A. Surgical treatment room
B. Public terminal
C. Patient information and management system
D. Telemedicine assistance and training
A. 802. 1x
B. M-LAG
C. VXLAN
D. BFD
A. T10 PI
B. SHA
C. CRC
A. Severe wear > 85%
B. Mid wear < 50%
C. Moderate wear: 50% <&&<85%
D. Mid-wear < 25%
A. Different levels interconnection among high-end, mid-range, and entry-level storage systems of OceanStor
B. Different vendors interconnection among Huawei, EMC, and HDS storage systems
C. Different types interconnection among OceanStor Dorado, OceanStor V3, and OceanStor V5
D. Different generations interconnection between OceanStor V5 and OceanStor V3
A. True
B. False
A. 70,000
B. 80,000
C. 60,000
D. 50,000
A. The NVMe architecture supports increased I/O concurrency
B. The CPU can directly access devices through NVMe. There is no need for SAS protocol conversion
C. None of the above
D. Interaction times of the NVMe protocols are only half that of the SAS protocols
A. CPU chip
B. AI chip
C. BMC chip
D. SSD controller chip
E. Multi-protocol interface chip
A. 16KB_70%Read_100% Random
B. 8KB_100%Read_70%Radom
C. 8KB_70%Read_100%Random
A. Potential for dictionary attacks
B. Open SSID data can be encrypted
C. Meet NSA/SuiteB security requirements of governments and banks
D. Even if the attacker obtains the intermediate key. the data cannot be decrypted
A. 4 controllers per 4U
B. 4 controllers per 3U
C. 3 controllers per 3U
D. 2 controllers per 2U
A. 20 km
B. 50 km
C. 0 km
D. 100 km
A. 25 disks per 1U
B. 36 disks per 2U
C. 36 disks per 1U
D. 25 disks per 2U
A. Both mission-critical and mid-range storage systems support upgrade over a single link.
B. The link between the host and the storage system is interrupted during the upgrade.
C. Controllers do not restart during the upgrade. Services are not impacted and hosts are unaware of the upgrade.
D. Mid-range storage systems do not support upgrade over a single link.
E. Component-based upgrade greatly shortens the upgrade time.
A. Bandwidth
B. SNR
C. Dielectric constant
D. Spatial stream