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31:49
Implementing Virtual Functions in MIPS assembly
12:57
Predator-Prey Example
01:37
Sharing an IntelliJ project on Github
08:25
JUnit4 Testing in IntelliJ
02:15
Passing command line arguments in IntelliJ
10:19
Designing a burger validator finite state machine
05:47
Writing Fibonacci in MIPS (callee saved)
06:22
Writing Fibonacci in MIPS (caller saved)
13:51
Writing to caches
06:32
MIPS function with pointers and structs
13:52
Propogation Delay Lecture
07:49
Implementing Half and Full Adders
04:17
Writing expressions to shift and extract subsets of bits
02:25
Example bit-wise logical and shifting problem
01:40
Converting Decimal to Hexadecimal
00:50
Most Negative value for given size Two's Complement number
00:51
Maximum Positive 2's Complement Number for N bits
01:46
Minimum Two's Complement Representation for a Number
04:40
Hexadecimal Notation
11:24
CacheExamplePart2
08:40
Cache Analysis Example (part 1)
07:20
Conceptual Introduction to Pipelining
02:20
Verilog Boolean Expressions and Parameters
05:33
More Verilog
08:14
An Example Verilog Test Bench
02:23
Example two's complement subtraction
01:28
Example two's complement addition
01:42
Example of unsigned binary subtraction
01:22
Example unsigned binary addition
00:20
Bit-wise NOT example
00:48
Bit-wise OR example
00:47
Bit-wise AND example
00:49
Example sign-extension of two's complement binary number
00:27
Example zero-extension of an unsigned binary number
00:58
Example conversion from hexadecimal to binary
01:38
Example conversion of negative decimal number to binary
01:21
Example conversion from decimal to unsigned binary
01:07
Example conversion from hexadecimal to decimal
02:07
Example conversion from two's complement to decimal
00:56
Example conversion of unsigned binary to hexadecimal
00:50
Example conversion of unsigned binary to decimal
04:40
An Introduction to Verilog
02:56
Performing Error Correction (An Example)
02:09
Computing Hamming distance for Error Detection & Correction
00:53
How to compute a number at a given Hamming distance
01:09
How to compute the Hamming distance
00:38
Compute Parity for A Binary Number
06:16
Combinational Design Example: rock-paper-scissors .mp4
00:49
Convert Boolean Expressions to Digital Circuits.mp4
01:13
Convert digital circuits to truth tables.mp4
01:33
Convert truth tables to circuits.mp4
01:12
Convert Boolean Expressions to Truth Tables.mp4
00:56
Converting truth tables to Boolean expressions.mp4
01:08
Converting Verilog code to a digital circuit schematic.mp4
01:21
Convert digital circuit to a Boolean expression
12:12
Solution to HW1 problem 6 (part 2)
05:41
Solution to HW1 problem 4
10:29
Solution to HW1 problem 6 (part 1)
01:39
Solution to HW1 problem 2
12:53
Solution to HW1 problem 5