Consider the following table that represents part of the memory of a 16-bit address space that has an addressability of 2 bytes (like LC-3): ADDRESS OxFFFF OxOC10 OXOCOF OXOCOE OXOCOD OXOCOC OXOCOB 0x0000 CONTENTS 1111 1111 1111 1111 ... 1010 1011 1100 1101 0001 1010 1100 0111 1100 0000 0100 0000 0110 0101 1000 0111 0101 0000 0011 0001 0000 1100 0001 0000 0000 0000 0000 0000 The table above shows the addresses in hex (base 16) and the contents at the correspondin address in binary (base 2). A.) What are the contents in hex of the memory location at following address in binary: 0000 1100 0000 1111? (Enter hex like the following example: Ox2A3F) In all computer models, the contents of a memory location can be interpreted as data. B.) Interpret the contents at address OxFFFF as a two's complement integer in base 10. C.) Interpret the contents at address OxOCOC as two ASCII characters. D.) Interpret the contents at the same address as C.) above as an unsigned integer in base 10.

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A.) What are the contents in hex of the memory location at the following address in binary: 0000 1100 0000 1111? 

(Enter hex like the following example: 0x2A3F) 

 

In all computer models, the contents of a memory location can be interpreted as data.

B.) Interpret the contents at address 0xFFFF as a two's complement integer in base 10.

C.) Interpret the contents at address 0x0C0C as two ASCII characters. 

D.) Interpret the contents at the same address as C.) above as an unsigned integer in base 10.

Consider the following table that represents part of the memory of a 16-bit address space
that has an addressability of 2 bytes (like LC-3):
ADDRESS
OxFFFF
OXOC10
OXOCOF
OXOCOE
OXOCOD
OXOCOC
OXOCOB
0x0000
CONTENTS
1111 1111 1111
1111
1010 1011 1100
1101
0001 1010 1100
0111
1100 0000 0100
0000
0110 0101 1000
0111
0101 0000 0011
0001
0000 1100 0001
0000
0000 0000 0000
0000
The table above shows the addresses in hex (base 16) and the contents at the corresponding
address in binary (base 2).
A.) What are the contents in hex of the memory location at following address in
binary: 0000 1100 0000 1111?
(Enter hex like the following example: Ox2A3F)
In all computer models, the contents of a memory location can be interpreted as data.
B.) Interpret the contents at address OxFFFF as a two's complement integer in base
10.
C.) Interpret the contents at address OxOCOC as two ASCII characters.
D.) Interpret the contents at the same address as C.) above as an unsigned integer in
base 10.
Transcribed Image Text:Consider the following table that represents part of the memory of a 16-bit address space that has an addressability of 2 bytes (like LC-3): ADDRESS OxFFFF OXOC10 OXOCOF OXOCOE OXOCOD OXOCOC OXOCOB 0x0000 CONTENTS 1111 1111 1111 1111 1010 1011 1100 1101 0001 1010 1100 0111 1100 0000 0100 0000 0110 0101 1000 0111 0101 0000 0011 0001 0000 1100 0001 0000 0000 0000 0000 0000 The table above shows the addresses in hex (base 16) and the contents at the corresponding address in binary (base 2). A.) What are the contents in hex of the memory location at following address in binary: 0000 1100 0000 1111? (Enter hex like the following example: Ox2A3F) In all computer models, the contents of a memory location can be interpreted as data. B.) Interpret the contents at address OxFFFF as a two's complement integer in base 10. C.) Interpret the contents at address OxOCOC as two ASCII characters. D.) Interpret the contents at the same address as C.) above as an unsigned integer in base 10.
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