<trid="row_0_0_0_"class="even"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1approx8_1_1_approx8_net.html"target="_self">Approx8Net</a></td><tdclass="desc">Contains constants and arrays related to the nuclear network </td></tr>
<trid="row_0_0_1_"class="odd"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1approx8_1_1_approx8_network.html"target="_self">Approx8Network</a></td><tdclass="desc">Class for the Approx8 nuclear reaction network </td></tr>
<trid="row_0_0_2_"class="even"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1approx8_1_1_jacobian.html"target="_self">Jacobian</a></td><tdclass="desc">Functor to calculate the <aclass="el"href="structgridfire_1_1approx8_1_1_jacobian.html"title="Functor to calculate the Jacobian matrix for implicit solvers.">Jacobian</a> matrix for implicit solvers </td></tr>
<trid="row_0_0_3_"class="odd"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1approx8_1_1_o_d_e.html"target="_self">ODE</a></td><tdclass="desc">Functor to calculate the derivatives for the <aclass="el"href="structgridfire_1_1approx8_1_1_o_d_e.html"title="Functor to calculate the derivatives for the ODE solver.">ODE</a> solver </td></tr>
<trid="row_0_1_0_"class="odd"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1io_1_1_m_e_s_a_network_file_parser.html"target="_self">MESANetworkFileParser</a></td><tdclass="desc">A parser for MESA-format network files </td></tr>
<trid="row_0_1_1_"class="even"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1io_1_1_network_file_parser.html"target="_self">NetworkFileParser</a></td><tdclass="desc">An abstract base class for network file parsers </td></tr>
<trid="row_0_1_2_"class="odd"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1io_1_1_parsed_network_data.html"target="_self">ParsedNetworkData</a></td><tdclass="desc">Holds the data parsed from a network file </td></tr>
<trid="row_0_1_3_"class="even"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1io_1_1_simple_reaction_list_file_parser.html"target="_self">SimpleReactionListFileParser</a></td><tdclass="desc">A parser for simple text files containing a list of reactions </td></tr>
<trid="row_0_3_0_"class="even"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1reaction_1_1_logical_reaction.html"target="_self">LogicalReaction</a></td><tdclass="desc">Represents a "logical" reaction that aggregates rates from multiple sources </td></tr>
<trid="row_0_3_1_"class="odd"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1reaction_1_1_rate_coefficient_set.html"target="_self">RateCoefficientSet</a></td><tdclass="desc">Holds the seven coefficients for the REACLIB rate equation </td></tr>
<trid="row_0_3_2_"class="even"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1reaction_1_1_reaction.html"target="_self">Reaction</a></td><tdclass="desc">Represents a single nuclear reaction from a specific data source </td></tr>
<trid="row_0_4_0_"class="odd"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1screening_1_1_bare_screening_model.html"target="_self">BareScreeningModel</a></td><tdclass="desc">A screening model that applies no screening effect </td></tr>
<trid="row_0_4_1_"class="even"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1screening_1_1_screening_model.html"target="_self">ScreeningModel</a></td><tdclass="desc">An abstract base class for plasma screening models </td></tr>
<trid="row_0_4_2_"class="odd"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1screening_1_1_weak_screening_model.html"target="_self">WeakScreeningModel</a></td><tdclass="desc">Implements the weak screening model based on the Debye-Hückel approximation </td></tr>
<trid="row_0_5_0_"class="odd"><tdclass="entry"><spanstyle="width:32px;display:inline-block;"> </span><spanid="arr_0_5_0_"class="arrow"onclick="dynsection.toggleFolder('0_5_0_')">▼</span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1solver_1_1_direct_network_solver.html"target="_self">DirectNetworkSolver</a></td><tdclass="desc">A network solver that directly integrates the reaction network ODEs </td></tr>
<trid="row_0_5_0_0_"class="even"><tdclass="entry"><spanstyle="width:64px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1solver_1_1_direct_network_solver_1_1_jacobian_functor.html"target="_self">JacobianFunctor</a></td><tdclass="desc">Functor for calculating the Jacobian matrix </td></tr>
<trid="row_0_5_0_1_"class="odd"><tdclass="entry"><spanstyle="width:64px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1solver_1_1_direct_network_solver_1_1_r_h_s_functor.html"target="_self">RHSFunctor</a></td><tdclass="desc">Functor for calculating the right-hand side of the ODEs </td></tr>
<trid="row_0_5_1_"class="even"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1solver_1_1dynamic_q_s_e_species_indices.html"target="_self">dynamicQSESpeciesIndices</a></td><tdclass="desc">Structure to hold indices of dynamic and QSE species </td></tr>
<trid="row_0_5_2_"class="odd"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1solver_1_1_network_solver_strategy.html"target="_self">NetworkSolverStrategy</a></td><tdclass="desc">Abstract base class for network solver strategies </td></tr>
<trid="row_0_5_3_"class="even"><tdclass="entry"><spanstyle="width:32px;display:inline-block;"> </span><spanid="arr_0_5_3_"class="arrow"onclick="dynsection.toggleFolder('0_5_3_')">▼</span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1solver_1_1_q_s_e_network_solver.html"target="_self">QSENetworkSolver</a></td><tdclass="desc">A network solver that uses a Quasi-Steady-State Equilibrium (QSE) approach </td></tr>
<trid="row_0_5_3_0_"class="odd"><tdclass="entry"><spanstyle="width:64px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1solver_1_1_q_s_e_network_solver_1_1_eigen_functor.html"target="_self">EigenFunctor</a></td><tdclass="desc">Functor for calculating the residual and Jacobian for the QSE species using Eigen </td></tr>
<trid="row_0_5_3_1_"class="even"><tdclass="entry"><spanstyle="width:64px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1solver_1_1_q_s_e_network_solver_1_1_jacobian_functor.html"target="_self">JacobianFunctor</a></td><tdclass="desc">Functor for calculating the Jacobian matrix of the ODEs for the dynamic species </td></tr>
<trid="row_0_5_3_2_"class="odd"><tdclass="entry"><spanstyle="width:64px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1solver_1_1_q_s_e_network_solver_1_1_r_h_s_functor.html"target="_self">RHSFunctor</a></td><tdclass="desc">Functor for calculating the right-hand side of the ODEs for the dynamic species </td></tr>
<trid="row_0_6_"class="even"><tdclass="entry"><spanstyle="width:16px;display:inline-block;"> </span><spanid="arr_0_6_"class="arrow"onclick="dynsection.toggleFolder('0_6_')">▼</span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1_adaptive_engine_view.html"target="_self">AdaptiveEngineView</a></td><tdclass="desc">An engine view that dynamically adapts the reaction network based on runtime conditions </td></tr>
<trid="row_0_6_0_"class="odd"><tdclass="entry"><spanstyle="width:48px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1_adaptive_engine_view_1_1_reaction_flow.html"target="_self">ReactionFlow</a></td><tdclass="desc">A struct to hold a reaction and its flow rate </td></tr>
<trid="row_0_7_"class="even"><tdclass="entry"><spanstyle="width:32px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1_dynamic_engine.html"target="_self">DynamicEngine</a></td><tdclass="desc">Abstract class for engines supporting Jacobian and stoichiometry operations </td></tr>
<trid="row_0_8_"class="odd"><tdclass="entry"><spanstyle="width:32px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1_engine.html"target="_self">Engine</a></td><tdclass="desc">Abstract base class for a reaction network engine </td></tr>
<trid="row_0_9_"class="even"><tdclass="entry"><spanstyle="width:32px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1_engine_view.html"target="_self">EngineView</a></td><tdclass="desc">Abstract base class for a "view" of a reaction network engine </td></tr>
<trid="row_0_10_"class="odd"><tdclass="entry"><spanstyle="width:32px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1_file_defined_engine_view.html"target="_self">FileDefinedEngineView</a></td><tdclass="desc">An engine view that uses a user-defined reaction network from a file </td></tr>
<trid="row_0_11_"class="even"><tdclass="entry"><spanstyle="width:16px;display:inline-block;"> </span><spanid="arr_0_11_"class="arrow"onclick="dynsection.toggleFolder('0_11_')">▼</span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="classgridfire_1_1_graph_engine.html"target="_self">GraphEngine</a></td><tdclass="desc">A reaction network engine that uses a graph-based representation </td></tr>
<trid="row_0_15_"class="even"><tdclass="entry"><spanstyle="width:32px;display:inline-block;"> </span><spanclass="icona"><spanclass="icon">C</span></span><aclass="el"href="structgridfire_1_1_step_derivatives.html"target="_self">StepDerivatives</a></td><tdclass="desc">Structure holding derivatives and energy generation for a network step </td></tr>
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