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Class 8 IMO | Chapter 6 : Squares and Square Roots | Squares & Square roots for grade 8 | 2024-25
45:45
Class 8 IMO | Chapter 2 : Linear Equations in one Variable | Maths olympiad for class 8
44:51
MOD 11 Synchronous Up counter using D flip flop | MOD 11 counter | Synchronous Counter Using D FF
13:36
class 8 IMO | sample paper 2024-25 | maths Olympiad for class 8 | sample paper | imo | grade 8
17:30
Class 6 IMO SAMPLE PAPER 2024-25 | class 6 imo | SOF IMO CLASS 6 | MATHS OLYMPIAD 2024-25
14:12
Half Adder using Multiplexer | implement half adder using 4:1MUX| half adder using 4 X 1 multiplexer
04:56
Half subtractor using 4×1 multiplexer | implement half subtractor using 4:1 MUX
04:28
Digital electronics | Memory address line calculation | Memory address range calculation
02:45
Reduce the given logic diagram | digital electronics | simplify the given expression
02:47
Flash Type ADC | Unit 5 | Parallel Type ADC | Simultaneous ADC | Analog to digital computer
11:58
Demux as Decoder | Demultiplexer as Decoder | How we can use demultiplexer as Decoder | DE | DSD
03:09
Difference between Serial Adder and Parallel adder | Parallel adder vs Serial adder | DE | DSD
03:46
DSD one Shot | Unit 5 : PART 1 | Analog to digital converter in one shot | BEC302 | UNIT 5 ONE-SHOT
42:22
Boolean function Implementation using Multiplexer | POS (product of Sum ) function implementation
04:16
Prove that positive logic OR gate is Same as negative logic AND gate | Negative logic AND gate
04:20
Signed number representation | Representation of signed numbers| Signed Magnitude | DE | DSD | CAO
11:08
Synchronous counter | design a counter for a given sequence & consider unused state as don't care
18:38
Find Out Base and radix in digital electronics | Find  number system for valid equations in DE
05:56
SOP to POS conversion | POS to SOP Conversion | Simplify SOP function in POS | Find SOP for POS
08:28
16 to 1 MUX using 2 to 1 MUX | 16 X 1 multiplexer using 2 X 1 multiplexer | 16:1 mux using 2:1 Mux
07:48
Memory 2048 X 8 using 256 x 8 | Memory capacity Expanding | Obtain 2KB using 256 X 8 memory chip
09:26
Memory Expanding | Expanding Memory word size | Obtain 1K x 8 by 1K x 4 Memory  Digital electronics
07:00
Design MOD 12 synchronous Down Counter using T Flip flop | Mod 12 down counter
11:28
Fundamentals of electronics engineering  | one shot | unit 4 | Digital electronics | Part 2
01:00:03
5 variable k-map | K-map | Five variable k-map
08:20
implementation of basic gates using NAND | NOT using NAND | NOR & OR using NAND | AND using NAND
03:54
Race free State assignment | Digital Electronics | Unit 4 | critical and non critical Races
22:56
Simplification of Boolean Expression  using Boolean algebra | DSD | DE | Electronics engineering
03:47
Fundamental of electronics engineering  one Shot Video | Unit 4: Digital Electronics| Part 1
01:09:25
SR latch Using NAND Gate | Set reset latch Using NAND
04:35