4. Many ARM processors are bi-endian, because they can be configured to efficiently handle both big- and little-endian data. 5. The frequency of the SSI is: f SSI = f BUS / (CPSDVSR * (1 - SCR)). 6. In the early 1980s, computer designers recommended that computers should use fewer instructions with simple constructs so that they can be executed much faster within the CPU without having to use memory. 7. Many embedded systems must continually react to changes in the system's environment and must compute certain results in real time without any delay. 8. In the ARM® Cortex -M processor, there are three status registers named Application Program Status Register (APSR), the Interrupt Program Status Register (IPSR), and the Execution Program Status Register (EPSR). 9. Be careful when connecting the backlight, because at 3.3V the back light draws 80 mA. If you want a dimmer back light connect 3.3V to a 100-ohm resistor, and the other end of the resistor to the LED/BL pin. 10. An analog-to-digital converter converts the analog signal sent by the sensor into a digital signal.

Computer Networking: A Top-Down Approach (7th Edition)
7th Edition
ISBN:9780133594140
Author:James Kurose, Keith Ross
Publisher:James Kurose, Keith Ross
Chapter1: Computer Networks And The Internet
Section: Chapter Questions
Problem R1RQ: What is the difference between a host and an end system? List several different types of end...
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Answer Only with True or False?
1
4. Many ARM processors are bi-endian, because they can be configured to efficiently handle both big-
and little-endian data.
5. The frequency of the SSI is: f SSI = f BUS / (CPSDVSR* (1 - SCR)).
6. In the early 1980s, computer designers recommended that computers should use fewer instructions
with simple constructs so that they can be executed much faster within the CPU without having to use
memory.
7. Many embedded systems must continually react to changes in the system's environment and must
compute certain results in real time without any delay.
8. In the ARM® Cortex -M processor, there are three status registers named Application Program
Status Register (APSR), the Interrupt Program Status Register (IPSR), and the Execution Program
Status Register (EPSR).
9. Be careful when connecting the backlight, because at 3.3V the back light draws 80 mA. If you want a
dimmer back light connect 3.3V to a 100-ohm resistor, and the other end of the resistor to the LED/BL
pin.
10. An analog-to-digital converter converts the analog signal sent by the sensor into a digital signal.
Transcribed Image Text:Answer Only with True or False? 1 4. Many ARM processors are bi-endian, because they can be configured to efficiently handle both big- and little-endian data. 5. The frequency of the SSI is: f SSI = f BUS / (CPSDVSR* (1 - SCR)). 6. In the early 1980s, computer designers recommended that computers should use fewer instructions with simple constructs so that they can be executed much faster within the CPU without having to use memory. 7. Many embedded systems must continually react to changes in the system's environment and must compute certain results in real time without any delay. 8. In the ARM® Cortex -M processor, there are three status registers named Application Program Status Register (APSR), the Interrupt Program Status Register (IPSR), and the Execution Program Status Register (EPSR). 9. Be careful when connecting the backlight, because at 3.3V the back light draws 80 mA. If you want a dimmer back light connect 3.3V to a 100-ohm resistor, and the other end of the resistor to the LED/BL pin. 10. An analog-to-digital converter converts the analog signal sent by the sensor into a digital signal.
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