蟾酁嚵壥巉瀺纒躔镵艬讒鑱饞澶chan3 产旵丳浐谄產産铲阐蒇剷嵼滻蕆諂閳簅冁繟鏟闡囅灛讇骣chan4 裧幨儳刬剗幝忏硟摲懴颤懺羼韂chan0 缠纏chang1 伥昌娼淐猖菖阊晿琩裮锠錩鲳鯧鼚chang2 长兏肠苌尝偿常徜瓺萇甞腸嘗嫦瑺膓鋿償嚐蟐鲿鏛鱨仩chang3 厂场昶惝場敞僘厰廠氅鋹chang4 怅畅倡鬯唱悵暢畼誯韔chao1 抄弨怊欩钞焯超绰chao2 牊晁巢巣朝鄛漅嘲樔潮窲罺轈chao3 吵炒眧煼麨巐chao4 仦耖觘che1 车砗唓莗硨蛼che3 扯偖撦伬che4 屮彻坼迠烢聅掣硩頙徹撤澈勶瞮爡chen1 抻郴棽琛嗔諃賝chen2 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獷井丼阱刭坓宑汫汬肼剄穽颈景儆幜憬璄暻燝璟璥頸蟼警jing4 劤勁憼妌净弪径迳浄胫凈弳徑痉竞逕婙婧桱梷淨竟竫脛敬痙傹靖境獍誩踁静頚曔镜瀞鏡競竸陉jing0 經靜jiong1 扃埛駉駫jiong3 臩臦昋炅冋絅蘏冏囧迥侰炯逈浻烱煚窘颎綗僒煛熲澃燛褧蘔jiu1 丩勼纠朻究鸠糾赳阄萛啾揪揫鳩摎鬏鬮jiu3 糺九久乆乣奺汣灸玖舏韭紤酒镹韮jiu4 湬匛旧臼咎畂疚柩柾倃桕厩救就廄匓舅僦廏廐慦殧舊鹫鯦麔匶齨鷲欍ju1 伡車俥凥抅匊居拘泃狙苴驹挶疽痀罝陱娵婅婮崌掬梮涺椐琚腒锔裾雎艍蜛諊踘鴡鞠鞫鶋ju2 雛啹鋦局泦侷狊桔毩淗焗菊郹椈毱湨犑輂粷跼趜躹閰橘檋駶鵙蹫鵴巈蘜鶪驧ju3 鋤枸咀沮举矩莒挙椇筥榉榘蒟龃聥踽擧櫸齟欅襷ju4 烥倶駒句巨讵姖岠怇拒洰苣邭具拠昛歫炬秬钜俱倨冣剧粔耟蚷袓埧埾惧据詎距焣犋鉅飓虡豦锯愳聚駏劇勮屦踞鮔壉懅據澽遽鋸屨颶簴躆醵懼爠ju0 舉juan1 鵍姢娟捐涓裐鹃勬鋑镌鎸鵑鐫蠲juan3 卷呟埍捲菤锩臇錈巻juan4 帣奆劵倦勌桊狷绢淃瓹眷鄄睊絭罥睠絹慻餋羂讂jue1 噘撅撧屩屫jue2 髉夬叏鱖腳亅孒孓决刔氒诀抉決芵玦玨挗珏砄绝虳欮崛掘斍桷殌焆覐觖訣赽趹厥絕絶覚趉鈌劂瑴谲嶡嶥憰熦爴獗瘚蕝蕨鴂鴃憠橛橜镼爵臄镢蟨蟩爑譎蹶蹷矍覺鐝灍爝觼彏戄攫玃鷢欔矡龣貜钁jue4 倔jun1 军君均汮袀軍钧莙蚐桾皲菌鈞碅筠皸皹覠銁銞鲪麇鍕鮶抣jun4 棞隽雋蔨呁俊郡陖埈峻捃晙浚馂骏珺畯竣箟蜠儁寯懏餕燇駿鵔鵕鵘攈攟ka1 咔咖喀ka3 卡佧胩鉲kai1 开奒揩衉锎開鐦kai3 嵦凯剀垲恺闿铠凱剴慨蒈塏愷楷暟锴鍇鎧闓颽kai4 濭喫噄輆忾炌欬烗勓嘅鎎kan1 刊栞勘龛堪戡龕kan3 槛檻冚坎侃砍莰偘埳惂堿欿塪輡轗kan4 竷看衎崁墈阚瞰磡闞矙kang1 粇康嫝嵻慷漮槺穅糠躿鏮鱇闶kang2 扛摃kang4 忼砊亢伉匟邟囥抗犺炕钪鈧閌kao1 尻髛kao3 薧攷考拷栲烤kao4 槀稾洘铐犒銬鲓靠鮳鯌ke1 錒蚵匼苛柯牁珂科胢轲疴趷钶嵙棵痾萪颏搕犐稞窠鈳榼薖颗樖瞌磕蝌醘顆髁礚嗑ke2 頦壳翗嶱ke3 毼磆坷軻可岢炣渇嵑敤渴ke4 兡兞袔悈歁克刻剋勀勊客峇恪娔尅课堁氪骒缂愙溘锞碦緙課錁礊騍兛兙ken3 肎肯肻垦恳啃墾錹懇ken4 掯裉褃keng1 奟阬妔劥吭坑硁牼硜铿硻誙銵鍞鏗kong1 空埪崆悾硿箜躻錓鵼kong3 倥孔恐kong4 矼控鞚kou1 抠芤眍剾彄摳瞘。

常用生字笔画笔顺

常用生字笔画笔顺

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医学物理学实验报告5%的葡萄糖溶液
实验名称:5%的葡萄糖溶液
实验目的:制备5%的葡萄糖溶液,并进行医学物理学实验
实验原理:葡萄糖是一种单糖,在生物体内起到很重要的作用,可以被利用进行能量代谢和生成其他重要物质。

5%的葡萄糖溶液是在100mL的水溶液中溶解5克葡萄糖得到的。

实验步骤:
1. 取一个100mL容量瓶,用去离子水清洗并烘干备用。

2. 称取5克葡萄糖,加入到容量瓶中。

3. 用去离子水将容量瓶中的葡萄糖溶解。

4. 加入去离子水至刻度线处,轻轻摇匀,得到5%的葡萄糖溶液。

实验结果:制得100mL的5%葡萄糖溶液。

实验结论:成功制备了5%的葡萄糖溶液,可以用于医学物理学实验。

实验中的问题和解决方法:
1. 葡萄糖难以溶解:可以加热水或使用去离子水。

2. 溶液不够清澈:可以使用滤纸或离心机使其变得清澈。

实验注意事项:
1. 葡萄糖是易吸潮的,要保存在干燥的地方。

2. 实验中要注意卫生和安全,避免接触葡萄糖溶液。

3. 制备葡萄糖溶液要准确称量和配制。

4. 实验结束后要将实验器材进行彻底清洗,避免对下一次实验产生影响。

参考文献:
1. 张子健,胡婷,马丽华. 医学物理学实验指导[M]. 北京:人民卫生出版社,2014.
2. 陈宏鸣,黄薇薇,周懋轩. 医学生物化学实验指导[M]. 北京:高等教育出版社,2015.
3. 王伟,张欣. 医学实验技术与方法[M]. 北京:科学出版社,2019.
附:实验记录表
| 序号 | 葡萄糖(克) | 去离子水(mL) | 实验人员 |
|------|-------------|----------------。

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