[{"author":[{"id":"254998","orcid_put_code_url":"https://api.orcid.org/v2.0/0000-0002-6902-6116/work/169817686","full_name":"Attaullah, Hasina","first_name":"Hasina","last_name":"Attaullah","orcid":"0000-0002-6902-6116"},{"orcid":"0000-0003-4112-802X","last_name":"Sanaullah","first_name":"Sanaullah","full_name":"Sanaullah, Sanaullah","orcid_put_code_url":"https://api.orcid.org/v2.0/0000-0003-4112-802X/work/169817688","id":"248865"},{"orcid_put_code_url":"https://api.orcid.org/v2.0/0000-0001-7425-8766/work/169817690","full_name":"Jungeblut, Thorsten","first_name":"Thorsten","last_name":"Jungeblut","orcid":"0000-0001-7425-8766","id":"242294"}],"date_updated":"2026-06-23T06:16:40Z","publication_identifier":{"eissn":["2076-3417"]},"urn":"urn:nbn:de:hbz:bi10-50201","file":[{"access_level":"open_access","date_created":"2024-10-18T07:27:27Z","success":1,"date_updated":"2024-10-18T07:27:27Z","creator":"arichert1","relation":"main_file","content_type":"application/pdf","file_name":"applsci-14-09047.pdf","file_id":"5062","file_size":1189566}],"volume":14,"alternative_id":["5020"],"doi":"10.3390/app14199047","type":"journal_article","tmp":{"image":"/images/cc_by.png","short":"CC BY (4.0)","name":"Creative Commons Attribution 4.0 International Public License (CC-BY 4.0)","legal_code_url":"https://creativecommons.org/licenses/by/4.0/legalcode"},"main_file_link":[{"url":"https://www.mdpi.com/2076-3417/14/19/9047","open_access":"1"}],"_id":"4997","intvolume":"        14","citation":{"short":"H. Attaullah, S. Sanaullah, T. Jungeblut, Applied Sciences 14 (2024).","mla":"Attaullah, Hasina, et al. “Analyzing Machine Learning Models for Activity Recognition Using Homomorphically Encrypted Real-World Smart Home Datasets: A Case Study.” <i>Applied Sciences</i>, vol. 14, no. 19, 9047, MDPI AG, 2024, doi:<a href=\"https://doi.org/10.3390/app14199047\">10.3390/app14199047</a>.","ieee":"H. Attaullah, S. Sanaullah, and T. Jungeblut, “Analyzing Machine Learning Models for Activity Recognition Using Homomorphically Encrypted Real-World Smart Home Datasets: A Case Study,” <i>Applied Sciences</i>, vol. 14, no. 19, 2024.","alphadin":"<span style=\"font-variant:small-caps;\">Attaullah, Hasina</span> ; <span style=\"font-variant:small-caps;\">Sanaullah, Sanaullah</span> ; <span style=\"font-variant:small-caps;\">Jungeblut, Thorsten</span>: Analyzing Machine Learning Models for Activity Recognition Using Homomorphically Encrypted Real-World Smart Home Datasets: A Case Study. In: <i>Applied Sciences</i> Bd. 14, MDPI AG (2024), Nr. 19","ama":"Attaullah H, Sanaullah S, Jungeblut T. Analyzing Machine Learning Models for Activity Recognition Using Homomorphically Encrypted Real-World Smart Home Datasets: A Case Study. <i>Applied Sciences</i>. 2024;14(19). doi:<a href=\"https://doi.org/10.3390/app14199047\">10.3390/app14199047</a>","bibtex":"@article{Attaullah_Sanaullah_Jungeblut_2024, title={Analyzing Machine Learning Models for Activity Recognition Using Homomorphically Encrypted Real-World Smart Home Datasets: A Case Study}, volume={14}, DOI={<a href=\"https://doi.org/10.3390/app14199047\">10.3390/app14199047</a>}, number={199047}, journal={Applied Sciences}, publisher={MDPI AG}, author={Attaullah, Hasina and Sanaullah, Sanaullah and Jungeblut, Thorsten}, year={2024} }","chicago":"Attaullah, Hasina, Sanaullah Sanaullah, and Thorsten Jungeblut. “Analyzing Machine Learning Models for Activity Recognition Using Homomorphically Encrypted Real-World Smart Home Datasets: A Case Study.” <i>Applied Sciences</i> 14, no. 19 (2024). <a href=\"https://doi.org/10.3390/app14199047\">https://doi.org/10.3390/app14199047</a>.","apa":"Attaullah, H., Sanaullah, S., &#38; Jungeblut, T. (2024). Analyzing Machine Learning Models for Activity Recognition Using Homomorphically Encrypted Real-World Smart Home Datasets: A Case Study. <i>Applied Sciences</i>, <i>14</i>(19). <a href=\"https://doi.org/10.3390/app14199047\">https://doi.org/10.3390/app14199047</a>"},"department":[{"_id":"103"}],"publication":"Applied Sciences","status":"public","publication_status":"published","date_created":"2024-10-07T14:35:30Z","user_id":"231260","language":[{"iso":"eng"}],"file_date_updated":"2024-10-18T07:27:27Z","oa":"1","quality_controlled":"1","title":"Analyzing Machine Learning Models for Activity Recognition Using Homomorphically Encrypted Real-World Smart Home Datasets: A Case Study","year":"2024","article_number":"9047","has_accepted_license":"1","issue":"19","publisher":"MDPI AG"},{"urn":"urn:nbn:de:hbz:bi10-50630","file":[{"content_type":"application/pdf","relation":"main_file","file_name":"_2024_Malczyk_ApplSci14_9517.pdf","file_id":"5064","file_size":13590664,"access_level":"open_access","date_created":"2024-10-18T15:38:05Z","success":1,"date_updated":"2024-10-18T15:38:05Z","creator":"aehrmann"}],"tmp":{"image":"/images/cc_by.png","short":"CC BY (4.0)","name":"Creative Commons Attribution 4.0 International Public License (CC-BY 4.0)","legal_code_url":"https://creativecommons.org/licenses/by/4.0/legalcode"},"type":"journal_article","doi":"10.3390/app14209517","volume":14,"author":[{"first_name":"Maciej","last_name":"Malczyk","full_name":"Malczyk, Maciej"},{"full_name":"Blachowicz, Tomasz","first_name":"Tomasz","last_name":"Blachowicz"},{"id":"223776","first_name":"Andrea","last_name":"Ehrmann","orcid":"0000-0003-0695-3905","orcid_put_code_url":"https://api.orcid.org/v2.0/0000-0003-0695-3905/work/169852550","full_name":"Ehrmann, Andrea"}],"date_updated":"2026-06-09T13:34:31Z","publication_identifier":{"eissn":["2076-3417"]},"keyword":["clinostat","Earth magnetic field","simulated microgravity","plant growth"],"quality_controlled":"1","project":[{"name":"Institut für Technische Energie-Systeme","_id":"0ec202b7-cd76-11ed-89f4-a9e1a6dbdaa7"}],"title":"Coupled System of Dual-Axis Clinostat and Helmholtz Cage for Simulated Microgravity Experiments","oa":"1","file_date_updated":"2024-10-18T15:38:05Z","article_number":"9517","article_type":"original","year":"2024","publisher":"MDPI AG","issue":"20","has_accepted_license":"1","_id":"5063","intvolume":"        14","citation":{"chicago":"Malczyk, Maciej, Tomasz Blachowicz, and Andrea Ehrmann. “Coupled System of Dual-Axis Clinostat and Helmholtz Cage for Simulated Microgravity Experiments.” <i>Applied Sciences</i> 14, no. 20 (2024). <a href=\"https://doi.org/10.3390/app14209517\">https://doi.org/10.3390/app14209517</a>.","apa":"Malczyk, M., Blachowicz, T., &#38; Ehrmann, A. (2024). Coupled System of Dual-Axis Clinostat and Helmholtz Cage for Simulated Microgravity Experiments. <i>Applied Sciences</i>, <i>14</i>(20). <a href=\"https://doi.org/10.3390/app14209517\">https://doi.org/10.3390/app14209517</a>","short":"M. Malczyk, T. Blachowicz, A. Ehrmann, Applied Sciences 14 (2024).","alphadin":"<span style=\"font-variant:small-caps;\">Malczyk, Maciej</span> ; <span style=\"font-variant:small-caps;\">Blachowicz, Tomasz</span> ; <span style=\"font-variant:small-caps;\">Ehrmann, Andrea</span>: Coupled System of Dual-Axis Clinostat and Helmholtz Cage for Simulated Microgravity Experiments. In: <i>Applied Sciences</i> Bd. 14, MDPI AG (2024), Nr. 20","ieee":"M. Malczyk, T. Blachowicz, and A. Ehrmann, “Coupled System of Dual-Axis Clinostat and Helmholtz Cage for Simulated Microgravity Experiments,” <i>Applied Sciences</i>, vol. 14, no. 20, 2024.","mla":"Malczyk, Maciej, et al. “Coupled System of Dual-Axis Clinostat and Helmholtz Cage for Simulated Microgravity Experiments.” <i>Applied Sciences</i>, vol. 14, no. 20, 9517, MDPI AG, 2024, doi:<a href=\"https://doi.org/10.3390/app14209517\">10.3390/app14209517</a>.","bibtex":"@article{Malczyk_Blachowicz_Ehrmann_2024, title={Coupled System of Dual-Axis Clinostat and Helmholtz Cage for Simulated Microgravity Experiments}, volume={14}, DOI={<a href=\"https://doi.org/10.3390/app14209517\">10.3390/app14209517</a>}, number={209517}, journal={Applied Sciences}, publisher={MDPI AG}, author={Malczyk, Maciej and Blachowicz, Tomasz and Ehrmann, Andrea}, year={2024} }","ama":"Malczyk M, Blachowicz T, Ehrmann A. Coupled System of Dual-Axis Clinostat and Helmholtz Cage for Simulated Microgravity Experiments. <i>Applied Sciences</i>. 2024;14(20). doi:<a href=\"https://doi.org/10.3390/app14209517\">10.3390/app14209517</a>"},"main_file_link":[{"open_access":"1"}],"date_created":"2024-10-18T15:38:35Z","publication_status":"published","status":"public","publication":"Applied Sciences","language":[{"iso":"eng"}],"user_id":"216459"},{"alternative_id":["3491"],"issue":"3","type":"journal_article","doi":"10.3390/app13031448","volume":13,"tmp":{"image":"/images/cc_by.png","short":"CC BY (4.0)","name":"Creative Commons Attribution 4.0 International Public License (CC-BY 4.0)","legal_code_url":"https://creativecommons.org/licenses/by/4.0/legalcode"},"publisher":"MDPI AG","article_number":"1448","year":"2023","oa":"1","title":"Module-Level Performance Evaluation for a Smart PV System Based on Field Conditions","quality_controlled":"1","user_id":"261203","publication_identifier":{"eissn":["2076-3417"]},"language":[{"iso":"eng"}],"status":"public","date_updated":"2026-06-22T10:49:20Z","publication":"Applied Sciences","date_created":"2023-05-12T15:17:05Z","publication_status":"published","author":[{"id":"237630","first_name":"Li","last_name":"Feng","full_name":"Feng, Li"},{"first_name":"Nowshad","last_name":"Amin","full_name":"Amin, Nowshad"},{"full_name":"Zhang, Jingwei","first_name":"Jingwei","last_name":"Zhang"},{"first_name":"Kun","last_name":"Ding","full_name":"Ding, Kun"},{"id":"208487","first_name":"Frank","orcid":"0000-0001-6141-9874","last_name":"Hamelmann","orcid_put_code_url":"https://api.orcid.org/v2.0/0000-0001-6141-9874/work/218397710","full_name":"Hamelmann, Frank"}],"main_file_link":[{"url":"https://doi.org/10.3390/app13031448","open_access":"1"}],"citation":{"bibtex":"@article{Feng_Amin_Zhang_Ding_Hamelmann_2023, title={Module-Level Performance Evaluation for a Smart PV System Based on Field Conditions}, volume={13}, DOI={<a href=\"https://doi.org/10.3390/app13031448\">10.3390/app13031448</a>}, number={31448}, journal={Applied Sciences}, publisher={MDPI AG}, author={Feng, Li and Amin, Nowshad and Zhang, Jingwei and Ding, Kun and Hamelmann, Frank}, year={2023} }","ama":"Feng L, Amin N, Zhang J, Ding K, Hamelmann F. Module-Level Performance Evaluation for a Smart PV System Based on Field Conditions. <i>Applied Sciences</i>. 2023;13(3). doi:<a href=\"https://doi.org/10.3390/app13031448\">10.3390/app13031448</a>","short":"L. Feng, N. Amin, J. Zhang, K. Ding, F. Hamelmann, Applied Sciences 13 (2023).","alphadin":"<span style=\"font-variant:small-caps;\">Feng, Li</span> ; <span style=\"font-variant:small-caps;\">Amin, Nowshad</span> ; <span style=\"font-variant:small-caps;\">Zhang, Jingwei</span> ; <span style=\"font-variant:small-caps;\">Ding, Kun</span> ; <span style=\"font-variant:small-caps;\">Hamelmann, Frank</span>: Module-Level Performance Evaluation for a Smart PV System Based on Field Conditions. In: <i>Applied Sciences</i> Bd. 13, MDPI AG (2023), Nr. 3","ieee":"L. Feng, N. Amin, J. Zhang, K. Ding, and F. Hamelmann, “Module-Level Performance Evaluation for a Smart PV System Based on Field Conditions,” <i>Applied Sciences</i>, vol. 13, no. 3, 2023.","mla":"Feng, Li, et al. “Module-Level Performance Evaluation for a Smart PV System Based on Field Conditions.” <i>Applied Sciences</i>, vol. 13, no. 3, 1448, MDPI AG, 2023, doi:<a href=\"https://doi.org/10.3390/app13031448\">10.3390/app13031448</a>.","chicago":"Feng, Li, Nowshad Amin, Jingwei Zhang, Kun Ding, and Frank Hamelmann. “Module-Level Performance Evaluation for a Smart PV System Based on Field Conditions.” <i>Applied Sciences</i> 13, no. 3 (2023). <a href=\"https://doi.org/10.3390/app13031448\">https://doi.org/10.3390/app13031448</a>.","apa":"Feng, L., Amin, N., Zhang, J., Ding, K., &#38; Hamelmann, F. (2023). Module-Level Performance Evaluation for a Smart PV System Based on Field Conditions. <i>Applied Sciences</i>, <i>13</i>(3). <a href=\"https://doi.org/10.3390/app13031448\">https://doi.org/10.3390/app13031448</a>"},"_id":"2916","intvolume":"        13"},{"publication_identifier":{"eissn":["2076-3417"]},"date_updated":"2026-03-17T15:28:49Z","author":[{"full_name":"Wójcik, Dariusz","last_name":"Wójcik","first_name":"Dariusz"},{"first_name":"Maciej","last_name":"Surma","full_name":"Surma, Maciej"},{"last_name":"Magnuski","first_name":"Mirosław","full_name":"Magnuski, Mirosław"},{"first_name":"Tomasz","last_name":"Blachowicz","full_name":"Blachowicz, Tomasz"},{"full_name":"Tuvshinbayar, Khorolsuren","orcid":"0009-0001-7114-1842","last_name":"Tuvshinbayar","first_name":"Khorolsuren","id":"222971"},{"full_name":"Dotter, Marius","orcid":"0000-0001-8398-1809","last_name":"Dotter","first_name":"Marius","id":"242889"},{"first_name":"Yusuf","last_name":"Topuz","full_name":"Topuz, Yusuf"},{"id":"223776","first_name":"Andrea","last_name":"Ehrmann","orcid":"0000-0003-0695-3905","full_name":"Ehrmann, Andrea"}],"tmp":{"image":"/images/cc_by.png","short":"CC BY (4.0)","name":"Creative Commons Attribution 4.0 International Public License (CC-BY 4.0)","legal_code_url":"https://creativecommons.org/licenses/by/4.0/legalcode"},"volume":13,"doi":"10.3390/app13179777","type":"journal_article","file":[{"relation":"main_file","content_type":"application/pdf","file_name":"_2023_Wojcik_ApplSci13_9777_v2.pdf","file_size":54523499,"file_id":"3759","date_created":"2023-11-25T11:09:10Z","access_level":"open_access","date_updated":"2023-11-25T11:09:10Z","creator":"aehrmann","success":1}],"urn":"urn:nbn:de:hbz:bi10-37581","language":[{"iso":"eng"}],"user_id":"220548","publication_status":"published","date_created":"2023-11-25T11:09:44Z","publication":"Applied Sciences","status":"public","intvolume":"        13","_id":"3758","citation":{"chicago":"Wójcik, Dariusz, Maciej Surma, Mirosław Magnuski, Tomasz Blachowicz, Khorolsuren Tuvshinbayar, Marius Dotter, Yusuf Topuz, and Andrea Ehrmann. “Experimental Verification of the Shielding Properties of Selected Textile Materials in the X Frequency Band.” <i>Applied Sciences</i> 13, no. 17 (2023). <a href=\"https://doi.org/10.3390/app13179777\">https://doi.org/10.3390/app13179777</a>.","apa":"Wójcik, D., Surma, M., Magnuski, M., Blachowicz, T., Tuvshinbayar, K., Dotter, M., … Ehrmann, A. (2023). Experimental Verification of the Shielding Properties of Selected Textile Materials in the X Frequency Band. <i>Applied Sciences</i>, <i>13</i>(17). <a href=\"https://doi.org/10.3390/app13179777\">https://doi.org/10.3390/app13179777</a>","bibtex":"@article{Wójcik_Surma_Magnuski_Blachowicz_Tuvshinbayar_Dotter_Topuz_Ehrmann_2023, title={Experimental Verification of the Shielding Properties of Selected Textile Materials in the X Frequency Band}, volume={13}, DOI={<a href=\"https://doi.org/10.3390/app13179777\">10.3390/app13179777</a>}, number={179777}, journal={Applied Sciences}, publisher={MDPI AG}, author={Wójcik, Dariusz and Surma, Maciej and Magnuski, Mirosław and Blachowicz, Tomasz and Tuvshinbayar, Khorolsuren and Dotter, Marius and Topuz, Yusuf and Ehrmann, Andrea}, year={2023} }","ama":"Wójcik D, Surma M, Magnuski M, et al. Experimental Verification of the Shielding Properties of Selected Textile Materials in the X Frequency Band. <i>Applied Sciences</i>. 2023;13(17). doi:<a href=\"https://doi.org/10.3390/app13179777\">10.3390/app13179777</a>","short":"D. Wójcik, M. Surma, M. Magnuski, T. Blachowicz, K. Tuvshinbayar, M. Dotter, Y. Topuz, A. Ehrmann, Applied Sciences 13 (2023).","alphadin":"<span style=\"font-variant:small-caps;\">Wójcik, Dariusz</span> ; <span style=\"font-variant:small-caps;\">Surma, Maciej</span> ; <span style=\"font-variant:small-caps;\">Magnuski, Mirosław</span> ; <span style=\"font-variant:small-caps;\">Blachowicz, Tomasz</span> ; <span style=\"font-variant:small-caps;\">Tuvshinbayar, Khorolsuren</span> ; <span style=\"font-variant:small-caps;\">Dotter, Marius</span> ; <span style=\"font-variant:small-caps;\">Topuz, Yusuf</span> ; <span style=\"font-variant:small-caps;\">Ehrmann, Andrea</span>: Experimental Verification of the Shielding Properties of Selected Textile Materials in the X Frequency Band. In: <i>Applied Sciences</i> Bd. 13, MDPI AG (2023), Nr. 17","ieee":"D. Wójcik <i>et al.</i>, “Experimental Verification of the Shielding Properties of Selected Textile Materials in the X Frequency Band,” <i>Applied Sciences</i>, vol. 13, no. 17, 2023.","mla":"Wójcik, Dariusz, et al. “Experimental Verification of the Shielding Properties of Selected Textile Materials in the X Frequency Band.” <i>Applied Sciences</i>, vol. 13, no. 17, 9777, MDPI AG, 2023, doi:<a href=\"https://doi.org/10.3390/app13179777\">10.3390/app13179777</a>."},"main_file_link":[{"open_access":"1","url":"https://www.mdpi.com/2076-3417/13/17/9777"}],"publisher":"MDPI AG","has_accepted_license":"1","issue":"17","year":"2023","article_number":"9777","article_type":"original","quality_controlled":"1","title":"Experimental Verification of the Shielding Properties of Selected Textile Materials in the X Frequency Band","keyword":["electromagnetic interference (EMI)","shielding effectiveness","conductive coating","metallized fabric","conductive yarn","crocheted fabric","porosity","cover factor"],"file_date_updated":"2023-11-25T11:09:10Z","oa":"1"},{"publisher":"MDPI AG","tmp":{"image":"/images/cc_by.png","short":"CC BY (4.0)","name":"Creative Commons Attribution 4.0 International Public License (CC-BY 4.0)","legal_code_url":"https://creativecommons.org/licenses/by/4.0/legalcode"},"volume":11,"type":"journal_article","issue":"13","doi":"10.3390/app11135834","year":"2021","article_number":"5834","title":"Investigation of the Long-Term Stability of Different Polymers and Their Blends with PEO to Produce Gel Polymer Electrolytes for Non-Toxic Dye-Sensitized Solar Cells","oa":"1","language":[{"iso":"eng"}],"publication_identifier":{"eissn":["2076-3417"]},"user_id":"231260","publication_status":"published","date_created":"2022-10-27T07:25:56Z","publication":"Applied Sciences","date_updated":"2026-09-07T07:48:30Z","status":"public","author":[{"orcid_put_code_url":"https://api.orcid.org/v2.0/0000-0001-8398-1809/work/225959490","full_name":"Dotter, Marius","first_name":"Marius","orcid":"0000-0001-8398-1809","last_name":"Dotter","id":"242889"},{"id":"221157","full_name":"Storck, Jan Lukas","orcid_put_code_url":"https://api.orcid.org/v2.0/0000-0002-6841-8791/work/225959491","orcid":"0000-0002-6841-8791","last_name":"Storck","first_name":"Jan Lukas"},{"full_name":"Surjawidjaja, Michelle","first_name":"Michelle","last_name":"Surjawidjaja"},{"first_name":"Sonia","last_name":"Adabra","full_name":"Adabra, Sonia"},{"orcid_put_code_url":"https://api.orcid.org/v2.0/0000-0002-9099-4277/work/225959492","full_name":"Grothe, Timo","first_name":"Timo","last_name":"Grothe","orcid":"0000-0002-9099-4277","id":"221330"}],"intvolume":"        11","_id":"2169","citation":{"bibtex":"@article{Dotter_Storck_Surjawidjaja_Adabra_Grothe_2021, title={Investigation of the Long-Term Stability of Different Polymers and Their Blends with PEO to Produce Gel Polymer Electrolytes for Non-Toxic Dye-Sensitized Solar Cells}, volume={11}, DOI={<a href=\"https://doi.org/10.3390/app11135834\">10.3390/app11135834</a>}, number={135834}, journal={Applied Sciences}, publisher={MDPI AG}, author={Dotter, Marius and Storck, Jan Lukas and Surjawidjaja, Michelle and Adabra, Sonia and Grothe, Timo}, year={2021} }","ama":"Dotter M, Storck JL, Surjawidjaja M, Adabra S, Grothe T. Investigation of the Long-Term Stability of Different Polymers and Their Blends with PEO to Produce Gel Polymer Electrolytes for Non-Toxic Dye-Sensitized Solar Cells. <i>Applied Sciences</i>. 2021;11(13). doi:<a href=\"https://doi.org/10.3390/app11135834\">10.3390/app11135834</a>","alphadin":"<span style=\"font-variant:small-caps;\">Dotter, Marius</span> ; <span style=\"font-variant:small-caps;\">Storck, Jan Lukas</span> ; <span style=\"font-variant:small-caps;\">Surjawidjaja, Michelle</span> ; <span style=\"font-variant:small-caps;\">Adabra, Sonia</span> ; <span style=\"font-variant:small-caps;\">Grothe, Timo</span>: Investigation of the Long-Term Stability of Different Polymers and Their Blends with PEO to Produce Gel Polymer Electrolytes for Non-Toxic Dye-Sensitized Solar Cells. In: <i>Applied Sciences</i> Bd. 11, MDPI AG (2021), Nr. 13","ieee":"M. Dotter, J. L. Storck, M. Surjawidjaja, S. Adabra, and T. Grothe, “Investigation of the Long-Term Stability of Different Polymers and Their Blends with PEO to Produce Gel Polymer Electrolytes for Non-Toxic Dye-Sensitized Solar Cells,” <i>Applied Sciences</i>, vol. 11, no. 13, 2021.","mla":"Dotter, Marius, et al. “Investigation of the Long-Term Stability of Different Polymers and Their Blends with PEO to Produce Gel Polymer Electrolytes for Non-Toxic Dye-Sensitized Solar Cells.” <i>Applied Sciences</i>, vol. 11, no. 13, 5834, MDPI AG, 2021, doi:<a href=\"https://doi.org/10.3390/app11135834\">10.3390/app11135834</a>.","short":"M. Dotter, J.L. Storck, M. Surjawidjaja, S. Adabra, T. Grothe, Applied Sciences 11 (2021).","chicago":"Dotter, Marius, Jan Lukas Storck, Michelle Surjawidjaja, Sonia Adabra, and Timo Grothe. “Investigation of the Long-Term Stability of Different Polymers and Their Blends with PEO to Produce Gel Polymer Electrolytes for Non-Toxic Dye-Sensitized Solar Cells.” <i>Applied Sciences</i> 11, no. 13 (2021). <a href=\"https://doi.org/10.3390/app11135834\">https://doi.org/10.3390/app11135834</a>.","apa":"Dotter, M., Storck, J. L., Surjawidjaja, M., Adabra, S., &#38; Grothe, T. (2021). Investigation of the Long-Term Stability of Different Polymers and Their Blends with PEO to Produce Gel Polymer Electrolytes for Non-Toxic Dye-Sensitized Solar Cells. <i>Applied Sciences</i>, <i>11</i>(13). <a href=\"https://doi.org/10.3390/app11135834\">https://doi.org/10.3390/app11135834</a>"},"main_file_link":[{"open_access":"1"}]},{"oa":"1","quality_controlled":"1","title":"New Materials and Effects in Molecular Nanomagnets","keyword":["single-molecule magnet (SMM)","single-chain magnet (SCM)","molecular nanomagnet","molecular structure","information storage"],"year":"2021","article_number":"7510","article_type":"review","volume":11,"doi":"10.3390/app11167510","issue":"16","type":"journal_article","publisher":"MDPI AG","tmp":{"image":"/images/cc_by.png","short":"CC BY (4.0)","name":"Creative Commons Attribution 4.0 International Public License (CC-BY 4.0)","legal_code_url":"https://creativecommons.org/licenses/by/4.0/legalcode"},"main_file_link":[{"open_access":"1","url":"https://doi.org/10.3390/app11167510"}],"citation":{"apa":"Blachowicz, T., &#38; Ehrmann, A. (2021). New Materials and Effects in Molecular Nanomagnets. <i>Applied Sciences</i>, <i>11</i>(16). <a href=\"https://doi.org/10.3390/app11167510\">https://doi.org/10.3390/app11167510</a>","chicago":"Blachowicz, Tomasz, and Andrea Ehrmann. “New Materials and Effects in Molecular Nanomagnets.” <i>Applied Sciences</i> 11, no. 16 (2021). <a href=\"https://doi.org/10.3390/app11167510\">https://doi.org/10.3390/app11167510</a>.","bibtex":"@article{Blachowicz_Ehrmann_2021, title={New Materials and Effects in Molecular Nanomagnets}, volume={11}, DOI={<a href=\"https://doi.org/10.3390/app11167510\">10.3390/app11167510</a>}, number={167510}, journal={Applied Sciences}, publisher={MDPI AG}, author={Blachowicz, Tomasz and Ehrmann, Andrea}, year={2021} }","ama":"Blachowicz T, Ehrmann A. New Materials and Effects in Molecular Nanomagnets. <i>Applied Sciences</i>. 2021;11(16). doi:<a href=\"https://doi.org/10.3390/app11167510\">10.3390/app11167510</a>","alphadin":"<span style=\"font-variant:small-caps;\">Blachowicz, Tomasz</span> ; <span style=\"font-variant:small-caps;\">Ehrmann, Andrea</span>: New Materials and Effects in Molecular Nanomagnets. In: <i>Applied Sciences</i> Bd. 11, MDPI AG (2021), Nr. 16","mla":"Blachowicz, Tomasz, and Andrea Ehrmann. “New Materials and Effects in Molecular Nanomagnets.” <i>Applied Sciences</i>, vol. 11, no. 16, 7510, MDPI AG, 2021, doi:<a href=\"https://doi.org/10.3390/app11167510\">10.3390/app11167510</a>.","ieee":"T. Blachowicz and A. Ehrmann, “New Materials and Effects in Molecular Nanomagnets,” <i>Applied Sciences</i>, vol. 11, no. 16, 2021.","short":"T. Blachowicz, A. Ehrmann, Applied Sciences 11 (2021)."},"_id":"1595","intvolume":"        11","department":[{"_id":"103"}],"author":[{"first_name":"Tomasz","last_name":"Blachowicz","full_name":"Blachowicz, Tomasz"},{"orcid_put_code_url":"https://api.orcid.org/v2.0/0000-0003-0695-3905/work/105572146","full_name":"Ehrmann, Andrea","first_name":"Andrea","orcid":"0000-0003-0695-3905","last_name":"Ehrmann","id":"223776"}],"date_updated":"2026-07-10T12:57:41Z","publication":"Applied Sciences","status":"public","publication_status":"published","date_created":"2022-01-01T13:53:16Z","user_id":"261203","language":[{"iso":"eng"}],"publication_identifier":{"eissn":["2076-3417"]}},{"publisher":"MDPI AG","tmp":{"image":"/images/cc_by.png","short":"CC BY (4.0)","name":"Creative Commons Attribution 4.0 International Public License (CC-BY 4.0)","legal_code_url":"https://creativecommons.org/licenses/by/4.0/legalcode"},"volume":11,"issue":"24","type":"journal_article","doi":"10.3390/app112412036","year":"2021","article_number":"12036","article_type":"review","quality_controlled":"1","title":"Metal Additive Manufacturing for Satellites and Rockets","keyword":["powder bed fusion","microsatellites","thrusters","structural components","space flight","aerospace","aeronautics"],"oa":"1","language":[{"iso":"eng"}],"publication_identifier":{"eissn":["2076-3417"]},"user_id":"261203","publication_status":"published","date_created":"2022-01-01T12:45:04Z","date_updated":"2026-06-10T11:25:37Z","publication":"Applied Sciences","status":"public","author":[{"full_name":"Blachowicz, Tomasz","last_name":"Blachowicz","first_name":"Tomasz"},{"full_name":"Ehrmann, Guido","first_name":"Guido","last_name":"Ehrmann"},{"id":"223776","orcid_put_code_url":"https://api.orcid.org/v2.0/0000-0003-0695-3905/work/105572402","full_name":"Ehrmann, Andrea","first_name":"Andrea","orcid":"0000-0003-0695-3905","last_name":"Ehrmann"}],"department":[{"_id":"103"}],"_id":"1577","intvolume":"        11","citation":{"chicago":"Blachowicz, Tomasz, Guido Ehrmann, and Andrea Ehrmann. “Metal Additive Manufacturing for Satellites and Rockets.” <i>Applied Sciences</i> 11, no. 24 (2021). <a href=\"https://doi.org/10.3390/app112412036\">https://doi.org/10.3390/app112412036</a>.","apa":"Blachowicz, T., Ehrmann, G., &#38; Ehrmann, A. (2021). Metal Additive Manufacturing for Satellites and Rockets. <i>Applied Sciences</i>, <i>11</i>(24). <a href=\"https://doi.org/10.3390/app112412036\">https://doi.org/10.3390/app112412036</a>","mla":"Blachowicz, Tomasz, et al. “Metal Additive Manufacturing for Satellites and Rockets.” <i>Applied Sciences</i>, vol. 11, no. 24, 12036, MDPI AG, 2021, doi:<a href=\"https://doi.org/10.3390/app112412036\">10.3390/app112412036</a>.","ieee":"T. Blachowicz, G. Ehrmann, and A. Ehrmann, “Metal Additive Manufacturing for Satellites and Rockets,” <i>Applied Sciences</i>, vol. 11, no. 24, 2021.","alphadin":"<span style=\"font-variant:small-caps;\">Blachowicz, Tomasz</span> ; <span style=\"font-variant:small-caps;\">Ehrmann, Guido</span> ; <span style=\"font-variant:small-caps;\">Ehrmann, Andrea</span>: Metal Additive Manufacturing for Satellites and Rockets. In: <i>Applied Sciences</i> Bd. 11, MDPI AG (2021), Nr. 24","short":"T. Blachowicz, G. Ehrmann, A. Ehrmann, Applied Sciences 11 (2021).","ama":"Blachowicz T, Ehrmann G, Ehrmann A. Metal Additive Manufacturing for Satellites and Rockets. <i>Applied Sciences</i>. 2021;11(24). doi:<a href=\"https://doi.org/10.3390/app112412036\">10.3390/app112412036</a>","bibtex":"@article{Blachowicz_Ehrmann_Ehrmann_2021, title={Metal Additive Manufacturing for Satellites and Rockets}, volume={11}, DOI={<a href=\"https://doi.org/10.3390/app112412036\">10.3390/app112412036</a>}, number={2412036}, journal={Applied Sciences}, publisher={MDPI AG}, author={Blachowicz, Tomasz and Ehrmann, Guido and Ehrmann, Andrea}, year={2021} }"},"main_file_link":[{"url":"https://doi.org/10.3390/app112412036","open_access":"1"}]},{"date_updated":"2026-06-08T12:56:53Z","publication":"Applied Sciences","status":"public","publication_status":"published","date_created":"2022-01-01T13:57:36Z","user_id":"33976","language":[{"iso":"eng"}],"publication_identifier":{"eissn":["2076-3417"]},"main_file_link":[{"open_access":"1","url":"https://doi.org/10.3390/app11156929"}],"intvolume":"        11","_id":"1598","citation":{"apa":"Tanzli, E., &#38; Ehrmann, A. (2021). Electrospun Nanofibrous Membranes for Tissue Engineering and Cell Growth. <i>Applied Sciences</i>, <i>11</i>(15). <a href=\"https://doi.org/10.3390/app11156929\">https://doi.org/10.3390/app11156929</a>","chicago":"Tanzli, Ewin, and Andrea Ehrmann. “Electrospun Nanofibrous Membranes for Tissue Engineering and Cell Growth.” <i>Applied Sciences</i> 11, no. 15 (2021). <a href=\"https://doi.org/10.3390/app11156929\">https://doi.org/10.3390/app11156929</a>.","ieee":"E. Tanzli and A. Ehrmann, “Electrospun Nanofibrous Membranes for Tissue Engineering and Cell Growth,” <i>Applied Sciences</i>, vol. 11, no. 15, 2021.","mla":"Tanzli, Ewin, and Andrea Ehrmann. “Electrospun Nanofibrous Membranes for Tissue Engineering and Cell Growth.” <i>Applied Sciences</i>, vol. 11, no. 15, 6929, MDPI AG, 2021, doi:<a href=\"https://doi.org/10.3390/app11156929\">10.3390/app11156929</a>.","alphadin":"<span style=\"font-variant:small-caps;\">Tanzli, Ewin</span> ; <span style=\"font-variant:small-caps;\">Ehrmann, Andrea</span>: Electrospun Nanofibrous Membranes for Tissue Engineering and Cell Growth. In: <i>Applied Sciences</i> Bd. 11, MDPI AG (2021), Nr. 15","short":"E. Tanzli, A. Ehrmann, Applied Sciences 11 (2021).","ama":"Tanzli E, Ehrmann A. Electrospun Nanofibrous Membranes for Tissue Engineering and Cell Growth. <i>Applied Sciences</i>. 2021;11(15). doi:<a href=\"https://doi.org/10.3390/app11156929\">10.3390/app11156929</a>","bibtex":"@article{Tanzli_Ehrmann_2021, title={Electrospun Nanofibrous Membranes for Tissue Engineering and Cell Growth}, volume={11}, DOI={<a href=\"https://doi.org/10.3390/app11156929\">10.3390/app11156929</a>}, number={156929}, journal={Applied Sciences}, publisher={MDPI AG}, author={Tanzli, Ewin and Ehrmann, Andrea}, year={2021} }"},"department":[{"_id":"103"}],"author":[{"last_name":"Tanzli","first_name":"Ewin","full_name":"Tanzli, Ewin"},{"first_name":"Andrea","last_name":"Ehrmann","orcid":"0000-0003-0695-3905","orcid_put_code_url":"https://api.orcid.org/v2.0/0000-0003-0695-3905/work/105572124","full_name":"Ehrmann, Andrea","id":"223776"}],"year":"2021","article_type":"review","article_number":"6929","volume":11,"type":"journal_article","doi":"10.3390/app11156929","issue":"15","publisher":"MDPI AG","tmp":{"image":"/images/cc_by.png","short":"CC BY (4.0)","name":"Creative Commons Attribution 4.0 International Public License (CC-BY 4.0)","legal_code_url":"https://creativecommons.org/licenses/by/4.0/legalcode"},"oa":"1","quality_controlled":"1","title":"Electrospun Nanofibrous Membranes for Tissue Engineering and Cell Growth","keyword":["cell growth","electrospinning","nanofibrous membrane","adherent cells","biomedicine"]},{"publication":"Applied Sciences","date_updated":"2026-03-17T15:28:23Z","status":"public","publication_status":"published","date_created":"2022-01-01T14:26:57Z","user_id":"220548","language":[{"iso":"eng"}],"publication_identifier":{"eissn":["2076-3417"]},"main_file_link":[{"open_access":"1","url":"https://doi.org/10.3390/app11052436"}],"citation":{"chicago":"Blachowicz, Tomasz, Krzysztof Domino, Michał Koruszowic, Jacek Grzybowski, Tobias Böhm, and Andrea Ehrmann. “Statistical Analysis of Nanofiber Mat AFM Images by Gray-Scale-Resolved Hurst Exponent Distributions.” <i>Applied Sciences</i> 11, no. 5 (2021). <a href=\"https://doi.org/10.3390/app11052436\">https://doi.org/10.3390/app11052436</a>.","apa":"Blachowicz, T., Domino, K., Koruszowic, M., Grzybowski, J., Böhm, T., &#38; Ehrmann, A. (2021). Statistical Analysis of Nanofiber Mat AFM Images by Gray-Scale-Resolved Hurst Exponent Distributions. <i>Applied Sciences</i>, <i>11</i>(5). <a href=\"https://doi.org/10.3390/app11052436\">https://doi.org/10.3390/app11052436</a>","bibtex":"@article{Blachowicz_Domino_Koruszowic_Grzybowski_Böhm_Ehrmann_2021, title={Statistical Analysis of Nanofiber Mat AFM Images by Gray-Scale-Resolved Hurst Exponent Distributions}, volume={11}, DOI={<a href=\"https://doi.org/10.3390/app11052436\">10.3390/app11052436</a>}, number={52436}, journal={Applied Sciences}, publisher={MDPI AG}, author={Blachowicz, Tomasz and Domino, Krzysztof and Koruszowic, Michał and Grzybowski, Jacek and Böhm, Tobias and Ehrmann, Andrea}, year={2021} }","ama":"Blachowicz T, Domino K, Koruszowic M, Grzybowski J, Böhm T, Ehrmann A. Statistical Analysis of Nanofiber Mat AFM Images by Gray-Scale-Resolved Hurst Exponent Distributions. <i>Applied Sciences</i>. 2021;11(5). doi:<a href=\"https://doi.org/10.3390/app11052436\">10.3390/app11052436</a>","alphadin":"<span style=\"font-variant:small-caps;\">Blachowicz, Tomasz</span> ; <span style=\"font-variant:small-caps;\">Domino, Krzysztof</span> ; <span style=\"font-variant:small-caps;\">Koruszowic, Michał</span> ; <span style=\"font-variant:small-caps;\">Grzybowski, Jacek</span> ; <span style=\"font-variant:small-caps;\">Böhm, Tobias</span> ; <span style=\"font-variant:small-caps;\">Ehrmann, Andrea</span>: Statistical Analysis of Nanofiber Mat AFM Images by Gray-Scale-Resolved Hurst Exponent Distributions. In: <i>Applied Sciences</i> Bd. 11, MDPI AG (2021), Nr. 5","mla":"Blachowicz, Tomasz, et al. “Statistical Analysis of Nanofiber Mat AFM Images by Gray-Scale-Resolved Hurst Exponent Distributions.” <i>Applied Sciences</i>, vol. 11, no. 5, 2436, MDPI AG, 2021, doi:<a href=\"https://doi.org/10.3390/app11052436\">10.3390/app11052436</a>.","ieee":"T. Blachowicz, K. Domino, M. Koruszowic, J. Grzybowski, T. Böhm, and A. Ehrmann, “Statistical Analysis of Nanofiber Mat AFM Images by Gray-Scale-Resolved Hurst Exponent Distributions,” <i>Applied Sciences</i>, vol. 11, no. 5, 2021.","short":"T. Blachowicz, K. Domino, M. Koruszowic, J. Grzybowski, T. Böhm, A. Ehrmann, Applied Sciences 11 (2021)."},"_id":"1615","intvolume":"        11","department":[{"_id":"103"}],"author":[{"last_name":"Blachowicz","first_name":"Tomasz","full_name":"Blachowicz, Tomasz"},{"full_name":"Domino, Krzysztof","first_name":"Krzysztof","last_name":"Domino"},{"first_name":"Michał","last_name":"Koruszowic","full_name":"Koruszowic, Michał"},{"first_name":"Jacek","last_name":"Grzybowski","full_name":"Grzybowski, Jacek"},{"first_name":"Tobias","last_name":"Böhm","full_name":"Böhm, Tobias"},{"id":"223776","orcid":"0000-0003-0695-3905","last_name":"Ehrmann","first_name":"Andrea","full_name":"Ehrmann, Andrea","orcid_put_code_url":"https://api.orcid.org/v2.0/0000-0003-0695-3905/work/105571808"}],"year":"2021","article_number":"2436","article_type":"original","volume":11,"type":"journal_article","doi":"10.3390/app11052436","issue":"5","publisher":"MDPI AG","tmp":{"image":"/images/cc_by.png","short":"CC BY (4.0)","name":"Creative Commons Attribution 4.0 International Public License (CC-BY 4.0)","legal_code_url":"https://creativecommons.org/licenses/by/4.0/legalcode"},"oa":"1","quality_controlled":"1","title":"Statistical Analysis of Nanofiber Mat AFM Images by Gray-Scale-Resolved Hurst Exponent Distributions","keyword":["Hurst exponent distribution","random walk","atomic force microscopy (AFM)","electrospinning","poly(acrylonitrile) (PAN)"]}]
