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    • 2. 发明申请
    • System and method for teaching guitar lessons
    • 吉他课教学系统和方法
    • US20060254404A1
    • 2006-11-16
    • US11125786
    • 2005-05-10
    • John BryantMark Hara
    • John BryantMark Hara
    • G10F1/02
    • G09B15/006
    • A system and method of teaching guitar lessons that includes a step of recreating a song at a reduced tempo from its original recording. Each note and/or chord of a particular measure of a song is played at the reduced tempo, then the measure is played and then the entire song section is played. The notes or chords are preferably verbally communicated using a tablature method that identifies the fingers using an index I (index finger), M (middle finger), R(ring finger) and P(pinkie finger). The lesson may be recorded on a medium such as tape, cassette, compact disc or made available for downloading via the Internet. At the end of the lesson a recording of the song is provided with the guitar portion is removed so a student may play the guitar portion of the song.
    • 一种教吉他课程的系统和方法,包括从原始录音中以降低的速度重新创作歌曲的步骤。 歌曲的特定度量的每个音符和/或和弦以降低的速度播放,然后播放该测量,然后播放整个歌曲部分。 音符或和弦最好使用标签方法进行口头传播,该方法使用索引I(食指),M(中指),R(无名指)和P(小指))识别手指。 该课程可以记录在诸如磁带,磁带盒,光盘之类的介质上,或可通过因特网下载。 在课程结束时,提供歌曲的录制,吉他部分被删除,使得学生可以播放歌曲的吉他部分。
    • 4. 发明授权
    • Apparatus and method for displaying subsurface anomalies and surface features
    • 显示地下异常和表面特征的装置和方法
    • US07003400B2
    • 2006-02-21
    • US10691253
    • 2003-10-22
    • John Bryant
    • John Bryant
    • G01V9/00
    • G01V1/34
    • The present invention provides a method of combining various types of data and software in order to arrive at a composite graphical representation of a construction site, including surface and subsurface features. A 2-D or 3-D graph of subsurface contoured surfaces is created. A 3-D wire-frame model of surface and subsurface features is created. Aerial photographs of the site can be incorporated and the aerial photographs contoured surfaces and wire-frame model are to produce a complete Visual Reduction Modeling Language (VRML) model of both surface and subsurface features. The VRML model allows the user to identify and visualize a relationship between sub-surface features and above ground features.
    • 本发明提供了一种组合各种数据和软件的方法,以便得到包括表面和地下特征在内的施工现场的复合图形表示。 创建地下轮廓表面的二维或三维图形。 创建了表面和地下特征的3-D线框模型。 该场地的航空照片可以并入,航空照片轮廓和线框模型将产生一个完整的视觉减少建模语言(VRML)的表面和地下特征模型。 VRML模型允许用户识别和可视化表面特征与地面特征之间的关系。
    • 5. 发明申请
    • Apparatus and method for displaying subsurface anomalies and surface features
    • 显示地下异常和表面特征的装置和方法
    • US20050090988A1
    • 2005-04-28
    • US10691253
    • 2003-10-22
    • John Bryant
    • John Bryant
    • G01V1/28G01V1/34
    • G01V1/34
    • The present invention provides a method of combining various types of data and software in order to arrive at a composite graphical representation of a construction site, including surface and subsurface features. A 2-D or 3-D graph of subsurface contoured surfaces is created. A 3-D wire-frame model of surface and subsurface features is created. Aerial photographs of the site can be incorporated and the aerial photographs contoured surfaces and wire-frame model are to produce a complete Visual Reduction Modeling Language (VRML) model of both surface and subsurface features. The VRML model allows the user to identify and visualize a relationship between sub-surface features and above ground features.
    • 本发明提供了一种组合各种数据和软件的方法,以便得到包括表面和地下特征在内的施工现场的复合图形表示。 创建地下轮廓曲面的二维或三维图形。 创建了表面和地下特征的3-D线框模型。 该场地的航空照片可以并入,航空照片轮廓和线框模型将产生一个完整的视觉减少建模语言(VRML)的表面和地下特征模型。 VRML模型允许用户识别和可视化表面特征与地面特征之间的关系。
    • 9. 发明申请
    • Remotely reconfigurable system for mapping subsurface geological anomalies
    • 用于映射地下地质异常的远程可重构系统
    • US20080221797A1
    • 2008-09-11
    • US12072579
    • 2008-02-27
    • John Bryant
    • John Bryant
    • G01V3/36G01V3/02
    • G01V1/22G01V3/02
    • Methods and apparatus are provided for receiving, detecting and transmitting geophysical data from a plurality of electrodes placed in the soil utilizing a dynamically reconfigurable wireless control unit that is located on each electrode. Data from the control units is transmitted by a wireless signal to a centralized data processor for analysis. Control data is provided from a central control processor to the control unit by wireless transmission. The control unit, which is positioned, includes a multi-channel radio frequency transmitter/receiver and a processor to actuate relays and record data returns from the measured substrate soil for transmission to the central data processor. The control unit incorporates a changeable code or address to unambiguously identify itself, and its spatial relationship to other electrodes, to the central data processor and the central control processor. The control units are equipped with a GPS positioning device to allow for automatic transmission of electrode location and for electrode placement without a manual survey being required.
    • 提供方法和装置,用于利用位于每个电极上的动态可重新配置的无线控制单元从放置在土壤中的多个电极接收,检测和传输地球物理数据。 来自控制单元的数据通过无线信号发送到集中式数据处理器进行分析。 控制数据通过无线传输从中央控制处理器提供给控制单元。 定位的控制单元包括多通道射频发射器/接收器和处理器,用于致动继电器并记录来自测量的衬底土壤的数据返回以传输到中央数据处理器。 控制单元包含可变代码或地址,以明确地将其自身识别,并将其与其他电极的空间关系识别到中央数据处理器和中央控制处理器。 控制单元配备有GPS定位装置,以允许电极位置的自动传输和电极放置,而无需手动测量。