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All three types of cryptography schemes have unique function mapping to specific applications. For example, the symmetric key( ) approach is typically used for the encryption of data providing ( ) , whereas asymmetric key cryptography is mainly used in key ( ) and nonrepudiation , thereby providing confidentiality and authentication. The hash ( ) (noncryptic), on the other hand, does not provide confidentiality but provides message integrity, and cryptographic hash algorithms provide message ( ) and identity of peers during transport over insecure channels.

A.Cryptography

B.decode

C.privacy

D.security@@@SXB@@@A.Conduction

B.confidence

C.confidentiality

D.connection@@@SXB@@@A.Authentication

B.structure

C.encryption

D.exchange@@@SXB@@@A.Algorithm

B.Secure

C.structure

D.encryption@@@SXB@@@A.Confidentiality

B.integrity

C.service

D.robustness


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更多 “ All three types of cryptography schemes have unique function mapping to specific applications. For example, the symmetric key( ) approach is typically used for the encryption of data providing ( ) , whereas asymmetric key cryptography is mainly used in key ( ) and nonrepudiation , thereby providing confidentiality and authentication. The hash ( ) (noncryptic), on the other hand, does not provide confidentiality but provides message integrity, and cryptographic hash algorithms provide message ( ) and identity of peers during transport over insecure channels.A.CryptographyB.decodeC.privacyD.security@@@SXB@@@A.ConductionB.confidenceC.confidentialityD.connection@@@SXB@@@A.AuthenticationB.structureC.encryptionD.exchange@@@SXB@@@A.AlgorithmB.SecureC.structureD.encryption@@@SXB@@@A.ConfidentialityB.integrityC.serviceD.robustness ” 相关考题
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