IIT Patna Chemistry JRF Job – Applications Invited
IIT Patna Chemistry JRF Job – Applications Invited. IIT Patna Chemistry Junior Research Fellow Opportunity – Applications Invited. IIT Patna Chemistry Jobs. IIT Patna JRF Job. Interested and eligible applicants can check out all of the details on the same below:
Job Title: Junior Research Fellow(JRF)
Institute: Indian Institute of Technology Patna
Project Title: Mg2TiO4 Based Microwave Ceramics: Correlations of Dielectric Properties with Structure, Phase and Sintering Parameters
No of Post: 01
Roles & Responsibilities of Latest Chemistry Job:
- Operate in highest ethical manner in compliance to ExxonMobil’s safety, control, quality expectations
- Conduct laboratory testing activities as per international standards / ExxonMobil’s in house methods
- Maintain laboratory testing equipment’s in healthy state by managing routine calibration, maintenance or other quality control parameters.
- Collaborate within team, cross functional team, demonstrate GI behaviors
- Demonstrate ownership, add value to business through the data generated.
Qualification & Experience for Latest Chemistry Job at IIT Patna:
- B.S 4-year programme/ Integrated B.S.-M.S./M.Sc./B.E./B.Tech or equivalent degree, with 55% marks
and passing of NET-LS/GATE test
- 60 % (or higher) in 10th and 12th
- Bachelor’s degree level in the following disciplines: Metallurgical Engineering, Ceramic Engineering/ Technology, Polymer Science/ Chemistry
/ Technology, Plastics Science / Technology, Rubber Science/ Technology, Mechanical Engineering, Chemical Engineering / Technology, Nanotechnology, Materials Science / Engineering, Physics and Chemistry with a CGPA 6.5 or 65 %(or higher) and valid GATE (preferably with paper code PH, CY and XE) or NET score
- Master’s degree level in the following disciplines: Metallurgical Engineering, Ceramic Engineering/Technology, Polymer Science / Chemistry/ Technology, Plastics Science /Technology, Rubber Science/ Technology, Mechanical Engineering, Chemical Engineering / Technology, Nanotechnology, Materials Science / Engineering, Physics, Chemistry, Applied Physics, Solid state Physics/ Technology, Solid State Materials, Solid State Electronic Materials, Applied Chemistry, Nanotechnology, Materials Science/Engineering, Steel Technology, Process Metallurgy, Welding Engineering, Industrial
Metallurgy, Surface Science/Engineering, Mechatronics Engineering, Industrial Engineering, Industrial and Production Engineering, Foundry and Forge Technology with a CGPA of 6.5 or 60 %(or higher) marks for candidate with M.Tech degree, and CGPA 7.5 or 70%(or higher) for M.Sc. candidate with valid GATE(preferably with paper code PH, CY and XE) or NET score
Fellowship: Rs.31000/- per month for first two years + HRA (as applicable) and Rs.35000/- per month for the third year + HRA (as applicable)
Duration of Post: 36 Months
Age Limit: The upper age limit for JRF shall be 28 as on the day on which the application is made. A small relaxation in age limit may be considered, in the case of applicants who are suitably qualified and experienced, on the recommendations of the selection committee. The upper age limit is relax able up to 5 years in the case of candidates belonging to scheduled castes/ tribes/OBC, women and physically handicapped candidates.
Note: Interested candidates may send duly filled and scanned copy of the application form along with supporting documents (resume, marksheets, certificates etc) to Dr. Anirban Chowdhury, (Email:[email protected]) by email on/before 15th September, 2023. Shortlisted candidates (based on their applications) will be intimated for WRITTEN TEST followed by INTERVIEW. The selected candidates would be asked to choose between offline walk-in (no travel allowances (TA) would be provided)and online interview mode. For any query, contact Investigator: Dr. Anirban Chowdhury, Dept. of Metallurgical and Materials Engineering, IIT Patna, Email: [email protected] (Tel.: 0612-3028183).
Latest Chemistry Job at IIT Patna. Here are Some Possible Interview Questions and Answers:
1. Can you provide an overview of the research project and its significance?
Answer: The project focuses on Mg2TiO4-based microwave ceramics, exploring the relationships between their dielectric properties and various factors such as structure, phase, and sintering parameters. This is important because these materials have applications in the development of microwave devices, communication systems, and radar technology. By understanding these correlations, we aim to optimize the material’s properties for specific applications, leading to advancements in telecommunications and related fields.
2. What specific role will you play as a Junior Research Fellow in this project?
Answer: As a Junior Research Fellow, my primary responsibilities include conducting experiments, characterizing materials, collecting data on dielectric properties, and analyzing the results. I will also contribute to literature reviews, assist in designing experiments, and collaborate with other team members to achieve project objectives.
3. Can you explain the significance of Mg2TiO4-based ceramics in microwave applications?
Answer: Mg2TiO4-based ceramics are known for their high dielectric constant, low loss tangent, and excellent temperature stability, making them ideal candidates for microwave applications. They are used in various components of microwave devices, such as resonators, filters, and antennas. Understanding and optimizing their properties is crucial for improving the efficiency and performance of these devices.
4. What are the key factors that can influence the dielectric properties of ceramics in this project?
Answer: Several factors can influence the dielectric properties of ceramics in this project. These include the composition of the ceramic material, its crystal structure, the presence of impurities, sintering conditions (temperature, time, atmosphere), and post-processing treatments. By systematically studying these factors, we can gain insights into how to enhance the dielectric properties for specific applications.
5. What experimental techniques and equipment will you use in this research project?
Answer: We will use a range of experimental techniques and equipment, including X-ray diffraction (XRD) for structural analysis, Scanning Electron Microscopy (SEM) for microstructural characterization, impedance spectroscopy for dielectric measurements, and various sintering furnaces for material processing. These tools will help us gather comprehensive data for our analysis.
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