1460734272-06290016-3213-475b-943c-2e8aae038de1

1. A system for providing communication between a caller and a callee over a telephone andor data network, the system comprising:
a service provider including
a web server, accessible by a caller and a callee, and
a database including non-transitory computer readable medium for storing a callee contact identifier distinct from a callee phone number;

an origination provider for receiving a call, to a caller local direct-inward-dial (DID) number, from the caller; and,
a termination provider for establishing a connection to the callee;
wherein the service provider is configured to:
receive an indication to communicate with the callee from the caller based upon at least the callee contact identifier, and,
establish a connection between the caller and the callee, via the origination provider and the termination provider, upon notification from the origination service provider that the caller has dialed the caller local DID.
2. The system of claim 1, wherein the service provider also including an interface for interacting with the caller to define at least one option for the connection.
3. The system of claim 2, wherein the at least one option includes one or more of
establish a voice communication session between the caller and the callee,
establish a textual data transfer between the caller and the callee, andor
establish a data transfer session between the caller and the callee.
4. The system of claim 1, wherein the indication includes one or more of:
an indication of the caller clicking on the URL at a caller personal computer,
an indication of the caller clicking on the URL at a caller phone,
an e-mail received from the caller at an address associated with the URL,
a phone number received from the caller associated with the URL,
a name received from the caller associated with the URL, andor
an IP address received from the caller associated with the URL.
5. The system of claim 1, wherein the caller local DID number is based upon the geographic location of the caller at the time the indication is received.
6. The system of claim 1, wherein the connection is established such that the only the callee contact identifier is displayed to the caller andor only the caller contact identifier is displayed to the callee, the caller contact identifier being distinct from the caller phone number.
7. The system of claim 1, wherein the caller contact identifier is selected from a group of identifiers consisting of:
the caller local DID,
a caller name defined within the web server by the caller,
a caller e-mail address, and
other caller information unique from a real caller identity of the caller.
8. The system of claim 7, wherein the connection is established such that the only the caller contact identifier is displayed to the callee such that the real caller identity is concealed from the callee.
9. The system of claim 1, wherein the callee contact identifier is selected from a group of identifiers consisting of:
a callee local DID based upon a geographic location of the callee at the time the indication is received,
a callee name defined within the database by the callee,
a callee e-mail address, and
other callee information unique from a real callee identity of the callee defined within the database by the callee.
10. The system of claim 9, wherein the connection is established such that the only the callee contact identifier is displayed to the caller such that the real callee identity is concealed from the caller.
11. The system of claim 1, wherein the notification is automatic and based upon the caller calling the caller local DID.
12. The system of claim 1, wherein the notification is based upon the caller identification (CID) and the service provider is further configured to authenticate the CID prior to establishing the connection.
13. A method for providing communication between a caller and a callee over a telephone andor data network, the method comprising:
receiving from the caller, at a web server of a service provider, an indication to establish a connection to the callee based on a callee contact identifier distinct from a real identity of the callee;
allocating, within the service provider, a caller local direct-inward-dial (DID) number based upon a geographic location of the caller at the time the indication is received;
receiving, from an origination provider, notification of a first communication from the caller to the caller local DID number;
sending a commination request to a termination provider to configure a second communication to the callee using a callee local DID of the callee at the time the indication first communication is received; and;
joining the first and second communications to establish the connection between the caller and the callee.
14. The method of claim 13, further comprising, after the step of receiving, generating an interface, accessible by the caller, including at least one option to define the connection.
15. The method of claim 14, wherein the at least one option includes one or more of:
establish a voice communication session between the caller and the callee,
establish a textual data transfer between the caller and the callee, and
establish a data transfer session between the caller and the callee.
16. The method of claim 13, wherein the indication includes one or more of:
an indication the caller clicks on the URL at a caller personal computer,
an indication the caller clicks on the URL at a caller phone,
an e-mail received from the caller at an address associated with the URL,
a phone number received from the caller associated with the URL,
a name received from the caller associated with the URL, andor
an IP address received from the caller associated with the URL.
17. The method of claim 13, wherein the step of joining comprises displaying the callee contact identifier to the caller such that a real callee identity of the callee is concealed from the caller.
18. The method of claim 17, wherein the callee contact identifier is selected from a group of identifiers consisting of:
the callee local DID,
a callee name defined within the database by the callee,
a callee e-mail address, and
other callee information unique from the real callee identity of the callee defined within the web server by the callee.
19. The method of claim 13, wherein the step of joining comprises displaying a caller contact identifier, unique from a real identity of the caller, to the callee such that the real caller identity is concealed from the callee.
20. The method of claim 19, wherein the caller contact identifier is selected from a group of identifiers consisting of:
the caller local DID,
a caller name defined within the web server by the caller,
a caller e-mail address, and
other caller information unique from a real caller identity of the caller defined within the web server by the caller.

The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

1. An apparatus comprising:
an encoded block storage element to store a log-likelihood ratio (LLR) vector corresponding to a data block received as corrupted;
a vector addition unit to add the LLR vector corresponding to the data block received as corrupted with an LLR vector of a retransmitted data block;
a low density parity check (LDPC) decoder responsive to the vector addition unit;
a decoded block storage element to store decoded data blocks received as uncorrupted; and
a corrected frame processing module to combine decoded data blocks from the decoded block storage element with decoded data blocks received from the LDPC decoder.
2. The apparatus of claim 1 further comprising a corrected frame validation module to validate a corrected frame received from the corrected frame processing module.
3. The apparatus of claim 1 further comprising a message generation module to generate messages to request retransmission of encoded data blocks.
4. An electronic system comprising:
an omni-directional antenna;
a receiver coupled to the omni-directional antenna;
an encoded block storage element to store a log-likelihood ratio (LLR) vector corresponding to a data block received as corrupted;
a vector addition unit to add the LLR vector corresponding to the data block received as corrupted with an LLR vector of a retransmitted data block;
a low density parity check (LDPC) decoder responsive to the vector addition unit; a decoded block storage element to store decoded data blocks received as uncorrupted; and
a corrected frame processing module to combine decoded data blocks from the decoded block storage element with decoded data blocks received from the LDPC decoder.
5. The electronic system of claim 4 further comprising a corrected frame validation module to validate a corrected frame received from the corrected frame processing module.

1460734264-59ea9b34-9976-481e-9188-1b3167946390

1. A computer system, comprising:
an interactive screen display including a display module with a transceiver and display screen in communication with each other; and
a base computer in communication with the display module through the transceiver, the display module displaying graphics corresponding to graphics displayed by the base computer.
2. The system of claim 1, wherein the display screen displays graphics in response to the transceiver receiving a signal from the base computer, the graphics being displayed by the base computer and display screen being the same.
3. The system of claim 1, wherein the base computer displays graphics in response to receiving a signal from the transceiver, the signal being provided by the transceiver in response to information being inputted with the interactive screen display.
4. The system of claim 3, wherein the display screen is a touch sensitive display screen and the information is inputted with the interactive screen display using the touch sensitive display screen.
5. The system of claim 1, wherein the display module includes a power system and a display processor connected with the display screen and transceiver, wherein the power system is powered by a rechargeable battery andor an AC power source.
6. The system of claim 5, wherein the display module includes a single housing which houses the transceiver, display screen, display processor and power supply.
7. The system of claim 1, wherein the interactive screen display further includes a keyboard module adapted to operate as a stand and input device for the display module.
8. The system of claim 1, further including a plurality of interactive screen displays, each having a corresponding display module which displays the same graphics as the base computer.
9. An interactive screen display, comprising:
a display module; and
a keyboard module having a keyboard, the keyboard module being adapted to operate as a stand and input device for the display module.
10. The interactive screen display of claim 9, wherein the display module includes a housing which houses a transceiver and display screen in communication with each other.
11. The interface of claim 9, wherein the display and keyboard modules are moveable between a stored position where they face each other and the keyboard module operates as a cover for the display module, and a deployed position wherein the keyboard module operates as a stand and input device for the display module.
12. The interface of claim 11, wherein the display screen displays information in response to an input from the keyboard when the display module and keyboard are in the deployed position.
13. The interface of claim 11, wherein the keyboard module includes a prop adjustable to adjust the positioning of the display module when it is in the deployed position.
14. The interface of claim 9, further including a peripheral input device connected with the display or keyboard module.
15. The interface of claim 9, further including a mouse pad connected to the keyboard module.
16. The interface of claim 9, further including a multi-media device integrated with the display module.
17. The accessory of claim 9, wherein the display module is formed of a single housing which houses at least one of a camera, speaker and microphone.
18. The accessory of claim 9, wherein the display module is formed of a single housing which houses at least one of a USB connector and a nine-pin video connector.
19. The accessory of claim 9, wherein the display module comprises a display screen supported within a housing, the display module further including at least one display input connector supported in the housing.
20. The accessory of claim 9, wherein the display module comprises a display screen supported within a housing, the display module further including at least one headphone jack supported in the housing.
21. The accessory of claim 9, wherein the display module comprises a display screen supported within a housing, the display module further including at least one audio input connector supported in the housing.
22. The accessory of claim 9, wherein the display module comprises a display screen supported within a housing, the display module further including at least one speaker supported in the housing.
23. A method of communicating, comprising:
providing an interactive screen display comprising
a display module with a housing which houses a transceiver and display screen in communication with each other; and
a keyboard module having a keyboard, the keyboard module being adapted to operate as a stand and input device for the display module;

providing a base computer; and
establishing communication between the transceiver and base computer.
24. The method of claim 23, further including displaying graphics with the display screen in response to the transceiver receiving a signal from the base computer, the graphics corresponding to graphics displayed with the base computer.
25. The method of claim 23, further including displaying graphics with the base computer in response to receiving a signal from the transceiver, the signal being provided by the transceiver in response to information being inputted with the interactive screen display.
26. The method of claim 23, further including moving the display and keyboard modules to a deployed position wherein the keyboard module supports the display module and operates as an input device for it.

The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

1. A method of booting a wheel of an automotive vehicle, comprising the steps of:
(a) engaging a wheel rim with a first set of claws such that the claws cannot be removed from said wheel, wherein a tire of said wheel being contiguous with the ground;
(b) positioning a second set of claws that are attached to said first set of claws, and that are smaller in size with respect to said first set of claws, in a position that will result in said second set of claws contacting the ground, whereby said tire and said wheel will be prevented from rotating; and
(c) reversing said positions of said first and second set of claws, and repeating steps (a) and (b) for a different automotive wheel.
2. A booting method for automobiles, comprising the steps of:
(a) locking a first set of claws about a first wheel that is resting upon the ground;
(b) positioning a second set of claws attached to said first set of claws, such that it will contact the ground;
(c) subsequently unlocking the first set of claws;
(d) locking said second set of claws about a second wheel having a size that is different than that of said first wheel; and
(e) positioning said first set of claws such that it will contact the ground.
3. In a booting method for automobiles, including a booting device comprising a first set of pincers, a second set of pincers smaller than the first set of pincers, and a locking mechanism disposed between the sets for locking both sets of pincers; wherein said first set of pincers is locked about a first wheel that is resting upon the ground, and said second set of pincers which is attached to said first set of pincers is positioned to contact the ground, and then the method is subsequently reversed for a second wheel of a different size wherein said second set of pincers is locked about said second wheel of a different size and said first set of pincers is positioned to contact the ground.