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    • 36. 发明申请
    • Cash flow projection tool
    • 现金流量投影工具
    • US20060047588A1
    • 2006-03-02
    • US10927288
    • 2004-08-26
    • Arun LalPeter HansenSumeet ShrivastavaChristopher HargartenDan Iatco
    • Arun LalPeter HansenSumeet ShrivastavaChristopher HargartenDan Iatco
    • G06F17/60
    • G06Q40/02G06Q40/06G06Q40/12
    • A method of projecting cash flow is disclosed which may include the steps of displaying a position date at which a cash flow position is to be calculated, displaying a beginning cash balance total amount as of the position date, displaying a forecast sales total amount as of the position date, displaying an accounts receivable total amount as of the position date, displaying an accounts payable total amount as of the position date, displaying a projected expense total amount as of the position date and displaying a resulting cash flow position as of the position date. The method may allow the user to edit the amount of at least one of the displayed beginning cash total balance, forecast sales total amount, account receivable total amount, accounts payable total amount and projected expense total amount along with the position date and the method may calculate and display a new cash flow position based on at least one of the edited amounts and edited position date.
    • 公开了一种投资现金流量的方法,其可以包括显示要计算现金流量位置的头寸日期的步骤,显示位置日期的开始现金余额总额,显示预测销售总额 该位置日期,显示所述职位日期的应收账款总额,显示所述职位日期的应付账款总金额,显示所述定位日期的预计费用总金额,并显示所述现金流量位置 日期。 该方法可以允许用户编辑显示的开始现金总余额,预测销售总额,应收账款总额,应付账款总额和预计费用总金额以及位置日期和方法中的至少一个的金额 基于编辑的数量和编辑的位置日期中的至少一个来计算和显示新的现金流量位置。
    • 38. 发明授权
    • Binding assays using optical resonance of colloidal particles
    • 使用胶体颗粒的光学共振的结合测定
    • US06413786B1
    • 2002-07-02
    • US09372444
    • 1999-08-11
    • W. Peter HansenPetra Krauledat
    • W. Peter HansenPetra Krauledat
    • G01N33553
    • G01N33/54346C12Q1/6816G01N33/54313G01N33/553G01N33/585G01N33/587Y10S435/975Y10S436/805Y10S436/808C12Q2565/632C12Q2563/149C12Q2537/101C12Q2545/114
    • A device and a method enable the rapid, quantitative evaluation of a large collection of ligands for binding affinity with a certain immobilized receptor, the improvements being that binding pan be detected without the need for a label and that binding is carried out in solution phase at a high rate. The instrument has at least two embodiments, one is based on a sensitive absorption photometer and the other on a sensitive light scatter photometer operating at a specific resonance wavelength, &lgr;R, of small, metallic, colloidal particles. The resonance is present in small particles having a complex refractive index with real part n(&lgr;) approaching 0 and imaginary part k(&lgr;) approaching 2 simultaneously at a specific wavelength &lgr;R. The particles are substantially spherical and substantially smaller than &lgr;R. The receptor is immobilized on a suspension of such particles and ligand binding is detected by a change in optical absorption or light scatter at the resonance wavelength.
    • 一种装置和方法使得能够快速,定量地评估大量的配体与一定固定化受体结合亲和力的配体,改进之处在于检测结合盘而不需要标记,并且在溶液相中进行结合 高利率。 仪器具有至少两个实施例,一个是基于敏感的吸收光度计,另一个基于在小的金属,胶体颗粒的特定共振波长(lambdR)下操作的敏感光散射光度计上。 共振存在于具有复数折射率的小颗粒中,实际部分n(lambd)接近0,虚部k(lambd)在特定波长lambdR下同时接近2。 颗粒基本上是球形的并且基本上小于lambdR。 受体被固定在这样的颗粒的悬浮液上,通过在共振波长处的光吸收或光散射的变化来检测配体结合。
    • 39. 发明授权
    • Ceramic multilayer capacitor
    • 陶瓷层叠电容器
    • US6072688A
    • 2000-06-06
    • US166433
    • 1998-10-05
    • Detlev HenningsPeter Hansen
    • Detlev HenningsPeter Hansen
    • H01G2/00H01G4/12H01G4/06C04B35/46H01G4/228
    • H01G4/1227
    • The invention relates to a ceramic multilayer capacitor having a number of ceramic layers on the basis of a doped (Ba,Ca)[Ti,Zr]O.sub.3 as well as a number of electrode layers of Ni, the ceramic layers and the electrode layers being alternately stacked to form a multilayer structure which is provided with electric connections at two side faces, said electric connections being connected to a number of the electrode layers. The invention is characterized in that the composition of the main component of the doped (Ba,Ca)[Ti,Zr]O.sub.3 corresponds to the formula(Ba.sub.1-x Ca.sub.x)(Ti.sub.1-a-b-y Zr.sub.y Mn.sub.a Mo.sub.b A.sub.c).sub.k O.sub.3-.delta.wherein:0.00.ltoreq.x.ltoreq.0.050.10.ltoreq.y.ltoreq.0.250.00
    • 本发明涉及一种陶瓷层叠电容器,其基于掺杂(Ba,Ca)[Ti,Zr] O 3以及Ni的多个电极层而具有多个陶瓷层,陶瓷层和电极层为 交替层叠以形成在两个侧面处设置有电连接的多层结构,所述电连接件连接到多个电极层。 本发明的特征在于,掺杂(Ba,Ca)[Ti,Zr] O 3的主要组分的组成对应于式(Ba1-xCax)(Ti1-ab-yZryMnaMobAc)kO3-δ,其中: = x