Abstract:
A system that includes a smartphone application that enables any individual to establish a local social network on the internet. The system includes a website management system that enables the user to manage and design the local social network's website. The system sends the network administrator a quick response code that potential network users may use to log in to the said network. The system enables the administrator to define the geographic boundaries of the local area within which users may log in to the network and interact on it. The system enables the general public to log in to the said network using a smartphone and a quick response code only if they are located physically within the local area.
Abstract:
Systems and methods are provided for identifying and analyzing electronic content in a network environment. In accordance with an implementation, a computer-implemented method is provided for scoring at least one topic in a network environment. The method includes identifying, with at least one processor, a plurality of content items accessible through a network and identifying content items as corresponding to a topic, based at least in part on the contents of the content items. In addition, for each determined topic, the method includes creating a cluster corresponding to the topic, and for each content item associated with the topic corresponding to the created cluster, creating a reference to the content item in the cluster, selecting a representative title to represent the cluster, based on first criteria, and generating a score for the cluster, based at least in part on the number of content items in the cluster.
Abstract:
According to one embodiment of the present disclosure, an approach is provided in which a policy module receives data that is initiated by a first virtual machine and has a destination at a second virtual machine. The policy module selects a policy that corresponds to sending the data from the first virtual machine to the second virtual machine. The policy includes one or more logical references to one or more virtual networks, and does not include a physical reference to a physical entity located on a physical network. In turn, the policy module encapsulates the data with a physical path translation that is based upon the selected policy, and sends the encapsulated data over the physical network to a second policy module that corresponds to the second virtual machine.
Abstract:
Aspects of the disclosure provide a method for large receive offload (LRO). The method adaptively changes a number of packets aggregated in an aggregated packet based on a packet loss state in a network. The method reduces reception stack overhead while reducing waiting time for LRO time-out. The method includes receiving a packet belonging to a packet stream transmitted from a sender to a receiver, detecting a size of a sliding window used by the sender to transmit packets, adjusting an LRO threshold indicating a maximum number of packets allowed in an aggregated packet as a function of the size of the sliding window, and aggregating incoming packets into an aggregated packet based on the adjusted LRO threshold.
Abstract:
A glass-ceramic material, particularly for elements in laser systems, and a method for preparing same. The glass-ceramic material may be used for an optical fiber for communication systems and laser systems. The glass-ceramic may include gahnite crystals and optionally β-quartz-like solid solution, or a petalite-like crystals, spinel, and zirconia crystals. The elements may comprise a host material glass-ceramic, where the glass-ceramic is doped with appropriate ions.
Abstract:
A glass-ceramic material, particularly for elements in laser systems, and a method for preparing same. The glass-ceramic material may be used for an optical fiber for communication systems and laser systems. The glass-ceramic may include gahnite crystals and optionally β-quartz-like solid solution, or a petalite-like crystals, spinel, and zirconia crystals. The elements may comprise a host material glass-ceramic, where the glass-ceramic is doped with appropriate ions.
Abstract:
A glass-ceramic material, particularly for elements in laser systems, and a method for preparing same. The glass-ceramic material may be used for an optical fiber for communication systems and laser systems. The glass-ceramic may include gahnite crystals and optionally β-quartz-like solid solution, or a petalite-like crystals, spinel, and zirconia crystals. The elements may comprise a host material glass-ceramic, where the glass-ceramic is doped with appropriate ions.