Q.3) Write a single 8086 instruction to execute the following: 1) Copy the Contents of AL to Extra segment memory in the offset address 0100H 2) Load the effective address of the memory location pointed by (BX)+(DI) to register DX. Save the flags in internal register. 4) Swap the low nibble and high nibble of the content of BL, when CL-4 5) Divide the signed number in register DX by 32, when CL-5. 6) Replace the contents of the byte-wide storage location: [DS+DI]+10H by its 2's complement. 7) Toggle the logic level of odd bits in the Accumulator Register. 8) Load the AX and DS registers from the address (0A06H] and address (0A08H] respectively. 9) Copy the content of DX to top of stack memory location. 10) Let the (AX)- (DL), when (AX)-(DX).

Computer Networking: A Top-Down Approach (7th Edition)
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ISBN:9780133594140
Author:James Kurose, Keith Ross
Publisher:James Kurose, Keith Ross
Chapter1: Computer Networks And The Internet
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Q.3) Write a single 8086 instruction to execute the following:
1) Copy the Contents of AL to Extra segment memory in the offset address 0100H
2) Load the effective address of the memory location pointed by (BX)+(DI) to register DX.
3) Save the flags in internal register.
4) Swap the low nibble and high nibble of the content of BL, when CL-4
5) Divide the signed number in register DX by 32, when CL=5.
6) Replace the contents of the byte-wide storage location: [DS+DI]+10H by its 2's complement.
7) Toggle the logic level of odd bits in the Accumulator Register.
8) Load the AX and DS registers from the address (OA06H] and address [0A08H] respectively.
9) Copy the content of DX to top of stack memory location.
10) Let the (AX)=(DL), when (AX)3(DX).
Transcribed Image Text:Q.3) Write a single 8086 instruction to execute the following: 1) Copy the Contents of AL to Extra segment memory in the offset address 0100H 2) Load the effective address of the memory location pointed by (BX)+(DI) to register DX. 3) Save the flags in internal register. 4) Swap the low nibble and high nibble of the content of BL, when CL-4 5) Divide the signed number in register DX by 32, when CL=5. 6) Replace the contents of the byte-wide storage location: [DS+DI]+10H by its 2's complement. 7) Toggle the logic level of odd bits in the Accumulator Register. 8) Load the AX and DS registers from the address (OA06H] and address [0A08H] respectively. 9) Copy the content of DX to top of stack memory location. 10) Let the (AX)=(DL), when (AX)3(DX).
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