X-ray scanners
In a series circuit, the current in all points of the circuit is the same. Hence, current through the resistor r2 is same as that of r1 that is 1.5 amperes.
A circuit is the path through which current is passing which can be of open circuit or closed circuit. There are two ways in which the components are connected in the circuit namely, series and parallel.
In a series circuit, the electrical components are connected in a series fashion. Here, the current is the same in all points of the series circuit. But voltage will be different.
In the case of parallel circuits, the components are connected in a parallel fashion. The current passing through each parallelly connected device will be different.
Here, the two resistors are connected in series. Hence, the current passing through is the same that is 1.5 A for r2 also.
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Answer:
14.5 joules
50.5 %
Explanation:
Energy initial +work= energy final
28.7 + work = 14.2
friction did - 14.5 joules of work so percantage of work lost is just 14.5/28.7 *100 or 50.5 %
Good morning Brianiac
Plateau period are times in life when there is no downhill or downhill happened in your life.
It was my pleasured to help you :0
the load distance is approximately 0.2 meters or 20 cm. To calculate the load distance in this scenario, we can use the principle of moments, which states that the sum of clockwise moments about a point is equal to the sum of counterclockwise moments about the same point when an object is in equilibrium.
In this case, we have two forces:
1. A known force of 325 N applied at a distance of 40 cm (0.4 meters) from the point of interest.
2. An unknown force of 650 N applied at an unknown distance, which we need to find.
Let's assume the unknown distance is "d" meters.
Using the principle of moments:
Clockwise Moment = Counterclockwise Moment
(325 N) * (0.4 m) = (650 N) * (d m)
Solving for "d":
d = (325 N * 0.4 m) / 650 N
d ≈ 0.2 meters
So, the load distance is approximately 0.2 meters or 20 cm.
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gluons
hadrons
nucleons
All particles madeup of two or more quarks held together by a force are called ; ( C ) Hadrons
Hadrons are subatomic particles which are made of two or more quarks which are held firmly by a force similar to electric force. An example of Hadron is Baryon which contains three quarks which are held closely together.
Hence we can conclude that All particles made of quarks are called Hadrons
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Answer:
All particles made of quarks are called hadrons.