()=F0H,<br/>(R0)=30H, and (30H)=AAH. After execution of an instruction XCH A,<br/>@R0, accumulator will be,( ) A: AAH B: F0H C: 30H D: 78H
()=F0H,<br/>(R0)=30H, and (30H)=AAH. After execution of an instruction XCH A,<br/>@R0, accumulator will be,( ) A: AAH B: F0H C: 30H D: 78H
()=F0H,<br/>(R0)=30H, and (30H)=AAH. After execution of an instruction “XCH<br/>A, @R0”, the contents of A will be( ) A: AAH B: F0H C: 30H D: 78H
()=F0H,<br/>(R0)=30H, and (30H)=AAH. After execution of an instruction “XCH<br/>A, @R0”, the contents of A will be( ) A: AAH B: F0H C: 30H D: 78H
55H AND AAH
55H AND AAH
已知(A)= F0H,(R0)=30H,(30H)=AAH。执行完指令XCH A, @R0后,累加器A的内容将变为 A: AAH B: F0H C: 30H D: FFH
已知(A)= F0H,(R0)=30H,(30H)=AAH。执行完指令XCH A, @R0后,累加器A的内容将变为 A: AAH B: F0H C: 30H D: FFH
已知()=<br/>F0H,(R0)=30H,(30H)=AAH。执行完指令XCH<br/>A, @R0后,累加器A的内容将变为() A: AAH B: F0H C: 30H D: FFH
已知()=<br/>F0H,(R0)=30H,(30H)=AAH。执行完指令XCH<br/>A, @R0后,累加器A的内容将变为() A: AAH B: F0H C: 30H D: FFH
假设(A)=55H,(R3)=0AAH,在执行指令“ANL A,R3”后,(A)= ,(R3)= 。 A: (A)=00H,(R3)=0AAH B: (A)=AAH,(R3)=0AH C: (A)=A0H,(R3)=0AH D: (A)=00H,(R3)=AAH
假设(A)=55H,(R3)=0AAH,在执行指令“ANL A,R3”后,(A)= ,(R3)= 。 A: (A)=00H,(R3)=0AAH B: (A)=AAH,(R3)=0AH C: (A)=A0H,(R3)=0AH D: (A)=00H,(R3)=AAH
若(A)=C3H,(R0)=AAH,指令XRLA,R0执行后,A的内容是()。
若(A)=C3H,(R0)=AAH,指令XRLA,R0执行后,A的内容是()。
设(A)=C3H,(20H)=AAH,执行如下指令: ADD A, 20H ;意思就是将地址为20H单元内的数AAH与A里的数C3H相加后,结果存在A里则P=
设(A)=C3H,(20H)=AAH,执行如下指令: ADD A, 20H ;意思就是将地址为20H单元内的数AAH与A里的数C3H相加后,结果存在A里则P=
已知8255A的控制寄存器值为AAH,则A口I/O方式 。
已知8255A的控制寄存器值为AAH,则A口I/O方式 。
设A=55H,R5=AAH,则执行ANLA,R5指令后的结果是A=(),R5=()。
设A=55H,R5=AAH,则执行ANLA,R5指令后的结果是A=(),R5=()。