B.) The gravitational force is balanced out by the force of friction.
C.) The gravitational force between them is extremely small.
D.) The gravitational attraction is balanced by an equal and opposite gravitational repulsion
Answer:
C.) The gravitational force is balanced out by the force of friction.
Answer:
C. The gravitational force between them is extremely small.
Explanation:
The force of gravity is based off of the mass and distance of two objects. Stephen and Andy don't have large enough masses to feel an effect.
Answer:
Decrease the friction between the wheels and the track.
Explanation:
Decrease the friction between the wheels and the track. Friction opposes motion. If the amount of friction is decreased, the speed of the cars should increase.
This answer is for the question on usa testprep
Answer:
the answer to the question is calcium
Calcium chloride is the most soluble salt in ice water due to its ability to lower the freezing point of water more than other salts.
When it comes to solubility in ice water, the most soluble salt would be the one that can lower the freezing point of water the most. Sodium chloride (NaCl) and its analogs calcium chloride (CaCl₂) and magnesium chloride (MgCl₂) are often used to melt ice on roads and sidewalks because they have lower freezing points than pure water. Among these salts, calcium chloride would be the most soluble in ice water. The group 2 metal salts, such as calcium chloride, dissociate to yield three particles per formula unit and provide a larger depression of the freezing point compared to sodium chloride, which dissociates to yield only two particles per formula unit.
#SPJ3
The time at which the current through the inductor reaches 63% of the maximum current is 4.85 s
The current is defined as the flow of the charge in the circuit is is the rate of flow of the charge.
At t=0 s there is no current in the circuit because the switch is not closed and the circuit is not complete. The current across the LR circuit increases exponentially, when the switch is closed, and becomes steady after a certain time.
Given that
The value of resistor is .120 ohm
The value of resistor is .330 ohm
The value of resistor is .240ohm
The value of the inductor is .1.6 mh
The voltage applied across the circuit is .9 V
To determine the value of effective resistance of this circuit we need to look at the circuit from inductor’s side i.e., from inductor’s side the resistors is connected in series with the parallel combination of resistors
The effective resistance of the circuit is:
…… (1)
Here, is the effective resistance of the circuit. Now substituting the values.
The current through the inductor is:
...... (2)
Here, is the current across the inductor, io is the maximum current in the circuit and L is the inductance across the inductor.
The current across the inductor is equal to the 63% of the maximum current in the circuit.
The current across the inductor is:
i=0.63io
Substitute 0.63io for 328 ohm , for 1.6 mH and for L in equation (2).
Simplify the above expression.
Taking natural log on both sides and simplify.
Thus, the time at which the current through the inductor reaches 63% of the maximum current is
To know more about current follow
The time at which the current through the inductor reaches 63% of the maximum current is or
.
Further Explanation:
At there is no current in the circuit because the switch is not closed and the circuit is not complete. The current across the LR circuit increases exponentially, when switch is closed, and becomes steady after certain time.
Given:
The value of resistor is .
The value of resistor is .
The value of resistor is .
The value of the inductor is .
The voltage applied across the circuit is .
Concept:
To determine the value of effective resistance of this circuit we need to look at the circuit from inductor’s side i.e., from inductor’s side the resistors is connected in series with the parallel combination of resistors
and
.
The effective resistance of the circuit is:
…… (1)
Here, is the effective resistance of the circuit.
Substitute the for
,
for
and
for
in equation (1).
The current through the inductor is:
...... (2)
Here, is the current across the inductor,
is the maximum current in the circuit and
is the inductance across the inductor.
The current across the inductor is equal to the 63% or times of the maximum current in the circuit.
The current across the inductor is:
Substitute for
,
for
and
for
in equation (2).
Simplify the above expression.
Taking natural log on both sides and simplify.
Thus, the time at which the current through the inductor reaches 63% of the maximum current is or
.
Learn more:
1. Conservation of energy brainly.com/question/3943029
2. Average translational energy brainly.com/question/9078768
3. The motion of a body under friction brainly.com/question/4033012
Answer Details:
Grade: Middle School
Subject: Physics
Chapter: Current Electricity
Keywords:
Resistor circuit, LR circuit, current, current across inductor, time constant, 4.85 microsecond, 4.85 microsec, 4.85 micros, 4.85*10-6 s, 4.85*10^6 s, 4.85*10-6 sec, 4.85*10^6 sec.