gptkbp:instanceOf
|
patent
|
gptkbp:abstract
|
A method for enhancing the efficiency of a specific industrial process.
|
gptkbp:applicationNumber
|
US_06/703,123
|
gptkbp:applicationPublication
|
gptkb:US_460000018_A1
|
gptkbp:applicationType
|
Utility
|
gptkbp:assignee
|
gptkb:XYZ_Corporation
|
gptkbp:citedBy
|
gptkb:US_470000019_B2
|
gptkbp:claims
|
20
|
gptkbp:coInventor
|
Jane_Smith
|
gptkbp:country
|
gptkb:United_States
|
gptkbp:examiner
|
gptkb:Michael_Johnson
|
gptkbp:expirationDate
|
2006-02-20
|
gptkbp:fieldOfInvention
|
Industrial Processes
|
gptkbp:fieldOfUse
|
Manufacturing
|
gptkbp:filingDate
|
1985-02-20
|
gptkbp:hasFieldOfUse
|
Environmental Engineering
Process Engineering
Chemical_Engineering
|
https://www.w3.org/2000/01/rdf-schema#label
|
US 460000018 B2
|
gptkbp:internationalClassification
|
C02F 1/00
|
gptkbp:inventor
|
gptkb:John_Doe
|
gptkbp:issueDate
|
1986-07-15
|
gptkbp:issuedBy
|
gptkb:United_States_Patent_and_Trademark_Office
|
gptkbp:language
|
English
|
gptkbp:legalStatus
|
Granted
|
gptkbp:maintenanceFee
|
Paid
|
gptkbp:material
|
Chemical A
Chemical_B
Chemical_C
|
gptkbp:patentCitation
|
gptkb:US_810000053_B2
gptkb:US_850000057_B2
gptkb:US_450000017_B2
gptkb:US_820000054_B2
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gptkb:US_520000024_B2
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gptkb:US_920000064_B2
gptkb:US_950000067_B2
gptkb:US_870000059_B2
US 600000032 B2
US 680000040 B2
US 690000041 B2
US 700000042 B2
US 710000043 B2
US 720000044 B2
US 730000045 B2
US 740000046 B2
US 750000047 B2
US 760000048 B2
US 770000049 B2
US_660000038_B2
|
gptkbp:patentFamily
|
US_460000018_B2,_US_470000019_B2
|
gptkbp:patentType
|
Granted Patent
|
gptkbp:priorityDate
|
1984-02-20
|
gptkbp:relatedTo
|
gptkb:US_450000017_B2
|
gptkbp:status
|
Active
|
gptkbp:technique
|
Statistical Analysis
Experimental Testing
Simulation Modeling
|
gptkbp:technology
|
Process Optimization
|
gptkbp:title
|
Method for improving efficiency of a process
|