What should I enter in the Gradify: GPA & Graduation Planner?
Use known values in the units shown beside each field. Keep every input within a realistic range and convert units before comparing the result with another source.
Gradify / University tools
Choose a tool, then select your university inside it.
Answer first
Use Gradify to calculate semester and cumulative GPA, compare grading scales, and plan a graduation path. Delta Engineering students can also import a transcript, check prerequisites, edit detected student details, and build semester plans. Always confirm program rules, course availability, and official records with the university before registration.
Calculate semester and cumulative GPA, then plan the grades you need next.
Explore gpa calculator ↗Transcript & degree planImport a Delta Engineering transcript, check prerequisites, and plan your remaining semesters.
Explore graduation planning ↗University grading rulesChoose your university to explore its grading scale and understand how points are calculated.
Explore grading guide ↗Design guide
Technical content reviewed
Worked approach
Enter completed courses and grades to calculate GPA, then use the Delta Engineering planner to test prerequisites and a semester-by-semester graduation path. Change one input at a time, confirm the units, and compare the result with an independent calculation or relevant datasheet.
Common decisions
Use known values in the units shown beside each field. Keep every input within a realistic range and convert units before comparing the result with another source.
Imported transcripts and calculated plans must be checked against official records and academic advising
Repeat the worked example, check the units and assumptions, then compare the output with a second calculation, a trusted reference, or a measurement from the real system.
Related build evidence
Explore a multi-part engineering project planned across hardware, software, sensing, and an operator interface.
See the projectApply it to real hardware
Share the requirements, inputs, hardware limits, expected output, and how the result will be tested in the complete system.
Discuss the system