The kind of weather would an occluded front likely bring is much precipitation. The correct option is (b).
An occluded front happens when a warm front is passed by a cold front, which causes the cold air mass to elevate the warm air mass off the ground. Cloud formation and precipitation may result from this lifting of warm air.
When heated air is hoisted into the atmosphere and cooled, it condenses to form clouds. Ultimately results in rain or different types of precipitation.
Therefore, an occluded front is feasible to produce a good amount of precipitation. Depending on the atmospheric instability, cloudy skies, rain or showers, and occasionally thunderstorms can be found along an occluded front.
Hence, the kind of weather would an occluded front likely bring is much precipitation. The correct option is (b).
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Which would you use to determine the direction of the field lines around a magnet?
Which would you use with a circuit to determine if a magnet was moving in close proximity to the
circuit?
Iron shavings ,compass and galvanometer use to determine the direction of the magnetic field lines around a magnet.
An electromagnet is a magnet whose magnetic field is generated by an electric current. Wire coiled into a coil is used to make electromagnets.
A current flowing through the wire produces a magnetic field that is focused in the hole.
A tiny compass may be used to map out magnetic field lines. As illustrated, The compass is moved from point to point around a magnet, with a small line drawn in the direction of the needle at each point.
The course of the magnetic field line is then shown by joining the lines together.
Hence, iron shavings ,compass and galvanometer use to determine the direction of the iron magnetic field lines around a magnet.
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The Answer are:
1. iron shavings
2. compass
3. galvanometer
Give me Brainliest!!!
Answer:
The acceleration of the car is
Explanation:
We are assuming rightward coordinate positive and all quantities are along this direction
We know,
where a - acceleration, v=velocity, t=time and x=displacement
multiply by dx in both sides
but we know
Therefore,
Here we integrate both sides with proper limits
x ranges from 0 to 110 as v ranges from 29 to 34
p = 0, r = 110, q = 29, s = 34
a is given as constant thus can be pulled out of the integration
Therefore,
Accelaration of the car is
Note:
Here moving to the right doesn't mean anything significant other than the fact that all quantities are pointing in that direction. Therefore obtained acceleration is also towards the right
If you know equation of motion for constant acceleration as
you can plug in values in this equation to obtain value of a
v - final velocity
u - initial velocity
s - displacement
Answer:
This is because of the first Newton's law:
If an object is at rest or at moving with constant velocity, it will remain doing that untill a force is applied on the object.
Now, if the car is still, and then it speeds, the box will want to keep the movement that it was doing before, so it will slide in the seat until the box gets the same speed as the car (this can happen when the box hits the back of the seat, and the back of the seat "pushes" the box)
Now, the same happens when the car stops, now the box has a velocity and when the car stops the box will keep moving forward, because there is no force that stops the box.