Answer:
Energy cant be created or lost, it only changes form.
Explanation:
The answer above is correct.
Explanation:
Total mass = 90 + 90 + 30 kg = 210 kg
Normal force = 210 kg ( 9.81 m/s^2) = 2060.1 N
Force of friction to overcome = normal force x coeff of static friction
F = 2060.1 x .15 = ~ 309 N to get the cart moving...
A rigid, 2.50 L bottle contains 0.458 mol He. The pressure of the gas inside the bottle is 1.83 atm. If 0.713 mol Ar is added to the bottle and the pressure increases to 2.05 atm, what is the change in temperature of the gas mixture?
The initial temperature of the gas is
wrong 137
⇒ 122 K. correct on E.D.G
Answer:
Explanation:
given,
two identical spring have identical spring constant
mass 'm' is hanging on one spring and mass of '2m' on another wall.
energy of the two system is same
energy of the system having mass 'm'
energy of the system having mass '2m'
now, Energy are same
we know
Answer:
1.time zones
2.The coriolis effect
3. triangles
Explanation:
1. day and night happen at different times at different places; it's always day somewhere and night another.
2. the coriolis effect means freely moving things (like cannonballs or hurricane winds) are deflected to the right - but only if your north of the equator if you're south of the equator they're deflected left.
3. if you walk a certain distance and make three right angle you can successfully make a triangles with three 90 degree angles which is impossible on a flat surface.
(1) increasing the wire’s length
(2) increasing the wire’s resistivity
(3) decreasing the wire’s temperature
(4) decreasing the wire’s diameter
Explanation :
We know that the resistance of the wire is given by :
Where
is the resistivity
l is the length of the wire
A is the area of the wire.
Another factor on which the resistance of wire depends is temperature. It is given by :
So, it is clear that the resistance of the wire is directly proportional to the temperature. It we want to decrease the resistance of the piece, its temperature should be decreased.
So, the correct option is (3) " decreasing the wire’s temperature ".
Decreasing the wire’s temperature decreases the resistance of a piece of copper wire.
Resistance is a type of opposition force due to which the flow of current is reduced in the material or wire. Resistance is the enemy of the flow of current.
The relation of resistance with length and thickness is given by ;
The value of resistance is directly propotional to length and inversly propotional to the area or thickness of the wire.
As the value of temperature increases, the value of resistance in the material is increasing. Length, temperature, and thickness are the factors that affect the resistance of a material.
Resistance of the wire is directly propotional to the temperature. On decreasing the temperature the resistance of the wire is also decreasing.
Hence decreasing the wire’s temperature decreases the resistance of a piece of copper wire.
To learn more about the resistance refer to the link;