Package: imp-dev Architecture: amd64 Version: 2.25.0-1 Priority: optional Section: libdevel Source: imp Maintainer: Ben Webb Installed-Size: 8314 Depends: imp (= 2.25.0-1), cmake, swig, libboost-filesystem-dev, libboost-graph-dev, libboost-iostreams-dev, libboost-program-options-dev, libboost-random-dev, libboost-regex-dev, libboost-thread-dev, libcgal-dev, libhdf5-dev, libfftw3-dev, libopencv-dev, libgsl-dev, python3-dev, libann-dev, libeigen3-dev, libcereal-dev, libprotobuf-dev Filename: jammy/imp-dev_2.25.0-1_amd64.deb Size: 1115996 MD5sum: 9079ed74757925618f9c237a6a53fb47 SHA1: 910c9b1ae95319ecc7b6f7b90a012190d08a8539 SHA256: a62835b19020c3753504d777c6371e8a47c452bf00adce50a01a2303b75b02a2 SHA512: 354b56e5375ed0d1b1dbfae890b5617c00cbd11c4afecb3c4169b0416388c4083aecee098d9ea0384210305693f30140c34ad061e83c69f8cedde19e303f95d4 Homepage: https://integrativemodeling.org/ Description: The Integrative Modeling Platform Headers to compile against IMP. Package: imp-openmpi Architecture: amd64 Version: 2.25.0-1 Priority: optional Section: libs Source: imp Maintainer: Ben Webb Installed-Size: 7091 Depends: imp (= 2.25.0-1), libboost-filesystem1.74.0 (>= 1.74.0), libboost-program-options1.74.0 (>= 1.74.0), libc6 (>= 2.34), libgcc-s1 (>= 3.0), libgomp1 (>= 4.2.1), libopencv-core4.5d (>= 4.5.4+dfsg), libopencv-imgcodecs4.5d (>= 4.5.4+dfsg), libopenmpi3 (>= 4.1.2), libstdc++6 (>= 11), python3-mpi4py Filename: jammy/imp-openmpi_2.25.0-1_amd64.deb Size: 1183922 MD5sum: 3f4ea1f11f42e1e8fa58372a7c2657dc SHA1: 4357e56deaa43ceb31c0da6d22fc38ac8c37be7b SHA256: 8625bd442d4a32c4fa41242092deba824c291bda63de5c526cc911da96181efe SHA512: 180643623a755af4481c973216596ab3c8d9172a0b1998ca2b994db95b39a2129abd5aa7d0ec128c8d581f3fb4bfaead23916c77dea8fbddd313d46e9c81f246 Homepage: https://integrativemodeling.org/ Description: The Integrative Modeling Platform IMP MPI module and dependents, for openmpi. Package: imp Architecture: amd64 Version: 2.25.0-1 Priority: optional Section: libs Maintainer: Ben Webb Installed-Size: 847139 Depends: libboost-filesystem1.74.0 (>= 1.74.0), libboost-graph1.74.0 (>= 1.74.0), libboost-iostreams1.74.0 (>= 1.74.0), libboost-program-options1.74.0 (>= 1.74.0), libboost-random1.74.0 (>= 1.74.0), libc6 (>= 2.34), libfftw3-double3 (>= 3.3.5), libgcc-s1 (>= 4.0), libgmp10 (>= 2:6.2.1+dfsg), libgomp1 (>= 4.9), libgsl27 (>= 2.7.1), libhdf5-103-1, libmpfr6 (>= 3.1.3), libopencv-core4.5d (>= 4.5.4+dfsg), libopencv-imgcodecs4.5d (>= 4.5.4+dfsg), libopencv-imgproc4.5d (>= 4.5.4+dfsg), libprotobuf23 (>= 3.12.4), libstdc++6 (>= 11), python3-numpy, python3-protobuf, python3-yaml Breaks: imp-python3 (<< 2.13.0) Replaces: imp-python3 (<< 2.13.0) Filename: jammy/imp_2.25.0-1_amd64.deb Size: 98981902 MD5sum: 1edb15e87143dd09308f6ef4fe954936 SHA1: 71a61be8b209128c8a31afef6f4d1567147b43e9 SHA256: 1fe7424badefd25ff63e8bad5ff2449a989bea275af62f37af1429ec65b647bb SHA512: 0bffda0533ccf02cee75a9f2b8e36d989da9a5eb9c94ff3855180ca07076d7d3dc05279bb8f5a266cef53bb985d11285dd90d9337727b99602cbd66dee5b4972 Homepage: https://integrativemodeling.org/ Description: The Integrative Modeling Platform IMP's broad goal is to contribute to a comprehensive structural characterization of biomolecules ranging in size and complexity from small peptides to large macromolecular assemblies. Detailed structural characterization of assemblies is generally impossible by any single existing experimental or computational method. This barrier can be overcome by hybrid approaches that integrate data from diverse biochemical and biophysical experiments (eg, x-ray crystallography, NMR spectroscopy, electron microscopy, immuno-electron microscopy, footprinting, chemical cross-linking, FRET spectroscopy, small angle X-ray scattering, immunoprecipitation, genetic interactions, etc...). . We formulate the hybrid approach to structure determination as an optimization problem, the solution of which requires three main components: * the representation of the assembly, * the scoring function and * the optimization method. . The ensemble of solutions to the optimization problem embodies the most accurate structural characterization given the available information. . We created IMP, the Integrative Modeling Platform, to make it easier to implement such an integrative approach to structural and dynamics problems. IMP is designed to allow mixing and matching of existing modeling components as well as easy addition of new functionality.