Bones is the fourth studio album released by American musician Son Lux, and is his first album released as a full three-piece band. It was released by Glassnote Records on June 23, 2015, following the release of the single "Change Is Everything" on 25 March 2015.
Bones: Original Motion Picture Houndtrack is a soundtrack album for the horror film, Bones. It was released on October 9, 2001 under Doggystyle Records and Priority Records. It peaked at #39 on the Billboard 200, #14 on the Top R&B/Hip-Hop Albums chart and #4 on the Top Soundtracks chart. The soundtrack features songs mainly by Snoop Dogg, but it also features songs by Kurupt, Xzibit, Kokane, Tha Eastsidaz, D12, LaToiya Williams, Cypress Hill and more. "Dogg Named Snoop" was the only single released from the soundtrack.
Bones is an American crime drama television series that premiered on September 13, 2005, on Fox.
The show is based on forensic anthropology and forensic archaeology, with each episode focusing on an FBI case concerning the mystery behind human remains brought by FBI Special Agent Seeley Booth (David Boreanaz) to the forensic anthropologist Dr. Temperance "Bones" Brennan (Emily Deschanel). The rest of the main cast includes Michaela Conlin as forensic artist Angela Montenegro, T. J. Thyne as entomologist Dr. Jack Hodgins, Eric Millegan as Dr. Zack Addy (seasons 1–3), Jonathan Adams as Dr. Daniel Goodman (season 1), Tamara Taylor as pathologist Dr. Camille Saroyan (introduced in season 2), John Francis Daley as psychologist Dr. Lance Sweets (seasons 3–10), and John Boyd as FBI agent James Aubrey (introduced in season 10). As of December 10, 2015, 222 episodes of Bones have aired.
USB, short for Universal Serial Bus, is an industry standard developed in the mid-1990s that defines the cables, connectors and communications protocols used in a bus for connection, communication, and power supply between computers and electronic devices. It is currently developed by the USB Implementers Forum.
USB was designed to standardize the connection of computer peripherals (including keyboards, pointing devices, digital cameras, printers, portable media players, disk drives and network adapters) to personal computers, both to communicate and to supply electric power. It has become commonplace on other devices, such as smartphones, PDAs and video game consoles. USB has effectively replaced a variety of earlier interfaces, such as serial and parallel ports, as well as separate power chargers for portable devices.
In general, there are three basic kinds or sizes related to the USB connectors and types of established connection: the older "standard" size, in its USB 1.1, 2.0, and 3.0 variants (for example, on USB flash drives), the "mini" size (primarily for the B connector end, such as on many cameras), and the "micro" size, in its USB 1.1, 2.0, and 3.0 variants (for example, on most modern mobile phones).
USB 3.0 (renamed to USB 3.1 Gen 1 in 2015) is the third major version of the Universal Serial Bus (USB) standard for interfacing computers and electronic devices. Among other improvements, USB 3.0 adds the new transfer mode SuperSpeed (SS) that can transfer data at up to 5 Gbit/s (625 MB/s), which is about ten times faster than the USB 2.0 standard. USB 3.0 connectors are usually distinguished from their USB 2.0 counterparts by blue color-coding of the receptacles and plugs, and the initials SS.
A successor standard, USB 3.1 (renamed to USB 3.1 Gen 2 in 2015), was released in July 2013 with the new transfer mode SuperSpeed+ that can transfer data at up to 10 Gbit/s (1.25 GB/s, twice the rate of USB 3.0), bringing its theoretical maximum speed on par with the first version of the Thunderbolt interface.
The USB 3.0 specification is similar to USB 2.0 but with many improvements and an alternative implementation. Earlier USB concepts like endpoints and four transfer types (bulk, control, isochronous and interrupt) are preserved but the protocol and electrical interface are different. The specification defines a physically separate channel to carry USB 3.0 traffic. The changes in this specification make improvements in the following areas: