CMR Green Technologies
Prologic Web Solutions Interview Questions and Answers
Q1. How can control fuel consumption, manpower, charging time reduce and rejection controlled?
Fuel consumption, manpower, charging time, and rejection can be controlled through proper planning and implementation of efficient processes.
Implementing a fuel-efficient driving policy and regular maintenance of vehicles can reduce fuel consumption.
Proper scheduling and allocation of manpower can optimize productivity and reduce unnecessary labor costs.
Investing in fast charging technology and optimizing charging schedules can reduce charging time.
Implementing quality contro...read more
Q2. How to fuel consumption control?
Fuel consumption control can be achieved through proper planning, monitoring, and maintenance.
Develop a fuel consumption plan based on historical data and projected usage
Monitor fuel usage regularly and identify any deviations from the plan
Implement maintenance programs to ensure vehicles and equipment are operating efficiently
Train drivers and operators on fuel-efficient driving techniques
Consider alternative fuel sources or technologies
Use technology such as GPS tracking an...read more
Q3. How to control manpower excess?
To control manpower excess, proper planning, forecasting, and monitoring are necessary.
Analyze production data to determine the required workforce
Implement flexible work arrangements like part-time or temporary employment
Cross-train employees to perform multiple tasks
Monitor employee attendance and productivity
Implement a hiring freeze or reduce overtime
Consider outsourcing or automation as alternatives
Communicate with employees and involve them in the decision-making process
Q4. How to find deflection of conical bodies acting with axial load?
To find deflection of conical bodies acting with axial load, use the formula for deflection of a cone under axial load.
Use the formula for deflection of a cone under axial load: delta = (P*L)/(E*A)
P is the axial load, L is the length of the cone, E is the modulus of elasticity, and A is the cross-sectional area of the cone
The deflection will be greater at the smaller end of the cone
Consider the material properties of the cone when calculating the modulus of elasticity
Ensure t...read more
Q5. How to reduce rejection?
To reduce rejection, focus on improving quality control measures and training employees.
Implement a thorough quality control process to catch defects early on
Train employees on proper production techniques and quality standards
Regularly review and analyze rejection data to identify patterns and areas for improvement
Collaborate with suppliers to ensure they are meeting quality standards
Invest in new technology or equipment to improve production efficiency and reduce errors
Q6. How to dross excess control?
Dross excess control can be achieved by implementing proper process controls and regular maintenance.
Regularly inspect and clean equipment to prevent buildup of dross
Implement process controls to minimize dross formation
Train employees on proper handling and disposal of dross
Monitor and analyze production data to identify areas for improvement
Collaborate with suppliers to ensure quality materials with minimal dross
Utilize technology such as sensors and automation to reduce dr...read more
Q7. Difference between flywheel and governor?
Flywheel stores energy while governor regulates speed.
Flywheel is a mechanical device used to store rotational energy.
Governor is a device used to regulate the speed of an engine or machine.
Flywheel is used to maintain the speed of an engine during the power stroke.
Governor is used to control the speed of an engine by adjusting the fuel supply or ignition timing.
Flywheel is commonly used in machines like steam engines, turbines, and internal combustion engines.
Governor is com...read more
Q8. What is Buckingham pi theorem?
Buckingham pi theorem is a method to determine the number of dimensionless parameters in a physical problem.
It is used in dimensional analysis.
It helps to reduce the number of variables in a problem.
It states that if a physical problem involves n variables and k fundamental dimensions, then the problem can be expressed in terms of n-k dimensionless parameters.
For example, in fluid mechanics, the Reynolds number is a dimensionless parameter that relates the inertial forces to ...read more
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