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Coding Interview Resources

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This channel contains the free resources and solution of coding problems which are usually asked in the interviews. Managed by: @love_data

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Channel Coding Interview Resources (@crackingthecodinginterview) in the English language segment is an active participant. Currently, the community unites 52 231 subscribers, ranking 2 478 in the Technologies & Applications category and 6 770 in the India region.

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Since its creation on невідомо, the project has demonstrated rapid growth, gathering an audience of 52 231 subscribers.

According to the latest data from 28 August, 2026, the channel demonstrates stable activity. Although there has been a change in the number of participants by -18 over the last 30 days and by -6 over the last 24 hours, overall reach remains high.

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  • Post reach: On average, each post receives 972 views. Within the first day, a publication typically gains 400 views.
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  • Thematic interests: Content is focused on key topics such as array, stack, algorithm, programming, sort.

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This channel contains the free resources and solution of coding problems which are usually asked in the interviews. Managed by: @love_data

Thanks to the high frequency of updates (latest data received on 29 August, 2026), the channel maintains relevance and a high level of publication reach. Analytics show that the audience actively interacts with content, making it an important point of influence in the Technologies & Applications category.

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Skills to master as a web developer
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Skills to master as a web developer

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🚀 Front-End Development Interview Topics HTML & CSS 🔹 Semantic HTML 🔹 CSS Pre-Processors 🔹 CSS Specificity 🔹 Resetting &
🚀 Front-End Development Interview Topics HTML & CSS 🔹 Semantic HTML 🔹 CSS Pre-Processors 🔹 CSS Specificity 🔹 Resetting & Normalizing CSS 🔹 CSS Architecture 🔹 SVGs 🔹 Media Queries 🔹 CSS Display Property 🔹 CSS Position Property 🔹 CSS Frameworks 🔹 Pseudo Classes 🔹 Sprites JavaScript 🔹 Event Delegation 🔹 Attributes vs Properties 🔹 Ternary Operators 🔹 Promises vs Callbacks 🔹 Single Page Application 🔹 Higher-Order Functions 🔹 == vs === 🔹 Mutable vs Immutable 🔹 'this' 🔹 Prototypal Inheritance 🔹 IFE (Immediately Invoked Function Expression) 🔹 Closure 🔹 Null vs Undefined 🔹 OOP vs Map 🔹 .call & .apply 🔹 Hoisting 🔹 Objects 🔹 Scope 🔹 JS Frameworks Data Structures and Algorithms 🔹 Linked Lists 🔹 Hash Tables 🔹 Stacks 🔹 Queues 🔹 Trees 🔹 Graphs 🔹 Arrays 🔹 Bubble Sort 🔹 Binary Search 🔹 Selection Sort 🔹 Quick Sort 🔹 Insertion Sort Front-End Topics 🔹 Performance 🔹 Unit Testing 🔹 End-to-End Testing (E2E) 🔹 Web Accessibility 🔹 CORS 🔹 SEO 🔹 REST 🔹 APIs 🔹 HTTP/HTTPS 🔹 GitHub 🔹 Task Runners 🔹 Browser APIs

DSA (Data Structures and Algorithms) Essential Topics for Interviews 1️⃣ Arrays and Strings Basic operations (insert, delete, update) Two-pointer technique Sliding window Prefix sum Kadane’s algorithm Subarray problems 2️⃣ Linked List Singly & Doubly Linked List Reverse a linked list Detect loop (Floyd’s Cycle) Merge two sorted lists Intersection of linked lists 3️⃣ Stack & Queue Stack using array or linked list Queue and Circular Queue Monotonic Stack/Queue LRU Cache (LinkedHashMap/Deque) Infix to Postfix conversion 4️⃣ Hashing HashMap, HashSet Frequency counting Two Sum problem Group Anagrams Longest Consecutive Sequence 5️⃣ Recursion & Backtracking Base cases and recursive calls Subsets, permutations N-Queens problem Sudoku solver Word search 6️⃣ Trees & Binary Trees Traversals (Inorder, Preorder, Postorder) Height and Diameter Balanced Binary Tree Lowest Common Ancestor (LCA) Serialize & Deserialize Tree 7️⃣ Binary Search Trees (BST) Search, Insert, Delete Validate BST Kth smallest/largest element Convert BST to DLL 8️⃣ Heaps & Priority Queues Min Heap / Max Heap Heapify Top K elements Merge K sorted lists Median in a stream 9️⃣ Graphs Representations (adjacency list/matrix) DFS, BFS Cycle detection (directed & undirected) Topological Sort Dijkstra’s & Bellman-Ford algorithm Union-Find (Disjoint Set) 10️⃣ Dynamic Programming (DP) 0/1 Knapsack Longest Common Subsequence Matrix Chain Multiplication DP on subsequences Memoization vs Tabulation 11️⃣ Greedy Algorithms Activity selection Huffman coding Fractional knapsack Job scheduling 12️⃣ Tries Insert and search a word Word search Auto-complete feature 13️⃣ Bit Manipulation XOR, AND, OR basics Check if power of 2 Single Number problem Count set bits Coding Interview Resources: https://whatsapp.com/channel/0029VammZijATRSlLxywEC3X ENJOY LEARNING 👍👍

C++ Programming Roadmap | |-- Fundamentals | |-- Basics of Programming | | |-- Introduction to C++ | | |-- Setting Up Development Environment (IDE: Code::Blocks, Visual Studio, etc.) | | |-- Compiling and Running C++ Programs | | | |-- Syntax and Structure | | |-- Basic Syntax | | |-- Variables and Data Types | | |-- Operators (Arithmetic, Relational, Logical, Bitwise) | |-- Control Structures | |-- Conditional Statements | | |-- If-Else Statements | | |-- Switch Case | | | |-- Loops | | |-- For Loop | | |-- While Loop | | |-- Do-While Loop | | | |-- Jump Statements | | |-- Break, Continue | | |-- Goto Statement | |-- Functions and Scope | |-- Defining Functions | | |-- Function Syntax | | |-- Parameters and Arguments (Pass by Value, Pass by Reference) | | |-- Return Statement | | | |-- Function Overloading | | |-- Overloading Functions with Different Parameters | | | |-- Scope and Lifetime | | |-- Local and Global Scope | | |-- Static Variables | |-- Object-Oriented Programming (OOP) | |-- Basics of OOP | | |-- Classes and Objects | | |-- Member Functions and Data Members | | | |-- Constructors and Destructors | | |-- Constructor Types (Default, Parameterized, Copy) | | |-- Destructor Basics | | | |-- Inheritance | | |-- Single and Multiple Inheritance | | |-- Protected Access Specifier | | |-- Virtual Base Class | | | |-- Polymorphism | | |-- Function Overriding | | |-- Virtual Functions and Pure Virtual Functions | | |-- Abstract Classes | | | |-- Encapsulation and Abstraction | | |-- Access Specifiers (Public, Private, Protected) | | |-- Getters and Setters | | | |-- Operator Overloading | | |-- Overloading Operators (Arithmetic, Relational, etc.) | | |-- Friend Functions | |-- Advanced C++ | |-- Pointers and Dynamic Memory | | |-- Pointer Basics | | |-- Dynamic Memory Allocation (new, delete) | | |-- Pointer Arithmetic | | | |-- References | | |-- Reference Variables | | |-- Passing by Reference | | | |-- Templates | | |-- Function Templates | | |-- Class Templates | | | |-- Exception Handling | | |-- Try-Catch Blocks | | |-- Throwing Exceptions | | |-- Standard Exceptions | |-- Data Structures | |-- Arrays and Strings | | |-- One-Dimensional and Multi-Dimensional Arrays | | |-- String Handling | | | |-- Linked Lists | | |-- Singly and Doubly Linked Lists | | | |-- Stacks and Queues | | |-- Stack Operations (Push, Pop, Peek) | | |-- Queue Operations (Enqueue, Dequeue) | | | |-- Trees and Graphs | | |-- Binary Trees, Binary Search Trees | | |-- Graph Representation and Traversal (DFS, BFS) | |-- Standard Template Library (STL) | |-- Containers | | |-- Vectors, Lists, Deques | | |-- Stacks, Queues, Priority Queues | | |-- Sets, Maps, Unordered Maps | | | |-- Iterators | | |-- Input and Output Iterators | | |-- Forward, Bidirectional, and Random Access Iterators | | | |-- Algorithms | | |-- Sorting, Searching, and Manipulation | | |-- Numeric Algorithms | |-- File Handling | |-- Streams and File I/O | | |-- ifstream, ofstream, fstream | | |-- Reading and Writing Files | | |-- Binary File Handling | |-- Testing and Debugging | |-- Debugging Tools | | |-- gdb (GNU Debugger) | | |-- Valgrind for Memory Leak Detection | | | |-- Unit Testing | | |-- Google Test (gtest) | | |-- Writing and Running Tests | |-- Deployment and DevOps | |-- Version Control with Git | | |-- Integrating C++ Projects with GitHub | |-- Continuous Integration/Continuous Deployment (CI/CD) | | |-- Using Jenkins or GitHub | | |   |--Free courses | | |--imp.i115008.net/kjoq9V |   |   |--imp.i115008.net/5bmnKL |   |   |--Microsoft Documentation |   |   |--Udemy Course Join @free4unow_backup for more free resources ENJOY LEARNING 👍👍

Reverse a list in Python
Reverse a list in Python

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Day 24/100
Day 24/100

DSA INTERVIEW QUESTIONS AND ANSWERS 1. What is the difference between file structure and storage structure? The difference lies in the memory area accessed. Storage structure refers to the data structure in the memory of the computer system, whereas file structure represents the storage structure in the auxiliary memory. 2. Are linked lists considered linear or non-linear Data Structures? Linked lists are considered both linear and non-linear data structures depending upon the application they are used for. When used for access strategies, it is considered as a linear data-structure. When used for data storage, it is considered a non-linear data structure. 3. How do you reference all of the elements in a one-dimension array? All of the elements in a one-dimension array can be referenced using an indexed loop as the array subscript so that the counter runs from 0 to the array size minus one. 4. What are dynamic Data Structures? Name a few. They are collections of data in memory that expand and contract to grow or shrink in size as a program runs. This enables the programmer to control exactly how much memory is to be utilized.Examples are the dynamic array, linked list, stack, queue, and heap. 5. What is a Dequeue? It is a double-ended queue, or a data structure, where the elements can be inserted or deleted at both ends (FRONT and REAR). 6. What operations can be performed on queues? enqueue() adds an element to the end of the queue dequeue() removes an element from the front of the queue init() is used for initializing the queue isEmpty tests for whether or not the queue is empty The front is used to get the value of the first data item but does not remove it The rear is used to get the last item from a queue. 7. What is the merge sort? How does it work? Merge sort is a divide-and-conquer algorithm for sorting the data. It works by merging and sorting adjacent data to create bigger sorted lists, which are then merged recursively to form even bigger sorted lists until you have one single sorted list. 8.How does the Selection sort work? Selection sort works by repeatedly picking the smallest number in ascending order from the list and placing it at the beginning. This process is repeated moving toward the end of the list or sorted subarray. Scan all items and find the smallest. Switch over the position as the first item. Repeat the selection sort on the remaining N-1 items. We always iterate forward (i from 0 to N-1) and swap with the smallest element (always i). Time complexity: best case O(n2); worst O(n2) Space complexity: worst O(1) 9. What are the applications of graph Data Structure? Transport grids where stations are represented as vertices and routes as the edges of the graph Utility graphs of power or water, where vertices are connection points and edge the wires or pipes connecting them Social network graphs to determine the flow of information and hotspots (edges and vertices) Neural networks where vertices represent neurons and edge the synapses between them 10. What is an AVL tree? An AVL (Adelson, Velskii, and Landi) tree is a height balancing binary search tree in which the difference of heights of the left and right subtrees of any node is less than or equal to one. This controls the height of the binary search tree by not letting it get skewed. This is used when working with a large data set, with continual pruning through insertion and deletion of data. 11. Differentiate NULL and VOID ? Null is a value, whereas Void is a data type identifier Null indicates an empty value for a variable, whereas void indicates pointers that have no initial size Null means it never existed; Void means it existed but is not in effect You can check these resources for Coding interview Preparation Credits: https://t.me/free4unow_backup All the best 👍👍

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When preparing for an SQL project-based interview, the focus typically shifts from theoretical knowledge to practical application. Here are some SQL project-based interview questions that could help assess your problem-solving skills and experience: 1. Database Design and Schema - Question: Describe a database schema you have designed in a past project. What were the key entities, and how did you establish relationships between them? - Follow-Up: How did you handle normalization? Did you denormalize any tables for performance reasons? 2. Data Modeling - Question: How would you model a database for an e-commerce application? What tables would you include, and how would they relate to each other? - Follow-Up: How would you design the schema to handle scenarios like discount codes, product reviews, and inventory management? 3. Query Optimization - Question: Can you discuss a time when you optimized an SQL query? What was the original query, and what changes did you make to improve its performance? - Follow-Up: What tools or techniques did you use to identify and resolve the performance issues? 4. ETL Processes - Question: Describe an ETL (Extract, Transform, Load) process you have implemented. How did you handle data extraction, transformation, and loading? - Follow-Up: How did you ensure data quality and consistency during the ETL process? 5. Handling Large Datasets - Question: In a project where you dealt with large datasets, how did you manage performance and storage issues? - Follow-Up: What indexing strategies or partitioning techniques did you use? 6. Joins and Subqueries - Question: Provide an example of a complex query you wrote involving multiple joins and subqueries. What was the business problem you were solving? - Follow-Up: How did you ensure that the query performed efficiently? 7. Stored Procedures and Functions - Question: Have you created stored procedures or functions in any of your projects? Can you describe one and explain why you chose to encapsulate the logic in a stored procedure? - Follow-Up: How did you handle error handling and logging within the stored procedure? 8. Data Integrity and Constraints - Question: How did you enforce data integrity in your SQL projects? Can you give examples of constraints (e.g., primary keys, foreign keys, unique constraints) you implemented? - Follow-Up: How did you handle situations where constraints needed to be temporarily disabled or modified? 9. Version Control and Collaboration - Question: How did you manage database version control in your projects? What tools or practices did you use to ensure collaboration with other developers? - Follow-Up: How did you handle conflicts or issues arising from multiple developers working on the same database? 10. Data Migration - Question: Describe a data migration project you worked on. How did you ensure that the migration was successful, and what steps did you take to handle data inconsistencies or errors? - Follow-Up: How did you test the migration process before moving to the production environment? 11. Security and Permissions - Question: In your SQL projects, how did you manage database security? - Follow-Up: How did you handle encryption or sensitive data within the database? 12. Handling Unstructured Data - Question: Have you worked with unstructured or semi-structured data in an SQL environment? - Follow-Up: What challenges did you face, and how did you overcome them? 13. Real-Time Data Processing    - Question: Can you describe a project where you handled real-time data processing using SQL? What were the key challenges, and how did you address them?    - Follow-Up: How did you ensure the performance and reliability of the real-time data processing system? Be prepared to discuss specific examples from your past work and explain your thought process in detail. Here you can find SQL Interview Resources👇 https://t.me/DataSimplifier Share with credits: https://t.me/sqlspecialist Hope it helps :)

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Machine Learning Project Ideas 👆
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Machine Learning Project Ideas 👆

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Math Topics every Data Scientist should know
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Math Topics every Data Scientist should know

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Here's a concise cheat sheet to help you get started with Python for Data Analytics. This guide covers essential libraries and functions that you'll frequently use. 1. Python Basics - Variables: x = 10 y = "Hello" - Data Types:   - Integers: x = 10   - Floats: y = 3.14   - Strings: name = "Alice"   - Lists: my_list = [1, 2, 3]   - Dictionaries: my_dict = {"key": "value"}   - Tuples: my_tuple = (1, 2, 3) - Control Structures:   - if, elif, else statements   - Loops:    
    for i in range(5):
        print(i)
    
  - While loop:   
    while x < 5:
        print(x)
        x += 1
    
2. Importing Libraries - NumPy:
  import numpy as np
  
- Pandas:
  import pandas as pd
  
- Matplotlib:
  import matplotlib.pyplot as plt
  
- Seaborn:
  import seaborn as sns
  
3. NumPy for Numerical Data - Creating Arrays:
  arr = np.array([1, 2, 3, 4])
  
- Array Operations:
  arr.sum()
  arr.mean()
  
- Reshaping Arrays:
  arr.reshape((2, 2))
  
- Indexing and Slicing:
  arr[0:2]  # First two elements
  
4. Pandas for Data Manipulation - Creating DataFrames:
  df = pd.DataFrame({
      'col1': [1, 2, 3],
      'col2': ['A', 'B', 'C']
  })
  
- Reading Data:
  df = pd.read_csv('file.csv')
  
- Basic Operations:
  df.head()          # First 5 rows
  df.describe()      # Summary statistics
  df.info()          # DataFrame info
  
- Selecting Columns:
  df['col1']
  df[['col1', 'col2']]
  
- Filtering Data:
  df[df['col1'] > 2]
  
- Handling Missing Data:
  df.dropna()        # Drop missing values
  df.fillna(0)       # Replace missing values
  
- GroupBy:
  df.groupby('col2').mean()
  
5. Data Visualization - Matplotlib:
  plt.plot(df['col1'], df['col2'])
  plt.xlabel('X-axis')
  plt.ylabel('Y-axis')
  plt.title('Title')
  plt.show()
  
- Seaborn:
  sns.histplot(df['col1'])
  sns.boxplot(x='col1', y='col2', data=df)
  
6. Common Data Operations - Merging DataFrames:
  pd.merge(df1, df2, on='key')
  
- Pivot Table:
  df.pivot_table(index='col1', columns='col2', values='col3')
  
- Applying Functions:
  df['col1'].apply(lambda x: x*2)
  
7. Basic Statistics - Descriptive Stats:
  df['col1'].mean()
  df['col1'].median()
  df['col1'].std()
  
- Correlation:
  df.corr()
  
This cheat sheet should give you a solid foundation in Python for data analytics. As you get more comfortable, you can delve deeper into each library's documentation for more advanced features. I have curated the best resources to learn Python 👇👇 https://whatsapp.com/channel/0029VaiM08SDuMRaGKd9Wv0L Hope you'll like it Like this post if you need more resources like this 👍❤️

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Python vs Java in Software Engineering
Python vs Java in Software Engineering

Fundamental Skills you need to become 👆
Fundamental Skills you need to become 👆