Ushbu maqolada ta’lim tizimi jarayonidagi STEAM texnologiyasi dasturi haqida ma’lumotlar yoritilgan. Bundan tashqari, boshlang’ich sinflarda STEAM yondashuvi asosida integratsiyalashgan ta’limning afzalliklari va erishiladigan yutuqlari haqida mulohazalar yuritilgan. Shuningdek, zamonaviy ta’limda STEAM yondashuvi orqali o’quvchilarning amaliy bilim va ko’nikmalarini rivojlantirish, ta’limni hayot bilan bog’lash imkoniyatlari ochib beriladi.
Ushbu maqolada biofarmatsevtika sohasida yangi avlod dorivor moddalarni yaratishda polimer asosli materiallardan foydalanish asoslari yoritiladi. Polimerlarning farmatsevtik faol moddalar tashuvchisi sifatidagi afzalliklari — ya’ni ularning biokompatibiligi, biodegradatsiyalanuvchanligi, dori moddasining organizmga nazoratli va uzoq muddatli yetkazilishini ta’minlash kabi xususiyatlari chuqur tahlil qilinadi. Maqolada tabiiy va sintetik polimerlar asosida yaratilgan dorivor tizimlarning sintezi, tarkibi, farmakokinetik xususiyatlari hamda ularning davo samaradorligini oshirishdagi roli muhokama qilinadi. Shuningdek, polimer asosli dori shakllarining hozirgi zamon tibbiyotida qo‘llanilishi, ularni ishlab chiqishdagi dolzarb yo‘nalishlar va muammolar tahlil qilinadi. Xususan, nanostrukturalar, mikrokapsulalar, gidrogellar va plyonkalar ko‘rinishidagi polimer bazasidagi dori tashuvchi tizimlar hamda ularning sintezida qo‘llaniladigan kimyoviy va biologik usullar ko‘rib chiqiladi.
Maqalada Qaraqalpaq xalıq dóretpeleri xalıqtıń tariyxı, social jaǵdayı, tariyxın kórsetiwi, xalıq arasında saqlanıp qalǵan bul muzıkalıq miyras xalıq ushın milliy mádeniy miyras, kózi ázzi oqıwshılar ushın ruwxıy tarbiyalıq ahmiyetke iye ekenligi haqqında bayan etiledi.
This study provides a comprehensive analysis of nanotechnology-based medical implants, emphasizing their transformative impact on modern biomedical engineering and clinical practice. The integration of nanomaterials and nanoscale surface modifications into implant design has demonstrated significant improvements in biocompatibility, mechanical strength, and functional longevity, thereby enhancing patient outcomes and reducing postoperative complications. The research systematically reviews current advancements in nanocoatings, nanoscale drug delivery mechanisms, and biomimetic surface engineering, which collectively contribute to enhanced osseointegration and antimicrobial properties. Furthermore, the study critically addresses existing challenges, including biotoxicity risks, fabrication scalability, and regulatory hurdles that impede widespread clinical adoption. By elucidating the interdisciplinary approaches underpinning the development of nanotechnology-enabled implants, this work highlights the potential to revolutionize therapeutic strategies and implantable device performance.