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etingtechnology.com/papers/improvement-of-tabletability-via-twin-screw-melt-granulation-focus-on-binder-distribution/</loc><lastmod>2019-10-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/assessment-of-volumetric-scale-up-law-for-processing-of-a-sustained-release-formulation-on-co-rotating-hot-melt-extruders/</loc><lastmod>2019-10-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/characterisation-of-water-uptake-and-swelling-force-of-pharmaceutical-tablets/</loc><lastmod>2019-09-25</lastmod></url><url><loc>https://tabletingtechnology.com/papers/effects-of-particle-surface-roughness-on-in-die-flow-and-tableting-behavior-of-lactose/</loc><lastmod>2019-09-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/powders-flowability-assessment-in-granular-compaction-what-about-the-consistency-of-hausner-ratio/</loc><lastmod>2019-09-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/influence-of-the-unloading-conditions-on-capping-and-lamination-study-on-a-compaction-simulator/</loc><lastmod>2019-08-15</lastmod></url><url><loc>https://tabletingtechnology.com/papers/%C3%A9tude-des-corr%C3%A9lations-entre-un-simulateur-de-compression-et-une-presse-%C3%A0-comprimer-industrielle/</loc><lastmod>2019-06-27</lastmod></url><url><loc>https://tabletingtechnology.com/papers/estimation-of-nip-angle-by-roll-compaction-simulation/</loc><lastmod>2019-06-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/characterization-of-the-3d-microstructure-of-ibuprofen-tablets-by-means-of-synchrotron-tomography/</loc><lastmod>2019-05-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/determination-of-the-solid-true-density-of-pharma-ceutical-powders-and-the-impact-on-tablet-compression-characterization/</loc><lastmod>2019-04-11</lastmod></url><url><loc>https://tabletingtechnology.com/papers/evaluation-of-lactose-based-direct-tableting-agents-compressibility-behaviour-using-compaction-simulator/</loc><lastmod>2019-04-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/investigation-of-compressibility-characteristics-of-paracetamol-using-compaction-simulator/</loc><lastmod>2019-04-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/a-mathematical-approach-to-consider-solid-compressibility-in-the-compression-of-pharmaceutical-powders/</loc><lastmod>2019-03-15</lastmod></url><url><loc>https://tabletingtechnology.com/papers/quantitative-evaluation-of-different-rotary-tablet-presses-by-compaction-velocity-based-on-compaction-simulation-study/</loc><lastmod>2019-03-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/use-of-roller-compaction-and-fines-recycling-process-in-the-preparation-of-erlotinib-hydrochloride-tablets/</loc><lastmod>2019-02-02</lastmod></url><url><loc>https://tabletingtechnology.com/papers/manufacturing-of-multi-drug-formulations-with-customised-dose-by-solvent-impregnation-of-mesoporous-silica-tablets/</loc><lastmod>2019-01-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/effect-of-friction-between-powder-and-tooling-on-the-die-wall-pressure-evolution-during-tableting-experimental-and-numerical-results-for-flat-and-concave-punches/</loc><lastmod>2019-01-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/qbd-approach-formulation-design-for-metformin-hci-and-evaluations/</loc><lastmod>2019-01-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/are-natural-lubricants-suitable-for-texturized-mannitol-oral-dispersible-tablets/</loc><lastmod>2019-01-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/itraconazole-hpmcas-amorphous-spray-dried-dispersions-composition-and-process-factors-impacting-performance/</loc><lastmod>2019-01-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/etude-de-la-compression-pharmaceutique-%C3%A0-laide-dune-approche-de-m%C3%A9canique-des-milieux-continus/</loc><lastmod>2018-12-20</lastmod></url><url><loc>https://tabletingtechnology.com/papers/modeling-of-disintegration-and-dissolution-behavior-of-mefenamic-acid-formulation-using-numeric-solution-of-noyes-whitney-equation-with-cellular-automata-on-microtomographic-and-algorithmically-generated-surfaces/</loc><lastmod>2018-12-03</lastmod></url><url><loc>https://tabletingtechnology.com/papers/impact-of-different-dry-and-wet-granulation-techniques-on-granule-and-tablet-properties-a-comparative-study/</loc><lastmod>2018-12-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/how-relevant-is-ribbon-homogeneity-in-roll-compactiondry-granulation-and-can-it-be-influenced/</loc><lastmod>2018-12-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/towards-a-better-understanding-of-dry-binder-functionality/</loc><lastmod>2018-12-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/simplified-end-to-end-continuous-manufacturing-by-feeding-api-suspensions-in-twin-screw-wet-granulation/</loc><lastmod>2018-12-01</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igation-of-the-tableting-process-in-continuous-production-influence-of-feeding-and-extended-dwell-time-during-compression-on-dependent-process-variables-and-tablet-properties/</loc><lastmod>2014-01-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/impact-of-the-lubricant-mixing-time-on-the-compactibility-and-disintegration-time-for-mannitol-compacts/</loc><lastmod>2014-01-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/duralac-h-a-new-alternative-source-of-anhydrous-lactose/</loc><lastmod>2014-01-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/characterization-of-functionalized-calcium-carbonate-as-a-new-pharmaceutical-excipient/</loc><lastmod>2014-01-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/compaction-of-recrystallised-ibuprofen/</loc><lastmod>2010-11-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/roller-compaction-application-of-an-in-gap-ribbon-porosity-calculation-for-the-optimization-of-downstream-granule-flow-and-compactability-characteristics/</loc><lastmod>2010-06-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/evaluation-of-a-rotary-tablet-press-simulator-as-a-tool-for-the-characterization-of-compaction-properties-of-pharmaceutical-products/</loc><lastmod>2010-06-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/comparing-the-simulation-of-a-fette-102i-by-the-stylcam-200r/</loc><lastmod>2010-03-08</lastmod></url><url><loc>https://tabletingtechnology.com/papers/the-influence-of-the-stylcam-flowmatic-feed-system-on-tablet-properties/</loc><lastmod>2010-01-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/evaluation-of-engeneered-spherical-lactose-particles-for-direct-compression-using-the-stylcam-100/</loc><lastmod>2009-01-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/diluent-effects-on-drug-release-from-sustained-release-compritol-888-ato-tablets/</loc><lastmod>2009-01-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/development-of-hydrocortisone-mini-tablets-for-improved-paediatric-dosing/</loc><lastmod>2009-01-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/investigation-of-compression-behavior-of-a-co-processed-mixture-of-corn-starch-and-pregelatinized-starch-as-a-direct-compression-excipient/</loc><lastmod>2009-01-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/the-stylcam-200-r-a-rotary-tablet-press-simulator-optimising-the-instrumentation-characterising-the-displacement-measurement-system/</loc><lastmod>2008-10-25</lastmod></url><url><loc>https://tabletingtechnology.com/papers/the-stylcam-200-r-a-rotary-tablet-press-simulator/</loc><lastmod>2008-10-08</lastmod></url><url><loc>https://tabletingtechnology.com/papers/the-stylcam-200-r-a-rotary-tablet-press-simulator-optimising-the-instrumentation-correcting-for-machine-deformation-upon-measuring-in-die-tablet-height/</loc><lastmod>2008-04-10</lastmod></url><url><loc>https://tabletingtechnology.com/papers/disk-shaped-compact-tension-test-for-fracture-analysis-on-pharmaceutical-tablets/</loc><lastmod>2023-01-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/upscaling-of-external-lubrication-from-a-compaction-simulator-to-a-rotary-tablet-press/</loc><lastmod>2023-01-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/a-powder-tabletability-equation-2/</loc><lastmod>2022-11-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/screening-of-lubricants-towards-their-applicability-for-external-lubrication/</loc><lastmod>2022-12-28</lastmod></url><url><loc>https://tabletingtechnology.com/papers/usage-of-compaction-simulators-for-the-powder-compression-characterization-advantages-and-limitations/</loc><lastmod>2022-12-26</lastmod></url><url><loc>https://tabletingtechnology.com/papers/tablet-disintegratability-sensitivity-of-superdisintegrants-to-temperature-and-compaction-pressure/</loc><lastmod>2022-12-06</lastmod></url><url><loc>https://tabletingtechnology.com/papers/understanding-the-implication-of-kawakita-model-parameters-using-in-die-force-displacement-curve-analysis-for-compacted-and-non-compacted-api-powders/</loc><lastmod>2022-12-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/the-assessment-of-the-capping-tendency-of-the-tablet-during-the-pharmaceutical-tabletting-using-finite-element-analysis-in-computational-modelling-tools/</loc><lastmod>2022-11-29</lastmod></url><url><loc>https://tabletingtechnology.com/papers/a-compactibility-based-lubricant-dispersion-model-describing-the-effect-of-formulation-and-paddle-speed/</loc><lastmod>2022-11-25</lastmod></url><url><loc>https://tabletingtechnology.com/papers/itraconazole-amorphous-solid-dispersion-tablets-formulation-and-compaction-process-optimization-using-quality-by-design-principles-and-tools/</loc><lastmod>2022-11-07</lastmod></url><url><loc>https://tabletingtechnology.com/papers/accelerated-technology-tr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od></url><url><loc>https://tabletingtechnology.com/papers/paclitaxel-loaded-micro-or-nano-transfersome-formulation-into-novel-tablets-for-pulmonary-drug-delivery-via-nebulization-2/</loc><lastmod>2020-02-15</lastmod></url><url><loc>https://tabletingtechnology.com/papers/effects-of-granulated-lactose-characteristics-and-lubricant-blending-conditions-on-tablet-physical-properties-in-direct-powder-compression/</loc><lastmod>2023-11-15</lastmod></url><url><loc>https://tabletingtechnology.com/papers/elucidating-the-impact-of-material-properties-on-tablet-manufacturability-for-binary-paracetamol-blends/</loc><lastmod>2023-11-17</lastmod></url><url><loc>https://tabletingtechnology.com/papers/developmental-strategy-for-swellableerodible-matrix-tablet-of-mirabegron-quality-by-design-approach-with-various-geometric-properties-and-pharmacokinetic-evaluation/</loc><lastmod>2023-11-21</lastmod></url><url><loc>https://tabletingtechnology.com/papers/sticking-detection-by-repeated-compactions-on-a-single-tablet/</loc><lastmod>2023-11-21</lastmod></url><url><loc>https://tabletingtechnology.com/papers/worsened-punch-sticking-by-external-lubrication-with-magnesium-stearate/</loc><lastmod>2024-01-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/overcoming-the-clinical-challenges-of-traditional-ayahuasca-a-first-in-human-trial-exploring-novel-routes-of-administration-of-nn-dimethyltryptamine-and-harmine/</loc><lastmod>2023-11-27</lastmod></url><url><loc>https://tabletingtechnology.com/papers/impact-of-magnesium-stearate-physical-and-chemical-variabilities-on-pharmaceutical-powder-flow-and-tablet-physical-properties/</loc><lastmod>2023-12-08</lastmod></url><url><loc>https://tabletingtechnology.com/papers/effect-of-tableting-temperature-on-tablet-properties-and-dissolution-behavior-of-heat-sensitive-formulations/</loc><lastmod>2023-12-15</lastmod></url><url><loc>https://tabletingtechnology.com/papers/elucidating-the-effect-of-salt-incorporation-in-tablets-on-tablet-disintegratability/</loc><lastmod>2024-01-04</lastmod></url><url><loc>https://tabletingtechnology.com/papers/effect-of-particle-size-on-the-dispersion-behavior-of-magnesium-stearate-blended-with-microcrystalline-cellulose/</loc><lastmod>2024-01-07</lastmod></url><url><loc>https://tabletingtechnology.com/papers/development-of-direct-compression-acetazolamide-tablet-with-improved-bioavailability-in-healthy-human-volunteers-enabled-by-cocrystallization-with-p-aminobenzoic-acid/</loc><lastmod>2024-01-07</lastmod></url><url><loc>https://tabletingtechnology.com/papers/consolidation-of-spray-dried-amorphous-calcium-phosphate-by-ultrafast-compression-chemical-and-structural-overview/</loc><lastmod>2024-01-10</lastmod></url><url><loc>https://tabletingtechnology.com/papers/impact-of-dry-coating-lactose-as-a-brittle-excipient-on-multi-component-blend-processability/</loc><lastmod>2024-02-20</lastmod></url><url><loc>https://tabletingtechnology.com/papers/current-state-of-minitablet-product-design-a-review/</loc><lastmod>2024-02-16</lastmod></url><url><loc>https://tabletingtechnology.com/papers/comprehensive-evaluation-of-polymer-types-and-ratios-in-spray-dried-dispersions-compaction-dissolution-and-physical-stability/</loc><lastmod>2024-01-25</lastmod></url><url><loc>https://tabletingtechnology.com/papers/advanced-analysis-of-disintegrating-pharmaceutical-compacts-using-deep-learning-based-segmentation-of-time-resolved-micro-tomography-images/</loc><lastmod>2023-08-22</lastmod></url><url><loc>https://tabletingtechnology.com/papers/the-impact-of-diluents-on-the-compaction-dissolution-and-physical-stability-of-amorphous-solid-dispersion-tablets/</loc><lastmod>2024-02-22</lastmod></url><url><loc>https://tabletingtechnology.com/papers/cocrystallization-improves-the-tabletability-of-ligustrazine-despite-a-reduction-in-plasticity/</loc><lastmod>2024-02-28</lastmod></url><url><loc>https://tabletingtechnology.com/papers/tableting-of-coated-multiparticulates-influences-of-punch-face-configurations/</loc><lastmod>2024-03-01</lastmod></url><url><loc>https://tabletingtechnology.com/papers/a-new-insight-into-the-mechanism-of-the-tabletability-flip-phenomenon/</loc><lastmod>2024-03-04</lastmod></url><url><loc>https://tabletingtechnology.com/papers/studying-the-api-distribution-of-controlled-release-formulations-produced-via-continuous-twin-screw-wet-granulation-influence-of-matrix-former-filler-and-process-parameters/</loc><lastmod>2024-02-28</lastmod></url><url><loc>https://tabletingtechnology.com/papers/study-of-compaction-tools-and-parameters-on-critical-quality-attributes-of-high-drug-load-minitablets/</loc><lastmod>2024-03-05</lastmod></url><url><loc>https://tabletingtechnology.com/papers/the-effect-of-microcrystalline-cellulosecahpo4-mixtures-in-different-volume-ratios-on-the-compaction-and-structuralmechanical-properties-of-tablets/</loc><lastmod>2024-03-05</lastmod></url><url><loc>https://tabletingtechnology.com/papers/a-strategy-to-optimize-precompression-pressure-for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l><url><loc>https://tabletingtechnology.com/ressources/newsfeeds-page/modified-release-formulation-strategies/</loc><lastmod>2024-02-01</lastmod></url><url><loc>https://tabletingtechnology.com/ressources/newsfeeds-page/granutools-introduces-the-granupack-permeability/</loc><lastmod>2024-02-06</lastmod></url><url><loc>https://tabletingtechnology.com/ressources/newsfeeds-page/pearlitol-harnessing-the-potential-of-higher-active-ingredient-content/</loc><lastmod>2024-02-20</lastmod></url><url><loc>https://tabletingtechnology.com/ressources/newsfeeds-page/flexible-granulation/</loc><lastmod>2024-02-20</lastmod></url><url><loc>https://tabletingtechnology.com/ressources/newsfeeds-page/retrospective-analysis-of-the-biopharmaceutics-characteristics-of-solid-oral-modified-release-drug-products/</loc><lastmod>2024-02-20</lastmod></url><url><loc>https://tabletingtechnology.com/ressources/newsfeeds-page/meggle-highlights-role-of-excipient-properties-in-alcohol-induced-dose-dumping-aidd/</loc><lastmod>2024-03-01</lastmod></url><url><loc>https://tabletingtechnology.com/ressources/newsfeeds-page/4-strategies-to-formulate-poorly-soluble-apis/</loc><lastmod>2024-06-18</lastmod></url><url><loc>https://tabletingtechnology.com/ressources/newsfeeds-page/best-practices-for-preformulation-in-drug-development/</loc><lastmod>2024-06-18</lastmod></url><url><loc>https://tabletingtechnology.com/ressources/newsfeeds-page/bilayer-tablet-manufacturing-an-overview/</loc><lastmod>2024-03-08</lastmod></url><url><loc>https://tabletingtechnology.com/ressources/newsfeeds-page/a-qbd-guided-development-of-a-twin-screw-granulation-process/</loc><lastmod>2024-06-18</lastmod></url><url><loc>https://tabletingtechnology.com/ressources/newsfeeds-page/excipient-based-strategies-to-harness-complex-therapeutics/</loc><lastmod>2024-03-12</lastmod></url><url><loc>https://tabletingtechnology.com/ressources/newsfeeds-page/is-my-molecule-suitable-for-orally-disintegrating-tablet/</loc><lastmod>2025-02-17</lastmod></url><url><loc>https://tabletingtechnology.com/ressources/newsfeeds-page/medelpharm-highlights-innovative-solutions-at-pbp-world-meeting-2024/</loc><lastmod>2024-03-15</lastmod></url><url><loc>https://tabletingtechnology.com/ressources/newsfeeds-page/see-the-galenic-laboratory-at-armor-pharma/</loc><lastmod>2024-06-18</lastmod></url><url><loc>https://tabletingtechnology.com/ressources/newsfeeds-page/the-role-of-continuous-manufacturing-in-large-batch-production/</loc><lastmod>2024-06-18</lastmod></url><url><loc>https://tabletingtechnology.com/ressources/newsfeeds-page/korsch-to-introduce-advanced-x-5-tablet-press-at-interphex/</loc><lastmod>2024-06-18</lastmod></url><url><loc>https://tabletingtechnology.com/ressources/newsfeeds-page/impact-testing-as-a-new-approach-to-determine-mechanical-strength-of-pharmaceutical-tablets/</loc><lastmod>2024-04-02</lastmod></url><url><loc>https://tabletingtechnology.com/ressources/newsfeeds-page/rapid-and-material-sparing-feasibility-screening-for-hot-melt-extrusion/</loc><lastmod>2024-06-18</lastmod></url><url><loc>https://tabletingtechnology.com/ressources/newsfeeds-page/designing-advanceable-formulations-phase-i/</loc><lastmod>2025-02-17</lastmod></url><url><loc>https://tabletingtechnology.com/ressources/newsfeeds-page/hot-melt-extrusion-pharmaceutical-formulation/</loc><lastmod>2025-02-17</lastmod></url><url><loc>https://tabletingtechnology.com/ressources/newsfeeds-page/fabrication-and-optimization-of-directly-compressible-self-emulsifying-tablets-containing-cannabis-extract-obtained-from-supercritical-carbon-dioxide-extraction/</loc><lastmod>2024-06-18</lastmod></url><url><loc>https://tabletingtechnology.com/ressources/newsfeeds-page/korsch-america-highlights-latest-tableting-technology-during-interphex-2024/</loc><lastmod>2024-04-03</lastmod></url><url><loc>https://tabletingtechnology.com/ressources/newsfeeds-page/austinpx-pharmaceutics-manufacturing-drug-development/</loc><lastmod>2025-02-17</lastmod></url><url><loc>https://tabletingtechnology.com/ressources/newsfeeds-page/emerging-trends-and-challenges-for-pharmaceutical-production/</loc><lastmod>2024-06-18</lastmod></url><url><loc>https://tabletingtechnology.com/ressources/newsfeeds-page/choosing-the-optimal-dosage-form-for-your-molecule/</loc><lastmod>2024-04-22</lastmod></url><url><loc>https://tabletingtechnology.com/ressources/newsfeeds-page/why-are-pharmaceutical-companies-reluctant-to-adopt-cloud-technologies/</loc><lastmod>2024-06-18</lastmod></url><url><loc>https://tabletingtechnology.com/ressources/newsfeeds-page/trends-in-solid-dosage-forms-and-their-challenges-for-r-d-and-manufacture/</loc><lastmod>2024-04-24</lastmod></url><url><loc>https://tabletingtechnology.com/ressources/newsfeeds-page/the-benefits-of-using-genai-in-drug-discovery-and-preclinical-development/</loc><lastmod>2024-06-18</lastmod></url><url><loc>https://tabletingtechnology.com/ressources/newsfeeds-page/medelpharm-bringing-expertise-in-research-and-development-at-compaction-simula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