in:(WESLEY CLARK)

FALL ARREST SYSTEM FOR USE WITH A CRANE PCT/US2016/028231
[CLARK, Joshua, Barton, CLARK, Joshua, Barton, FRADO, James, Michael, CLARK, Joshua, Barton, FRADO, James, Michael, GORDON, Christopher, Scott, CLARK, Joshua, Barton, FRADO, James, Michael, GORDON, Christopher, Scott, HENSELL, Shannon, Keith, CLARK, Joshua, Barton, FRADO, James, Michael, GORDON, Christopher, Scott, HENSELL, Shannon, Keith, WEESE, Benjamin, Wesley, CLARK, Joshua, Barton, FRADO, James, Michael, GORDON, Christopher, Scott, HENSELL, Shannon, Keith, WEESE, Benjamin, Wesley, WEHNER, SR., Matthew, Roland, CLARK, Joshua, Barton, FRADO, James, Michael, GORDON, Christopher, Scott, HENSELL, Shannon, Keith, WEESE, Benjamin, Wesley, WEHNER, SR., Matthew, Roland, ZDRAZIL, Jan] 11 Vanguard DriveReading, PA 19606 A fall arrest system (1) for use with a crane (39) is presented. The fall arrest system (1) includes a winch (3), a fall arrest unit (4), and a sensor assembly (2). The winch (3) further includes a winch cable (38) extendable and retractable therefrom. The fall arrest unit (4) further includes an arrest cable (28) extendable and retractable therefrom. The sensor assembly (2) further includes a sensor (12). The sensor assembly (2) is disposed between the winch (3) and the fall arrest unit (4). The winch cable (38) is attachable to the arrest cable (28) so that the winch cable (38) pulls the arrest cable (28) across the sensor (12) when the winch cable (38) is retracted in one configuration and the winch cable (38) permits the arrest cable (28) to move away from the sensor (12) when the winch cable (38) is extended in another configuration. The sensor (12) may allow functionality of the crane (39) when the fall arrest system (1) is not in use and may otherwise disable functionality of the crane (39) when the fall arrest system (1) is in use. A fall arrest system (1) for use with a crane (39) is presented. The fall arrest system (1) includes a winch (3), a fall arrest unit (4), and a sensor assembly (2). The winch (3) further includes a winch cable (38) extendable and retractable therefrom. The fall arrest unit (4) further includes an arrest cable (28) extendable and retractable therefrom. The sensor assembly (2) further includes a sensor (12). The sensor assembly (2) is disposed between the winch (3) and the fall arrest unit (4). The winch cable (38) is attachable to the arrest cable (28) so that the winch cable (38) pulls the arrest cable (28) across the sensor (12) when the winch cable (38) is retracted in one configuration and the winch cable (38) permits the arrest cable (28) to move away from the sensor (12) when the winch cable (38) is extended in another configuration. The sensor (12) may allow functionality of the crane (39) when the fall arrest system (1) is not in use and may otherwise disable functionality of the crane (39) when the fall arrest system (1) is in use.
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Disc storage system with hydrodynamic bearing EP96302594.5
[Grantz, Alan L., Clark, Wesley R.] 920 Disc Drive, Scotts Valley, California 95066, US A magnetic disc storage system includes a base (60) and a rotating magnetic disc having an axis of rotation (57). A transducing head which reads and writes information is positioned proximate the disc. The disc rotates on a rotating member (14) relative to a fixed member (52, 56, 58) which is attached to the base (60). The interface between the rotating member and the fixed member is a hydrodynamic bearing. The interface of the hydrodynamic bearing is at an acute angle relative to the axis of rotation. The interface has a width in a direction perpendicular to the axis of rotation proximate a center portion of the hydrodynamic bearing which is less than a width proximate a distal portion of the bearing. In one embodiment, the hydrodynamic bearing has a shape which forms a portion of a sphere.<img id="iaf01" file="imgaf001.tif" wi="135" he="101" img-content="drawing" img-format="tif" />
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CIGARETTE AND HEATER FOR USE IN AN ELECTRICAL SMOKING SYSTEM EP96912902.0
[BAGGETT, James, D., Jr., CLARK, David, A., COUNTS, Mary, Ellen, COWLING, Patrick, C., HOUCK, Willie, G., Jr., MOORE, Michael, A., SANDERSON, Wesley, G., UHL, Richard, G., WATKINS, Michael, L., WRENN, Susan, E., FLEISCHHAUER, Grier, S., HAYES, Patrick, H., MORGAN, Constance, H., HAJALIGOL, Mohammad, R., NICHOLS, Walter, A., SHARPE, David, E.] 3601 Commerce Road, Richmond Virginia 23234, US
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PA8326401A
[BAGGETT JAMES D JR, CLARK DAVID A, COUNTS MARY ELLEN, COWLING PATRICK C, MOORE MICHAEL A, SANDERSON WESLEY G, UHL RICHARD G, WATKINS MICHAEL, WRENN SUSAN E, HOUCK WILLIE G] US
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MATERIALS AND METHODS FOR EFFICIENT TARGETED KNOCK IN OR GENE REPLACEMENT PCT/US2018/041888
[CLARK, Karl J., EKKER, Stephen C., ESSNER, Jeffrey, WELKER, Jordan Michael, DE ALMEIDA, Maira Pedroso, WIERSON, Wesley Allen, MCGRAIL, Maura] 200 First Street S.W.Rochester, Minnesota 55905;1805 Collaboration PlaceSuite 2100Ames, Iowa 50010 Materials and methods for generating targeted knock ins and gene replacements with high precision and efficiency are provided herein.
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HYDRAULIC DRIVE TRAIN FOR A FRAC PUMP PCT/US2020/043913
[BAYYOUK, Jacob A., WAGNER, Bryan C., CLARK, Wesley P.] 601 Weir WayFort Worth, Texas 76108 A hydraulic drive system is employed to transfer energy generated by a diesel engine to a frac pump. The hydraulic drive system includes a gearbox comprising a plurality of gears being coupled to and driven to produce rotational movement by the diesel engine, at least one hydraulic pump coupled to at least one gear of the gearbox, and operable to, driven by the rotational movement of the at least one gear of the gearbox, force a fluid at high pressure into at least one high-pressure fluid conduit, and at least one hydraulic motor coupled to the at least one high-pressure fluid conduit to receive the high-pressure fluid, and operable to transform energy in the high-pressure fluid to a rotational movement, which is used to power and drive a plurality of plungers in the frac pump. A hydraulic drive system is employed to transfer energy generated by a diesel engine to a frac pump. The hydraulic drive system includes a gearbox comprising a plurality of gears being coupled to and driven to produce rotational movement by the diesel engine, at least one hydraulic pump coupled to at least one gear of the gearbox, and operable to, driven by the rotational movement of the at least one gear of the gearbox, force a fluid at high pressure into at least one high-pressure fluid conduit, and at least one hydraulic motor coupled to the at least one high-pressure fluid conduit to receive the high-pressure fluid, and operable to transform energy in the high-pressure fluid to a rotational movement, which is used to power and drive a plurality of plungers in the frac pump.<
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BIOCATALYTIC METHODS FOR SYNTHESIZING AND IDENTIFYING BIOLOGICALLY ACTIVE COMPOUNDS PCT/US1994/009174
[FOX, J., Wesley, DORDICK, Jonathan, S., CLARK, douglas, S.] Suite C-100 2501 Crosspark Oakdale Research Park Iowa City, IA 52242-5000;136 South White Branch Court Schaumburg, IL 60194;2996 Walnut Ridge Lane Iowa City, IA 52240;3066 Holyrood Drive Oakland, CA 94611 This invention encompasses methods for producing a library of modified starting compounds by use of biocatalytic reactions on a starting compound and identifying the modified starting compound with the optimum desired activity. The invention encompasses starting compounds and modified compounds that are free in solution. The method is useful in producing modified pharmaceutical compounds with desired specific activity.
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SPECTRAL DOPPLER PROCESSING WITH ADAPTIVE SAMPLE WINDOW SIZE PCT/IB2016/054942
[CLARK, David Wesley] High Tech Campus 55656 AE Eindhoven A spectral Doppler processor for an ultrasound system produces blood flow velocity estimates by processing a sequence of complex blood flow echo samples with an FFT algorithm. The FFT algorithm is executed with a long window of samples to produce velocity estimates with good velocity precision and is executed with a short window of samples to produce velocity estimates with good time precision. The long window algorithm is used when blood flow velocity is not changing rapidly, and the short window algorithm is used when blood flow velocity is changing rapidly. A spectral Doppler processor for an ultrasound system produces blood flow velocity estimates by processing a sequence of complex blood flow echo samples with an FFT algorithm. The FFT algorithm is executed with a long window of samples to produce velocity estimates with good velocity precision and is executed with a short window of samples to produce velocity estimates with good time precision. The long window algorithm is used when blood flow velocity is not changing rapidly, and the short window algorithm is used when blood flow velocity is changing rapidly.
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DECENTRALIZED COMPUTER SYSTEM JP22132997A
[GREADY SCOTT R, ELLINGER WESLEY M, CLARK GORDON R] PROBLEM TO BE SOLVED: To make it possible to know trouble of a computer even at a terminal in a remote place distant from a host CPU. SOLUTION: A server CPU 12, a video controller 20, and a server controller 26 are connected by an extension bus, and in a time before the computer gets out of order and a 2nd time after the computer is reset, display data sent from the CPU to the video controller are stored in a video memory 22 and also stored in a memory in the server controller. The remote terminal 28 accesses the memory in the server controller to read the data out, and judges the change of the stored display data to know the occurrence of the trouble.
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POLYMORPH FORM OF A MONOPHOSPHATE HYDRATE SALT OF A KNOWN TETRAHYDROISOQUINOLINE DERIVATIVE SG11202107226VA
[SAMAS BRIAN, CLARK WESLEY] US
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