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1. Draw the graphs for the following tables of values, with suitable scales on the axes. (c) Interest on deposits for a year. (iii) To get an interest of Rs. 280 per year, how much money should be deposited?
13
Oct
1. Draw the graphs for the following tables of values, with suitable scales on the axes. (c) Interest on deposits for a year. (iii) To get an interest of Rs. 280 per year, how much money should be deposited? 1. Draw the graphs for the following tables of values how much money should be deposited? [...]
1. Draw the graphs for the following tables of values, with suitable scales on the axes. (c) Interest on deposits for a year. (ii) Use the graph to find the interest on Rs 2500 for a year.
13
Oct
1. Draw the graphs for the following tables of values, with suitable scales on the axes. (c) Interest on deposits for a year. (ii) Use the graph to find the interest on Rs 2500 for a year. 1. Draw the graphs for the following tables of values with suitable scales on the axes. (c) Interest [...]
1. Draw the graphs for the following tables of values, with suitable scales on the axes. (b) Distance travelled by a car (ii) What was the time when the car had covered a distance of 100 km since it’s start?
13
Oct
1. Draw the graphs for the following tables of values, with suitable scales on the axes. (b) Distance travelled by a car (ii) What was the time when the car had covered a distance of 100 km since it’s start? 1. Draw the graphs for the following tables of values with suitable scales on the [...]
1. Draw the graphs for the following tables of values, with suitable scales on the axes. (b) Distance travelled by a car (i) How much distance did the car cover during the period 7.30 a.m. to 8 a.m.?
13
Oct
1. Draw the graphs for the following tables of values, with suitable scales on the axes. (b) Distance travelled by a car (i) How much distance did the car cover during the period 7.30 a.m. to 8 a.m.? 1. Draw the graphs for the following tables of values with suitable scales on the axes. (b) [...]
1. Draw the graphs for the following tables of values, with suitable scales on the axes. (a) Cost of apples
13
Oct
1. Draw the graphs for the following tables of values, with suitable scales on the axes. (a) Cost of apples 1. Draw the graphs for the following tables of values with suitable scales on the axes. (a) Cost of apples October 13, 2020 Category: Chapter 15 - Introduction to Graphs , Maths , NCERT Class [...]
4. State whether True or False. Correct that are false. (iii) The coordinates of the origin are (0, 0).
13
Oct
4. State whether True or False. Correct that are false. (iii) The coordinates of the origin are (0, 0). 0 ) 4. State whether True or False. Correct that are false. (iii) The coordinates of the origin are (0 October 13, 2020 Category: Chapter 15 - Introduction to Graphs , Maths , NCERT Class 8 [...]
An electron is accelerated from rest through a potential difference V. This electron experiences a force F in a uniform magnetic field. On increasing the potential difference to V’, the force experienced by the electron in the same magnetic field becomes 2F. Then, the ratio (V’/V) is equal to
13
Oct
An electron is accelerated from rest through a potential difference V. This electron experiences a force F in a uniform magnetic field. On increasing the potential difference to V’, the force experienced by the electron in the same magnetic field becomes 2F. Then, the ratio (V’/V) is equal to An electron is accelerated from rest [...]
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An electron is accelerated from rest through a potential difference V. This electron experiences a force F in a uniform magnetic field. On increasing the potential difference to V' ,
the force experienced by the electron in the same magnetic field becomes 2F. Then ,
the ratio (V'/V) is equal to ,
A proton of mass 1.67 x 10^ -27 kg and charge 1.67 x 10^-19 C is projected with a speed of 2 x 10^6 m/s at an angle of 60 degree to the X – axis. If a uniform magnetic field of 0.10 T is applied along Y – axis , the path of proton is
13
Oct
A proton of mass 1.67 x 10^ -27 kg and charge 1.67 x 10^-19 C is projected with a speed of 2 x 10^6 m/s at an angle of 60 degree to the X – axis. If a uniform magnetic field of 0.10 T is applied along Y – axis , the path of proton [...]
A current carrying loop is placed in the non-uniform magnetic field whose variation in space is shown in fig. Direction of magnetic field is into the plane of paper. The magnetic of paper. The magnetic force experienced by the loop is
13
Oct
A current carrying loop is placed in the non-uniform magnetic field whose variation in space is shown in fig. Direction of magnetic field is into the plane of paper. The magnetic of paper. The magnetic force experienced by the loop is A charged particle moving along positive x-direction with a velocity v enters a region [...]
A uniform magnetic field exist in a region which forms an equilateral triangle of side a. The magnetic field is perpendicular to the plane of the triangle . A charged q enters into this magnetic field perpendicular to a side with speed v. The charge enters from midpoint and leaves the field from midpoint of other side. Magnetic induction in the triangles is
13
Oct
A uniform magnetic field exist in a region which forms an equilateral triangle of side a. The magnetic field is perpendicular to the plane of the triangle . A charged q enters into this magnetic field perpendicular to a side with speed v. The charge enters from midpoint and leaves the field from midpoint of [...]