Result for 195CBCEA9F0766E542DE81F4439B982C537D8574

Query result

Key Value
FileName./usr/share/pyshared/brian/experimental/new_c_propagate.py
FileSize19319
MD5CD9BC6566C14635AE5CE24940DBB3195
SHA-1195CBCEA9F0766E542DE81F4439B982C537D8574
SHA-256237382E0539419240AEB02D95DE6DF3477F7415E32D0CE92E0C798A7E0946956
SSDEEP384:DdBAvIWveb0noN2SdUQ0rkeTefLvF4bLfvAaVrWO:DdBAzI0noN2Kr5+efLvF4bLfvpVrWO
TLSHT1A582B63C2C90286865F3D26D6D9E5855CA2EC2037311C416BEBC07691FB1857D2BE9FA
hashlookup:parent-total1
hashlookup:trust55

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Parents (Total: 1)

The searched file hash is included in 1 parent files which include package known and seen by metalookup. A sample is included below:

Key Value
FileSize313890
MD5826DD3548CDDB7512FCEF5BCFFA4B453
PackageDescriptionsimulator for spiking neural networks Brian is a clock-driven simulator for spiking neural networks. It is designed with an emphasis on flexibility and extensibility, for rapid development and refinement of neural models. Neuron models are specified by sets of user-specified differential equations, threshold conditions and reset conditions (given as strings). The focus is primarily on networks of single compartment neuron models (e.g. leaky integrate-and-fire or Hodgkin-Huxley type neurons). Features include: - a system for specifying quantities with physical dimensions - exact numerical integration for linear differential equations - Euler, Runge-Kutta and exponential Euler integration for nonlinear differential equations - synaptic connections with delays - short-term and long-term plasticity (spike-timing dependent plasticity) - a library of standard model components, including integrate-and-fire equations, synapses and ionic currents - a toolbox for automatically fitting spiking neuron models to electrophysiological recordings
PackageMaintainerUbuntu Developers <ubuntu-devel-discuss@lists.ubuntu.com>
PackageNamepython-brian
PackageSectionpython
PackageVersion1.3.0-2
SHA-1635ADF94E9B071046DC2DC3B37FCFC5918F8979D
SHA-256A030756B8E9F27A440D775B253138103A76C21DD2B761EE0C6AE1B468A2D59EC