Question
I-V graph at two different temperatures $T _1$ and $T _2$ for a metallic wire. Which temperature is greater and why? Image

Answer

Slope of graph at the temperature $T_2$ is less. Hence resistance will be more at this temperature. With increase in temperature, resistance also increases. Hence, $T_2$ is greater.

Need a full question paper?

Generate a complete, print-ready paper with questions like this in minutes — across 16+ boards, with answer keys.

Start Generating Free

Similar questions

A heavy box is kept on a smooth inclined plane and is pushed up by a force F acting parallel to the plane. Does the work done by the force F as the box goes from A to B depend on how fast the box was moving at A and B? Does the work by the force of gravity depend on this?
57Co decays to 57Fe by $\beta^+-\text{ emission.}$- emission. The resulting 57Fe is in its excited state and comes to the ground state by emitting $\gamma-\text{rays}.$ The half-life of $\beta^+-\text{decay}$ is 270 days and that of the $\gamma-\text{emissions}$ is 10-8 s. A sample of 57Co gives 5.0 × 109 gamma rays per second. How much time will elapse before the emission rate of gamma rays drops to 2.5 × 109per second?
Explain self induction and obtain equation of self induced emf in a coil.
Derive an expression for the resistivity of a good conductor, in terms of the relaxation time of electrons.
A Galilean telescope is 27cm long when focused to form an image at infinity. If the objective has a focal length of 30cm, what is the focal length of the eyepiece?
Write limitations of Huygen's Principle.
Several capacitors of capacitance $C$ are connected in infinite number as shown in the figure. Find the value of total capacitance between points $A$ and $B$.
If water be used to construct a barometer, what would be the height of water column at standard atmospheric pressure (76cm of mercury)?
A free neutron beta-decays to a proton with a half-life of 14 minutes.
  1. What is the decay constant?
  2. Find the energy liberated in the process.
A body of mass m is placed on a table. The earth is pulling the body with a force mg. Taking this force to be the action what is the reaction?