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Biorad Medisys

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10+ Sayatva Interview Questions and Answers

Updated 7 Feb 2025

Q1. If your target is 100in ship, what will you do if it becomes 90?

Ans.

I would assess the situation to determine the cause of the deviation and take corrective actions to bring the target back to 100.

  • Investigate the reason for the deviation from the target

  • Identify any external factors affecting the target

  • Implement corrective measures to bring the target back to 100

  • Monitor the progress closely to ensure the target is achieved

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Q2. What to do if the target is 100 in the shift and it becomes 90?

Ans.

Investigate the root cause of the deviation and take corrective actions to ensure the target is met in future shifts.

  • Analyze the production process to identify any bottlenecks or inefficiencies causing the deviation.

  • Check if there were any machine breakdowns or maintenance issues affecting the production output.

  • Review the raw material quality and availability to ensure they meet the required standards.

  • Evaluate the performance of the workforce to see if additional training or ...read more

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Q3. shift 100 is the target, what will you do if you get 90?

Ans.

I will analyze my performance, identify areas for improvement, and create a plan to reach the target of 100.

  • Analyze the reasons for not reaching the target score of 100

  • Identify areas for improvement such as time management, study habits, or understanding of the material

  • Create a plan with specific goals and actions to improve performance

  • Seek feedback from teachers or mentors for guidance and support

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Q4. What to do if there is a defect in the product

Ans.

If there is a defect in the product, it is important to identify the root cause, rectify the issue, and implement preventive measures.

  • Identify the root cause of the defect through thorough analysis and testing

  • Rectify the issue by repairing or replacing the defective parts

  • Implement preventive measures to avoid similar defects in the future, such as improving quality control processes or training staff

  • Communicate with relevant stakeholders about the defect and the steps taken t...read more

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Q5. What if the worker is not fully aware of the work?

Ans.

The worker should be provided with proper training and guidance to ensure awareness of the work.

  • Provide comprehensive training sessions for the worker to understand the tasks and responsibilities.

  • Assign a mentor or supervisor to guide the worker through the work processes.

  • Encourage open communication and feedback to address any confusion or lack of understanding.

  • Regularly assess the worker's progress and provide additional support if needed.

  • Implement safety protocols to preve...read more

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Q6. What will happen if there is no work planning?

Ans.

Without work planning, there will be chaos, inefficiency, missed deadlines, and increased costs.

  • Chaos and confusion in the workflow

  • Inefficiency in task execution

  • Missed deadlines and project delays

  • Increased costs due to rework or resource wastage

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Q7. What to do if there is Defect in the product

Ans.

If there is a defect in the product, it is important to identify the root cause, rectify the issue, and implement preventive measures.

  • Identify the root cause of the defect through thorough analysis

  • Rectify the issue by repairing or replacing the defective part

  • Implement preventive measures to avoid similar defects in the future

  • Conduct quality checks at various stages of production to ensure defect-free products

  • Engage in continuous improvement processes to enhance product qualit...read more

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Q8. What if there is no work planning?

Ans.

Work planning is essential for organizing tasks, setting priorities, and ensuring efficiency.

  • Without work planning, tasks may be disorganized and priorities may not be clear.

  • Efficiency may decrease as time may be wasted on unnecessary tasks or tasks may be completed out of order.

  • Work planning helps in setting goals, allocating resources effectively, and tracking progress.

  • For example, in a manufacturing plant, without work planning, production schedules may be disrupted and le...read more

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Q9. What if there is no work process seat?

Ans.

In the absence of a work process seat, alternative seating arrangements or standing workstations can be considered.

  • Consider using alternative seating arrangements such as stools or standing desks.

  • Implement ergonomic principles to ensure comfort and efficiency for workers.

  • Provide adjustable seating options to accommodate different preferences and needs.

  • Encourage regular breaks and movement to prevent fatigue and discomfort.

  • Consult with occupational health and safety experts fo...read more

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Q10. How to determine the profile tolerance of line or surface ?

Ans.

Profile tolerance of line or surface can be determined using geometric dimensioning and tolerancing (GD&T) principles.

  • Profile tolerance defines a uniform boundary around a feature within which the true profile must lie.

  • It is specified using a tolerance zone that controls the form, size, and orientation of the feature.

  • Profile tolerance can be applied to both lines and surfaces in engineering drawings.

  • GD&T symbols like profile of a line (⌒) or profile of a surface (⌓) are used ...read more

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Q11. GD & T full form? what concentricity? How position tolerance determines?

Ans.

GD&T stands for Geometric Dimensioning and Tolerancing. Concentricity is a type of tolerance that controls the central axis of a cylindrical feature. Position tolerance determines the allowable deviation of a feature from its true position.

  • GD&T stands for Geometric Dimensioning and Tolerancing

  • Concentricity is a tolerance that controls the central axis of a cylindrical feature

  • Position tolerance determines allowable deviation of a feature from its true position

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Q12. Mathematics addition and substraction of given big complex number.

Ans.

Performing addition and subtraction of complex numbers involves adding or subtracting the real and imaginary parts separately.

  • To add two complex numbers, add their real parts and imaginary parts separately.

  • To subtract two complex numbers, subtract their real parts and imaginary parts separately.

  • Example: (3 + 2i) + (1 - 4i) = (3 + 1) + (2 - 4)i = 4 - 2i

  • Example: (5 - 3i) - (2 + 7i) = (5 - 2) + (-3 - 7)i = 3 - 10i

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Q13. What is your point of view on manufacturing field

Ans.

The manufacturing field is a dynamic and crucial industry that plays a vital role in the economy.

  • Manufacturing involves the production of goods through various processes and technologies.

  • It requires a combination of technical skills, problem-solving abilities, and attention to detail.

  • Quality control and process improvement are essential for ensuring efficiency and customer satisfaction.

  • Continuous improvement methodologies like Six Sigma and Lean Manufacturing are commonly use...read more

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Q14. How can shrinkage in PU tube be arrested?

Ans.

Shrinkage in PU tube can be arrested by controlling the temperature and pressure during the manufacturing process.

  • Maintain proper temperature and pressure during the manufacturing process

  • Use high-quality raw materials

  • Ensure uniform wall thickness of the tube

  • Avoid overstretching or bending of the tube during installation

  • Regularly inspect and maintain the equipment used in the manufacturing process

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Q15. How the braided medical tube is manufactured?

Ans.

Braided medical tubes are manufactured by braiding multiple strands of material together.

  • The strands can be made of various materials such as nylon, polyester, or metal.

  • The braiding process creates a flexible and strong tube that can be used for medical applications such as catheters or stents.

  • The diameter and length of the tube can be customized based on the specific medical application.

  • Quality control is important to ensure the tube meets medical standards and is free of de...read more

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Q16. How would you handle the whole software product development of a medical device

Ans.

I would handle the whole software product development of a medical device by following strict regulatory guidelines and collaborating with cross-functional teams.

  • Understand regulatory requirements such as FDA guidelines for medical device software development

  • Collaborate with cross-functional teams including hardware engineers, QA testers, and regulatory affairs specialists

  • Follow a structured development process with clear milestones and documentation

  • Conduct thorough testing a...read more

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Q17. GDandT explain about it briefly

Ans.

GD&T stands for Geometric Dimensioning and Tolerancing, a system used to define and communicate engineering tolerances.

  • GD&T is a language used to describe the size, shape, orientation, and location of features on a part or assembly.

  • It uses symbols and annotations to communicate design requirements and ensure parts are manufactured to the correct specifications.

  • GD&T is important for ensuring parts fit together correctly and function as intended.

  • Examples of GD&T symbols include...read more

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Q18. GD&T solidworks product development phases

Ans.

GD&T (Geometric Dimensioning and Tolerancing) is a set of symbols and techniques used in SolidWorks product development phases.

  • GD&T is used to define and communicate the geometric requirements of a part or assembly.

  • It helps ensure that the parts fit together correctly and function properly.

  • GD&T symbols include position, concentricity, perpendicularity, and more.

  • SolidWorks product development phases involve concept design, detailed design, prototyping, testing, and manufacturi...read more

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Q19. VMC and CNC different between

Ans.

VMC (Vertical Machining Center) is a type of CNC (Computer Numerical Control) machine used for milling operations.

  • VMC is a type of CNC machine specifically designed for vertical milling operations

  • CNC machines can include various types such as VMC, HMC (Horizontal Machining Center), etc.

  • Both VMC and CNC machines use computer programs to control the cutting tools and workpiece movement

  • VMC machines are commonly used for producing complex parts with high precision

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