Z)
Let A and B be two sets such that n (A) = 3 and n(B) = 2. If (x, 1), (y, 2), (z, 1) are in A × B, find A and B, where x , y , z are distinct elements.
22
Oct
Let A and B be two sets such that n (A) = 3 and n(B) = 2. If (x, 1), (y, 2), (z, 1) are in A × B, find A and B, where x , y , z are distinct elements. 1 1) are in A × B 2 find a and b . [...]
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1 ,
1) are in A × B ,
2 ,
find a and b . ,
Let A and B be two sets such that n (A) = 3 and n(B) = 2. If (x ,
where x ,
y ,
z are distinct elements. ,
Z) ,
70. Using Euler’s formula, find the value of unknown x, y, z, p, q, r, in the following table.
19
Jul
70. Using Euler’s formula, find the value of unknown x, y, z, p, q, r, in the following table. -q 70. Using Euler’s formula find the value of unknown x in the following table. p R y Z) July 19, 2021 Category: Chapter 10 - Visualising Solid Shapes , Maths , NCERT Class 8 ,
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-q ,
70. Using Euler’s formula ,
find the value of unknown x ,
in the following table. ,
p ,
R ,
y ,
Z) ,
The electric potential V at any point (x, y, z), all in metres in space is given by V = 4x^2 volt. The electric field at the point (1m, 0, 2m) in vector from
02
Dec
The electric potential V at any point (x, y, z), all in metres in space is given by V = 4x^2 volt. The electric field at the point (1m, 0, 2m) in vector from 2m) in vector from all in metres in space is given by V = 4x^2 volt. The electric field at the [...]
If A, Z, and N denote the mass number, the atomic number, and the neutron number for a given nucleus, we can say that (1) N = Z + A (2) isobars have the same A but different Z and N
18
Oct
If A, Z, and N denote the mass number, the atomic number, and the neutron number for a given nucleus, we can say that (1) N = Z + A (2) isobars have the same A but different Z and N and N denote the mass number and the neutron number for a given nucleus [...]
2. Consider the following parallelograms. Find the values of the unknown x, y, z
11
Oct
2. Consider the following parallelograms. Find the values of the unknown x, y, z 2. Consider the following parallelograms. Find the values of the unknown x y Z) October 11, 2020 Category: Chapter 3 - Understanding Quadrilaterals , Maths , NCERT Class 8 ,
2. Consider the following parallelograms. Find the values of the unknown x, y, z
11
Oct
2. Consider the following parallelograms. Find the values of the unknown x, y, z 2. Consider the following parallelograms. Find the values of the unknown x y Z) October 11, 2020 Category: Chapter 3 - Understanding Quadrilaterals , Maths , NCERT Class 8 ,
2. Consider the following parallelograms. Find the values of the unknown x, y, z
11
Oct
2. Consider the following parallelograms. Find the values of the unknown x, y, z 2. Consider the following parallelograms. Find the values of the unknown x y Z) October 11, 2020 Category: Maths , NCERT Class 8 ,
2. Consider the following parallelograms. Find the values of the unknown x, y, z
11
Oct
2. Consider the following parallelograms. Find the values of the unknown x, y, z 2. Consider the following parallelograms. Find the values of the unknown x y Z) October 11, 2020 Category: Chapter 3 - Understanding Quadrilaterals , Maths , NCERT Class 8 ,
2. Consider the following parallelograms. Find the values of the unknown x, y, z
11
Oct
2. Consider the following parallelograms. Find the values of the unknown x, y, z 2. Consider the following parallelograms. Find the values of the unknown x y Z) October 11, 2020 Category: Chapter 3 - Understanding Quadrilaterals , Maths , NCERT Class 8 ,
Two identical semicircular discs of mass ‘m’ each and radius ‘R’ are placed in the XY (horizontal) plane and the YZ (vertical) plane, respectively. They are so placed that they have their common diameter along the y-axis. Then, the moment of inertia In of the system about the appropriate axis is given by (In refers to moment of inertia about axis n-where n is X, Y, Z)
26
Sep
Two identical semicircular discs of mass ‘m’ each and radius ‘R’ are placed in the XY (horizontal) plane and the YZ (vertical) plane, respectively. They are so placed that they have their common diameter along the y-axis. Then, the moment of inertia In of the system about the appropriate axis is given by (In refers [...]
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respectively. They are so placed that they have their common diameter along the y-axis. Then ,
the moment of inertia In of the system about the appropriate axis is given by (In refers to moment of inertia about axis n-where n is X ,
Two identical semicircular discs of mass 'm' each and radius 'R' are placed in the XY (horizontal) plane and the YZ (vertical) plane ,
y ,
Z) ,