![]() Listing of these Activity Threads ( 2016, 2017, 2018, and 2019) is maintained in the wiki. See it here.Īctivity Thread: We have weekly, pre-planned discussions about mechanics, game design examples from published games, and aspects of the games we are designing. Member's Twitter: We now have a Twitter Share list for mutual social media promotion. After leaving feedback, if you want reciprocal feedback for your own project, you must provide your own separate thread / location for feedback do not derail other member's feedback thread. If someone took the time to offer feedback for your project, it is good manners to offer feedback for their project in return.Crowdfunding and promotional posts are limited to Member Projects, with moderator approval (see Crowd Funding and Promotion Rules in the wiki).Do not link to, request, or otherwise encourage piracy.Limit requests for editors, writers, artists, etc.No personal attacks, even if the designer isn't a member of the subreddit.Be civil - the person you're critiquing now, may be reviewing your work tomorrow.See these posts for commonly asked questions on licensing, dice probabilities, and asking for and giving feedback. Flaming professional or amateur game designersĬheck out the WIKI! The WIKI contains resources for designing and reviewing your game, as well as a section to list your project.Other elements of RPG production and publication. ![]() Mechanics and design of existing, published RPGs.Recruiting assistance with game design and development.Asking for advice about your system/setting.Design, layout, and other production aspects of RPGs.Is for discussing Role Playing Game Design and Development: This tolerance factor is used to reduce the size of the $V_c$-diagonal product basis when computing the screened Coulomb potential and the correlation self-energy.A gathering place for anyone, either casually or professionally, hacking, designing, or otherwise developing/publishing pen-and-paper tabletop RPGs. Matrix elements of the polarizability, the screened Coulomb potential, and the self-energy are computed in the basis that diagonalize the bare Coulomb potential. This element allows for specification of the following attributes: barcevtol, basis, cutofftype, pwm, stctol Maximal angular momentum: controls construction of the radial part of the mixed-product basis. Size of the $\mathbf$): controls construction of the plane-wave part of the mixed-product basis. Number of empty states to compute both the screened Coulomb potential and the self-energy. To reduce the memory usage, in summations over unoccupied states, big matrices are considered to be in a block form with a size of mblksiz. QP corrections are computed for states in the interval. vab - Valence-electron treatment where core states are also excluded from the construction of the mixed-product basis.xal - Both core and valence states are used to compute the exchange self-energy and only valence electrons for computing the correlation self-energy.This element allows for specification of the following attributes: coreflag, ibgw, mblksiz, nbgw, nempty, ngridq, printSelfC, printSpectralFunction, qdepw, rpmat, skipgnd, taskname, vqloff
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