1
GATE CE 2017 Set 1
Numerical
+1
-0
Consider the following partial differential equation: $$\,\,3{{{\partial ^2}\phi } \over {\partial {x^2}}} + B{{{\partial ^2}\phi } \over {\partial x\partial y}} + 3{{{\partial ^2}\phi } \over {\partial {y^2}}} + 4\phi = 0\,\,$$ For this equation to be classified as parabolic, the value of $${B^2}$$ must be ____________.
Your input ____
2
GATE CE 2016 Set 1
MCQ (Single Correct Answer)
+1
-0.3
The type of partial differential equation $${{{\partial ^2}p} \over {\partial {x^2}}} + {{{\partial ^2}p} \over {\partial {y^2}}} + 3{{{\partial ^2}p} \over {\partial x\partial y}} + 2{{\partial p} \over {\partial x}} - {{\partial p} \over {\partial y}} = 0$$ is
3
GATE CE 2014 Set 2
MCQ (Single Correct Answer)
+1
-0.3
The integrating factor for the differential equation $${{dP} \over {dt}} + {k_2}\,P = {k_1}{L_0}{e^{ - {k_1}t}}\,\,$$ is
4
GATE CE 2011
MCQ (Single Correct Answer)
+1
-0.3
The solution of the differential equation $${{dy} \over {dx}} + {y \over x} = x$$ with the condition that $$y=1$$ at $$x=1$$ is
Questions Asked from Marks 1
GATE CE 2025 Set 2 (1) GATE CE 2025 Set 1 (1) GATE CE 2024 Set 2 (2) GATE CE 2024 Set 1 (2) GATE CE 2023 Set 2 (1) GATE CE 2023 Set 1 (1) GATE CE 2022 Set 2 (1) GATE CE 2022 Set 1 (2) GATE CE 2017 Set 1 (3) GATE CE 2016 Set 1 (1) GATE CE 2014 Set 2 (1) GATE CE 2011 (1) GATE CE 2010 (2) GATE CE 2009 (1) GATE CE 2007 (2) GATE CE 2006 (1) GATE CE 2001 (1) GATE CE 1999 (1) GATE CE 1997 (1) GATE CE 1995 (1) GATE CE 1994 (1)
GATE CE Subjects
Engineering Mechanics
Strength of Materials Or Solid Mechanics
Structural Analysis
Construction Material and Management
Reinforced Cement Concrete
Steel Structures
Geotechnical Engineering
Fluid Mechanics and Hydraulic Machines
Hydrology
Irrigation
Geomatics Engineering Or Surveying
Environmental Engineering
Transportation Engineering
Engineering Mathematics
General Aptitude