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I applied via Naukri.com and was interviewed before Sep 2020. There were 4 interview rounds.
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I applied via Company Website and was interviewed before Jun 2021. There were 2 interview rounds.
I applied via Company Website and was interviewed in Jan 2021. There were 5 interview rounds.
I applied via Campus Placement and was interviewed before Jun 2023. There were 2 interview rounds.
Java , Spring, SQL questions asked without one data structure basic live coding question
It consist of 4 DSA ques and few quiz and opps concept based ques
1st was string based Medium level ques.
2nd was a ques based on 2 pointer
And other 2 was from Vector and Linked list easy ques
Print natural numbers in spiral form using a 2D array.
Create a 2D array with dimensions n x n.
Initialize variables for row and column boundaries.
Iterate through the array in a spiral pattern, filling in natural numbers.
Exam to test reasoning and aptitude, and speed to answer them
Dsa question easy to medium level
Print pyramid from Fibonacci sequence
Generate Fibonacci sequence up to a certain number
Use the Fibonacci numbers to create the pyramid structure
Print each row of the pyramid with appropriate spacing
Design SQL tables for library management system
Create tables for books, authors, members, transactions, etc.
Use primary and foreign keys to establish relationships between tables
Include columns like book title, author name, member ID, due date, etc.
I applied via Referral and was interviewed before Mar 2022. There were 6 interview rounds.
Basic aptitude test to check the right skill set
I applied via Campus Placement
I applied via LinkedIn and was interviewed in Apr 2023. There were 3 interview rounds.
Use Depth First Search (DFS) to find connected components in a graph
Start by initializing all vertices as unvisited
Iterate through each vertex and perform DFS to find connected components
Keep track of visited vertices to avoid revisiting
Example: For a graph with vertices {A, B, C} and edges {(A, B), (B, C)}, the connected components are {A, B, C}
Design a chess game with proper board setup, piece movements, and win conditions.
Create a 8x8 grid to represent the chess board
Assign initial positions to each type of chess piece (pawn, rook, knight, bishop, queen, king)
Implement rules for each piece's movement (e.g. pawn moves forward, rook moves horizontally/vertically)
Check for valid moves and capture opponent's pieces
Implement win conditions (checkmate, stalemate)
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