Q41: Write an 8086-microprocessor program to clear the contents of 20 memory locations that are starting with an offset address of 4200H and segment address of 2000H. (Note: you must create these contents first) 042: Write an 8086-microprocessor program to fill the memory contents starting at offset address of 2500H to the offset address of 2518H with data of (10) decimal number. Then multiply each contents by 4 using shift instruction. (Note; use 300H as segment register address)
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- Solve in 8086 microprocessorCan you give me a simple example of each mistake in the Emu8086 program? Registers should be of the same size. One way to reduce memory usage is to use AX or AL. Explain.Q3/(A) False OR True 1- A0-0 and BHE-1 are used as low bank-select signal: 2-AX is 2234 H after executing the following instruction: AAS. If AX-2234H. 3-IP register holds the offset address of the next instruction to be executed. 4- The XLAT instruction in 8086 assembly language is used to perform arithmetic operations between two memory operands. 5- Bus interface unit is responsible form
- I need the solution, expert, to be correct with clarification. a. Write an 8086-microprocessor program to perform the result of the logical expression: BP (X₁ X2) + (X₁. X2), where X₁-01FFH, X2=AD58H: b. There are 30 data bytes are stored in memory location with offset address 3100H to 311EH. Write 8086 microprocessor program to transfer the block of data to new location with offset address 4201H to 421FNew SolutionWrite an 8086 microprocessor program to transfer 20 words block of data from the first memory locations which is started with offset address of 2000H to the second memory locations which is started with offset address of 3000H. SI 1. The Intel 8086 microprocessor can read/write 16 bit data from or to a. I/O device b. register © memory d. processor 2. Which unit in the 8086 microprocessor is responsible for pre-fetching instructions from memory? a. EU b. ALU c. BIU 3. The memory of 1M byte size could be divided into a. twenty-one b. thirty-four d. CU Kbyte segments. d. sixty-four c. thirty-three 4. Which of the following programming statements is NOT a valid comparison operator in Arduino? a!(not equal to) b. < (less than) c. and (logical AND) d.=(equal to) 5. How many A/D converter inputs pins does port-E in the PIC16F877A ? a. 3-Pins b. 6-Pins c. 4-Pins d. 8-Pins d. 4Kx14 bits 5. How much the size of the program memory space in the PIC16F877A microcontroller? a. 32Kx8 bits b. 16Kx16…
- 2. A microprocessor has a memory space of 4 MB. Each memory address occupies one byte. a) What is the address bus size (number of bits needed for addressing) of this microprocessor? b) What is the range (lowest to highest, in hexadecimal) of the memory space for this microprocessor? c) Complete the memory map by the address ranges (lowest to highest, in hexadecimal) 8 bits for each memory chip. 0x 0x 0x 0x 0x 0x 0x 0x Address 0 1MB 1MB 1MB 1MBprogram to emu8086I need expert assistance in solving the choices, providing evidence not through explanations but through images or by illustrating with a diagram of the EMU8086 processor. -1. The Intel 8086 microprocessor can read/write 16 bit data from or to a. I/O device b. register (C, memory d. processor 2. Which unit in the 8086 microprocessor is responsible for pre-fetching instructions from memory? a. EU b. ALU c. BIU 3. The memory of 1M byte size could be divided into a. twenty-one b. thirty-four d. CU Kbyte segments. d. sixty-four c. thirty-three 4. Which of the following programming statements is NOT a valid comparison operator in Arduino? != (not equal to) b. < (less than) c. and (logical AND) d. = (equal to) 5. How many A/D converter inputs pins does port-E in the PIC16F877A? b. 6-Pins c. 4-Pins a. 3-Pins 6. How much the size of the program memory space in the b. 16Kx16 bits c. 8Kx14 bits a. 32Kx8 bits 8-Pins PIC16F877A microcontroller? d. 4Kx14 bits
- program using emu 8086Q2. (a) Figure 2 shows the pinout diagram (and their functional description) of the 2114 Static RAM memory IC. Using a neat sketch show how such IC may be interfaced with an M68000 microprocessor to realise a system that needs 1K x 16 bits of RAM. [Note: 2114 is a 4-bit memory IC. You will need multiple ICs to make up the 16-bit address bus of M68000 processor.] Ao-Ag Pin Names Address Inputs A6 1 A5 2 A4 AO 5 A16 A2 7 CS 8 GND 9 -23456782 18 Vcc WE Write Enable 17 A7 CS Chip Select 16 A8 1/0₁-1/04 Data Input/Output A3 4 15 A9 VCC Power (+5V) GND Ground 14 I/O 1 13 I/O 2 Truth Table 12 1/03 CS WE Comments 11 I/O 4 H X Chip Deselected L L Write 10 WE L H Read Figure 2 (b) Design an address decoder circuit to realise the following memory map (shown below in hexadecimal notation). The unused address range should generate an active low signal to be connected to the BERR* input of the M68000 microprocessor. Use the partial address decoding technique for your design. ROM1 00 0000 03 FFFF…Q2. (a) Figure 2 shows the pinout diagram (and their functional description) of the 2114 Static RAM memory IC. Using a neat sketch show how such IC may be interfaced with an M68000 microprocessor to realise a system that needs 1K x 16 bits of RAM. [Note: 2114 is a 4-bit memory IC. You will need multiple ICs to make up the 16-bit address bus of M68000 processor.] Ao-Ag Pin Names Address Inputs A6 1 A5 2 A4 3 A3 4 AO 5 A1 6 A2 7 CS 8 GND 9 +23456700 18 Vcc WE Write Enable 17 A7 CS Chip Select 16 A8 1/01-1/04 Data Input/Output 15 A9 Vcc Power (+5V) GND Ground 14 I/O 1 13 I/O 2 Truth Table 12 1/03 CS WE Comments 11 1/04 Н Chip Deselected L L Write 10 WE L H Read Figure 2 (b) Design an address decoder circuit to realise the following memory map (shown below in hexadecimal notation). The unused address range should generate an active low signal to be connected to the BERR* input of the M68000 microprocessor. Use the partial address decoding technique for your design. ROM1 00 0000 03 FFFF…