Question: Pleas solving the problems step by Stebe to understand .....? The NSC was modified to enable it to add a value to the current output
Pleas solving the problems step by Stebe to understand .....?

The NSC was modified to enable it to add a value to the current output using the new ADD x instruction. For example, OUT 2 followed by ADD 3 would result in DOUT-5. The other instructions (JMP, JC, and OUT) work as usual A partial list of memory contents is shown below. Using the program listed in the memory, determine the outputs for DOUT and the next address based on the values of inputs given below. Address (in decimal Machine Code 10 0010 11 0100 01 0001 10 1001 2 4 If the current address is 0, LOC = 0, and DOUT-1000, what is the value of DOUT and the next address to execute after running this instruction? 3. DOUT (in 4-bit binary) 0010 4. Next address (in decimal) I If the current address is 1, LOC 0, and DOUT -1000, what is the value of DOUT and the next address to execute after running this instruction? 5. DOUT (in 4-bit binary) 1100 o 6. Next address (in decimal) 2 If the current address is 2, LOC = 0, and DOUT = 1000, what is the value of DOUT and the next address to execute after running this instruction? 7. DOUT (in 4-bit binary) 1000 8. Next address (in decimal)^ 3 The NSC was modified to enable it to add a value to the current output using the new ADD x instruction. For example, OUT 2 followed by ADD 3 would result in DOUT-5. The other instructions (JMP, JC, and OUT) work as usual A partial list of memory contents is shown below. Using the program listed in the memory, determine the outputs for DOUT and the next address based on the values of inputs given below. Address (in decimal Machine Code 10 0010 11 0100 01 0001 10 1001 2 4 If the current address is 0, LOC = 0, and DOUT-1000, what is the value of DOUT and the next address to execute after running this instruction? 3. DOUT (in 4-bit binary) 0010 4. Next address (in decimal) I If the current address is 1, LOC 0, and DOUT -1000, what is the value of DOUT and the next address to execute after running this instruction? 5. DOUT (in 4-bit binary) 1100 o 6. Next address (in decimal) 2 If the current address is 2, LOC = 0, and DOUT = 1000, what is the value of DOUT and the next address to execute after running this instruction? 7. DOUT (in 4-bit binary) 1000 8. Next address (in decimal)^ 3
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