Harnessing Arduino-Based Labs for Monitoring and Optimizing Biological Processes

  • Kuchkorov Akhlidin Mirzokhid ugli Fergana State University, Fergana, Uzbekistan
  • Yoqubov Abutolib Ahmadali ugli Fergana State University, Fergana, Uzbekistan
Keywords: Arduino, biological processes, monitoring, optimization, sensors, calibration, power supply

Abstract

The utilization of Arduino-based laboratories has emerged as a valuable tool for monitoring and controlling environmental factors in biological processes. This article presents a comprehensive methodology for setting up an Arduino-based laboratory to monitor temperature, pH, and oxygen levels. The methodology includes sensor selection, calibration techniques, power supply considerations, data acquisition and storage methods, environmental factor management, user interface design, and safety considerations. By following these methods, researchers and educators can collect real-time data, analyze trends, and gain valuable insights into various biological phenomena. The successful implementation of the Arduino-based laboratory enables advancements in biotechnology research and education, optimizing biological processes and enhancing our understanding of complex biological systems.

References

1. Mirzoxid o‘g, Q. C. A., & Xoshimovich, K. B. (2022). HARORAT VA NAMLIKNI ARDUINO PLATFORMASIDA BOSHQARISHNI O’RGANISH. IJODKOR O'QITUVCHI, 2(20), 175-178.
2. Ergashev, E., & Kuchkorov, A. (2023, June). SALIVA CRYSTALLIZATION ANALYSIS: REVOLUTIONIZING DIAGNOSTIC MEDICINE. In International Conference on Management, Economics & Social Science (Vol. 1, No. 3, pp. 60-63).
3. Onarqulov, K., & Qochqorov, A. (2022). ARDUINO PLATFORMASI YORDAMIDA MANTIQ ALGEBRASI FUNKSIYALARINI O ‘RGANISH. Science and innovation, 1(A4), 128-133.
4. Каримов, Б. Х. (2020). Лабораторная работа по исследованию свойств параллельного и последовательного соединения резисторов беспаечным способом. Молодой ученый, (15), 113-117.
5. Kuchkorov, A. M. U. (2023). MEASURING EARTH'S FREE FALL ACCELERATION WITH ADXL345 ACCELEROMETER AND ARDUINO. Oriental renaissance: Innovative, educational, natural and social sciences, 3(4-2), 589-595.
6. Kuchkorov, A. M. U. (2023). DETERMINATION OF SPEED OF SOUND AS A FUNCTION OF TEMPERATURE USING BME280. Oriental renaissance: Innovative, educational, natural and social sciences, 3(4-2), 550-555.
7. Onarqulov, K., & Qo'chqorov, A. (2022). LEARNING THE FUNCTIONS OF ALGEBRA OF LOGIC USING THE ARDUINO PLATFORM. Science and Innovation, 1(4), 128-133.
8. Мамаюсупова, А., Каримов, Б. Х., & Мирзажонов, З. (2019). БИОГАЗ И БИОМАССА. Точная наука, (40), 13-17.
9. Mirzakarim o’g’li, M. M., & Axmadali o’g’li, Y. A. (2022). MATBUOT KONFERENSIYASI DARSI MISOLIDA G’O’ZA GENETIKASI VA SELEKSIYASI MAVZUSI DOIRASIDA O’QUVCHILARNI BILIM VA KO’NIKMALARINI SHAKLLANTIRISH USLUBLARI. Новости образования: исследование в XXI веке, 1(4), 510-514.
10. Холиков, М. Й., & Маърупов, А. А. (2020). СМЕШАННЫЕ ИНФЕКЦИИ И ИХ ПРОФИЛАКТИКА. In НАУКА И ОБРАЗОВАНИЕ: СОХРАНЯЯ ПРОШЛОЕ, СОЗДАЁМ БУДУЩЕЕ (pp. 223-225).
11. Mo’minjon, M., & Abutolib, Y. (2023). BALQIQCHILIK HOVUZLARINING GIDROKIMYOVIY TAHLILI. World of Science, 6(4), 192-196.
12. Abutolib, Y., & Mo’minjon, M. (2023). TURLI SUV HAVZALARIDAGI FITOPLANKTONNING TUR TARKIBI. Scientific Impulse, 1(9), 110-118.
13. Mirzakarim o’g’li, M. M., & Axmadali o’g’li, Y. A. (2022). BIOLOGIYA DARSLARIDA AXBOROT TEXNOLOGIYALARIDAN FOYDALANISH. O'ZBEKISTONDA FANLARARO INNOVATSIYALAR VA ILMIY TADQIQOTLAR JURNALI, 2(13), 692-696.
Published
2023-06-30
How to Cite
Kuchkorov Akhlidin Mirzokhid ugli, & Yoqubov Abutolib Ahmadali ugli. (2023). Harnessing Arduino-Based Labs for Monitoring and Optimizing Biological Processes. International Journal on Orange Technologies, 5(6), 141-146. Retrieved from https://journals.researchparks.org/index.php/IJOT/article/view/4568