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NYTimes 28th Apr Very hard Sudoku: Expert Solution

NYT hard Sudoku 28th April 2024: Expert Solution

NYT hard Sudoku 28th April 2024 needs repeated breakthroughs based on fundamental rules, as powerful Sudoku patterns are not readily available.

First solve, then verify from the solution if you need.

NYT hard Sudoku 28th April 2024

NYT hard Sudoku 28th April 2024: Hard time to get the breakthroughs

Stage 1: All breakthroughs done

Hidden single R5C9 3, R1C5 3, R8C4 6, R7C4 3, R8C1 9, R9C1 3, R5C3 9, R8C8 3.

Double digit scan for [1,6] in C9, R8 on bottom right major square: Cycle (1,6) in R9.

Hard to find naked singles R5C7 8. Hidden single R3C8 8.

Single digit lock on 6 in C1: hidden single R1C3 6.

Single digit lock on 2 in C9 (made possible by the double digit scan earlier): hidden single: R2C8 2, R1C1 2.

Naked singles R1C7 5, R1C9 7, R1C8 8, R8C7 4, Cycles (2,5) and (4,9) in C9.

Cycles (1,4,9) and (5,7) in R3. Hidden singles R6C2 2.

Major breakthrough naked single R5C4 2 by parallel scan for 2 on C4.

Single digit lock on 5 in C6.

Single digit lock on 8 in three cells of top middle Major square: Cycles (5,7) and naked double Cycle (2,4 )in R9. Cycle (2,4) in C3.

Critical breakthrough R2C3 7.

It'll be easy from now on.

Results.

NYT hard Sudoku 28th April 2024 Solution Stage 1

Stage 2: No further difficulties

Start with R3C1 5. Rest are easy.

Solution.

NYT hard Sudoku 28th April 2024 final Solution Stage 2

Sudoku Techniques: Based on the fundamental three Sudoku rules

Hidden single: Row column digit scan: Most basic:

If a digit appears in a row and a column (or a second row) to eliminate all but one cell in the intersecting major square, the digit scanned must be placed in the single cell in the major square available for it. This is a conventional nomenclature, but basically is the simple row column scan resulting in a unique valid digit cell.

DS reductions or possible digit subset reductions:

The is used nearly at every step on the way to the solution. It specifically is useful for giving naked singles or Cycles. DS reduction for breakthrough usually occurs when DS in one zone (say row) interacts with the existing common digits of a second intersecting zone (say another intersecting column) reducing the DS in the intersected cell to just 1.

Example: DS [5,7,9] in Row R8 intersects with Column C8 containing [5,9] reducing DS of intersected cell to breakthrough R8C8 7.

Naked single by DS reductions:

When DS reduction in a specific cell by the unique digits present in the affecting row, column and the major square leaves only one possible digit for the cell, we get a unique digit valid cell. This is conventionally called a Naked Single.

Naked single may appear in many ways. When a row (or column) has eight cells filled up, the naked single automatically becomes the candidate for the ninth cells.

In a Cycle of 2 (three or higher numbers) cells, two digits are locked up. When one of the two is reduced by new appearance of the digit in an affecting zone (row, column or major square) the second cells of the Cycle gets the naked single.

In essence, naked single is the only digit eligible to be placed in a specific cell (all other eight digits eliminated by their presence in affecting zones). In abstraction, hidden single is also a type of naked single, but because of its ease of use, the basic operation of finding a hidden single by row column scan, a different name is used .

Double digit scan:

Same two digits appearing in a column and an intersecting row restrict the possible cells for the two digits in the affected major square to just two. This creates a Cycle of the two digits scanned simultaneously.

The digits scanned must not be present in the major square scanned and unaffected empty cells must be exactly two for creating the breakthrough two digit Cycle.

Parallel digit scan:

In parallel digit scan, a single digit appears in a number of rows (or columns) eliminating the cells of an intersecting column (or row) for occupancy of the digit scanned. This may leave a single cell in the affected column (or row) for the scanned digit providing a breakthrough.

Cycle:

If the same set of 2 (3, 4 or 5) digits in different combinations appear in 2 (3, 4 or 5) cells of a row (or column or a major square), no other cell of the row (or column or major square) can have these Cycled digits. Example: A Cycle of (8,9) in two cells of a row debars any other cell of the row to have the digit 8 or 9.

Single digit lock:

When a single digit appears in DSs of only two cells in a row (or column), the digit is locked in this row (or column) and its cells. No other cell in the affected row (or column) can host this locked digit. Usually, a single digit lock is sought for within a major square. This debars the cells of the major square from hosting the locked digit as well. For example: if digit 4 in R4 and R6 eliminates all cells of the central middle major square for 4 except R5C4 and R5C5, we get digit 4 lock in R5 and also in central middle major square. Digit 4 cannot appear in any other cell in R5 or the major square.

Single digit locks may occur also with same digit in three consecutive cells in a major square row (or column).

Rare is the single digit lock spread over more than one major square, but these may be of great value if a pair of such single digit locks happen to share two columns and two rows resulting in more valuable breakthrough digit pattern of X wing or still more powerful chained single digit locks.


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