Maths
General
Easy
Question
In the figure, if
 13°
 23°
 36°

The correct answer is: 23°
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The value of x if
The value of x if
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In the given figure XOY is a straight line Then XOP is
In the given figure XOY is a straight line Then XOP is
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In the figure Then the value of x^{0} is
In the figure Then the value of x^{0} is
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In the adjacent figure, AB//CD , then the value of x is
In the adjacent figure, AB//CD , then the value of x is
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The number of possible lines of symmetry for the following figure is
The number of possible lines of symmetry for the following figure is
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In the following figure if l1  l2 , then the value of y is
In the following figure if l1  l2 , then the value of y is
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In the following figure ABF = 140° If the line BD bisects CBE, then the value of x is
In the following figure ABF = 140° If the line BD bisects CBE, then the value of x is
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In the following figure, AB and CD are intersecting at O, and if = 40°, then the values of x and y are
In the following figure, AB and CD are intersecting at O, and if = 40°, then the values of x and y are
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If ABC is a triangle in which = = , then the measure of each of the angles is
insufficient data
If ABC is a triangle in which = = , then the measure of each of the angles is
MathsGeneral
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Measure of in the following figure is
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A particle executing SHM while moving from one extremity is found to be at distances x_{1}, x_{2} and x_{3} from the mean position at the end of three successive seconds. The time period of oscillation is (' ' used in the following choices is given by )
A particle executing SHM while moving from one extremity is found to be at distances x_{1}, x_{2} and x_{3} from the mean position at the end of three successive seconds. The time period of oscillation is (' ' used in the following choices is given by )
physicsGeneral
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A block of mass m is suspended by different springs of force constant shown in figure. Let time period of oscillation in these four positions be and . Then
i)
ii)
iii)
iv)
A block of mass m is suspended by different springs of force constant shown in figure. Let time period of oscillation in these four positions be and . Then
i)
ii)
iii)
iv)
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A pendulum has time period T for small oscillations. An obstacle P is situated below the point of suspension O at a distance . The pendulum is releases from rest. Throughout the motion the moving string makes small angle with vertical. Time after which the pendulum returns back to its initial position is
A pendulum has time period T for small oscillations. An obstacle P is situated below the point of suspension O at a distance . The pendulum is releases from rest. Throughout the motion the moving string makes small angle with vertical. Time after which the pendulum returns back to its initial position is
physicsGeneral
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A mass m=8 kg is attached to a spring as shown in figure and held in position so that the spring remains unstretched. The spring constant is 200 N/m. The mass m is then released and begins to undergo small oscillations. The maximum velocity the mass will be
A mass m=8 kg is attached to a spring as shown in figure and held in position so that the spring remains unstretched. The spring constant is 200 N/m. The mass m is then released and begins to undergo small oscillations. The maximum velocity the mass will be
physicsGeneral
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The two blocks of mass and are kept on a smooth horizontal table as shown in figure. Block of mass but not is fastened to the spring. If now both the blocks are pushed to the left so that the spring is compressed a distance . The amplitude of oscillation of block of mass after the system is released is
The two blocks of mass and are kept on a smooth horizontal table as shown in figure. Block of mass but not is fastened to the spring. If now both the blocks are pushed to the left so that the spring is compressed a distance . The amplitude of oscillation of block of mass after the system is released is
physicsGeneral