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10+ Navi Technologies Interview Questions and Answers
Q1. What is torque and how you calc it
Torque is a measure of rotational force. It is calculated by multiplying the force applied by the distance from the pivot point.
Torque is the rotational equivalent of force.
It is calculated by multiplying the force applied by the distance from the pivot point.
The SI unit of torque is Newton meters (Nm).
For example, if a force of 10 N is applied at a distance of 2 meters from the pivot point, the torque would be 20 Nm.
Q2. What is SF and why it is needed
SF stands for Sales Force and it is needed for managing sales activities, tracking performance, and improving efficiency.
SF helps in organizing and automating sales processes
It provides insights into sales performance and customer interactions
SF enables better communication and collaboration among sales teams
Examples: Salesforce, HubSpot, Zoho CRM
Q3. What is the function and structure of a gearbox?
A gearbox is a mechanical device used to increase or decrease the speed and torque of a motor or engine.
Function: Transmits power from the engine to the wheels, changing the speed and torque ratio
Structure: Consists of gears, shafts, bearings, and housing
Types: Manual, automatic, CVT, DCT
Example: In a car, the gearbox allows the driver to shift gears to match the speed and load conditions
Q4. Have you handle Gearbox, Motors
Yes, I have experience handling Gearbox and Motors in my previous roles as a Regional Manager.
Managed maintenance and repair of gearbox and motors in production facilities
Implemented strategies to optimize performance and efficiency of gearbox and motors
Worked closely with suppliers to source high-quality gearbox and motors
Trained staff on proper handling and maintenance procedures for gearbox and motors
Q5. What is gearbox, types, application
A gearbox is a mechanical device used to increase or decrease the speed and torque of a motor. Types include manual, automatic, and CVT. Applications include automobiles, industrial machinery, and wind turbines.
Gearbox is a mechanical device that transmits power from a prime mover to a driven machine.
Types of gearboxes include manual, automatic, CVT, and dual-clutch.
Applications of gearboxes include automobiles, industrial machinery, wind turbines, and marine vessels.
Q6. What are the applications of a gearbox?
Gearboxes are used to change the speed and torque of a rotating power source, such as an engine or electric motor.
Used in vehicles to transfer power from the engine to the wheels at different speeds
Found in industrial machinery to control the speed of conveyor belts or other equipment
Utilized in wind turbines to adjust the rotational speed of the blades for optimal energy production
Q7. What is process of business development.
Business development is the process of identifying opportunities for growth and implementing strategies to capitalize on those opportunities.
Identifying potential clients or markets for expansion
Building relationships with key stakeholders
Creating and implementing strategies to increase revenue
Monitoring and evaluating the success of business development efforts
Q8. All process of Store onwards and outward SOPs of the store process
The store process involves various SOPs for inward and outward logistics.
Inward SOPs include receiving, inspecting, and storing goods.
Outward SOPs involve picking, packing, and dispatching orders.
Inventory management and stocktaking are crucial for smooth store operations.
Quality control and safety measures must be followed at all times.
Effective communication with suppliers, customers, and team members is essential.
Examples of SOPs include checking for damages, verifying qua...read more
Q9. What is gear? Gear manufacturing
Gear is a mechanical component used to transmit motion and power between rotating shafts.
Gears are toothed mechanical components that mesh together to transmit motion and power.
They are commonly used in machinery to change the speed, torque, or direction of rotation.
Gear manufacturing involves processes like cutting, shaping, hobbing, and grinding to create precise gear teeth.
Examples of gears include spur gears, helical gears, bevel gears, and worm gears.
Q10. Manufacturing processes and types and details
Manufacturing processes involve various methods to produce products efficiently and effectively.
Different types of manufacturing processes include casting, machining, welding, forming, and additive manufacturing.
Casting involves pouring molten material into a mold to create a desired shape, such as in metal casting for automotive parts.
Machining uses tools to remove material from a workpiece, like in CNC milling for precision components.
Welding joins materials together using ...read more
Q11. What is gear architecture?
Gear architecture refers to the design and layout of gears in a mechanical system.
Gear architecture involves determining the type of gears to be used, their size, shape, and arrangement.
It also includes considerations such as gear ratio, tooth profile, and material selection.
Examples of gear architectures include spur gears, helical gears, bevel gears, and worm gears.
Q12. What is shear modulus?
Shear modulus is a measure of a material's stiffness in response to shear stress.
Shear modulus is also known as the modulus of rigidity.
It is defined as the ratio of shear stress to shear strain in a material.
Higher shear modulus indicates higher stiffness and resistance to deformation.
Common units for shear modulus are pascals (Pa) or gigapascals (GPa).
Q13. what is module ?
A module is a self-contained unit of software that performs a specific function and can be easily integrated with other modules.
Modules help in organizing code into smaller, manageable units
Modules can be reused in different parts of a program or in different programs
Modules can be imported and used in other modules to extend functionality
Q14. What is mechanical engineering
Mechanical engineering is a branch of engineering that involves the design, analysis, and manufacturing of mechanical systems.
Involves designing and analyzing mechanical systems such as engines, machines, and tools
Focuses on principles of mechanics, thermodynamics, materials science, and structural analysis
Applications in various industries like automotive, aerospace, manufacturing, and robotics
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