If the voltage in a circuit is 12V and is connected to a single 3Ohm resistor, what is the current flowing through the circuit?

Answers

Answer 1

Answer:

12/30

Explanation:

v=ir

i=v/r

12/30=i


Related Questions

A motivated mule can accelerate an empty cart of mass m - 180 kg from rest to 5.0 m/s in 10 s.
If the cart is loaded with 550 kg of wood, how long will it take the mule to get the cart to 4.6 m/s? Assume a constant acceleration. Also assume the mule exerts the same force as when the cart is
empty

Answers

When the mass of the cart changes, the time to travel at 4.6 m/s is 28.11 s.

Acceleration of the mule

The acceleration of mule is calculated as follows;

a = v/t

a = 5/10

a = 0.5 m/s²

For constant applied force

F1 = F2

m₁v₁/t₁ = m₂v₂/t₂

(180 x 5) / 10 = (550 x 4.6)/t

90 = 2530/t

t = 2530/90

t = 28.11 s

Thus, when the mass of the cart changes, the time to travel at 4.6 m/s is 28.11 s.

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How does the law of conservation apply to Earth's Energy Budget?

Answers

Answer:

The balance between incoming energy from the sun and outgoing energy from Earth ultimately drives our climate. This energy balance is governed by the first law of thermodynamics, also known as the law of conservation of energy.

An object has a mass of 785g and a volume of 15cm cubed. What is its density

Answers

Answer:

52.33 repeating

Explanation:

Density is equal to the Mass of an object divided by its Volume. or p = m/V

You push a box out of a carpeted room and along a hallway with a waxed linoleum floor. While pushing the crate 3 m out of the room you exert a force of 28 N; while pushing it 4 m along the hallway you exert a force of 14 N. To bring it to a stop you exert a force of 5 N through a distance of 1.2 m, opposite to the motion. How much work do you do in all

Answers

The total work done is equal to 134 J.

Work

The work formula is characterized as the multiplication of the force performed and the distance in which the movement was performed, so that:

                                           [tex]W = F \times d[/tex]

Thus, it is enough to calculate the value of the work in each movement and add to find the total work, so that:

                                          [tex]W_1 = 3 \times 28 = 84J\\W_2= 4 \times 14 = 56J\\W_3 = (-1.2) \times 5 = 6J[/tex]

                                        [tex]84 + 56 + (-6) = 134J[/tex]

So, the total work done is equal to 134 J.

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in vision, the ____ stream controls identification of an object, and the ____ stream controls action toward the object.

Answers

Answer: In vision, the ventral stream controls identification of an object, and the dorsal stream controls action toward the object.

Explanation: The ventral stream is associated with object recognition and form representation.

Dorsal stream  a pathway that carries visual information from the primary visual cortex to the parietal lobe.

Hope it helps :)

Two point charges, 3.4 μC and -2.0 μC , are placed 5.0 cm apart on the x axis. Assume that the negative charge is at the origin, and the positive x-axis is directed from the negative charge to the positive. At what points along the x axis is the potential zero? Let V=0 at r=∞ .

Answers

The electric field is zero at x = -16.45cm

Data;

q1 = 3.4 μC q2 = -2.0 μC distance = 5cm

The Electric Field at point 0

As the 3μC is larger than -2.0μC  and the charges are opposite sign. The electric field will be zero at the negative axis.

Let the point be at x.

For an electric field to be equal to zero;

[tex]k(\frac{q_1}{d_1})^2 + k(\frac{q_2}{d_2})^2 = 0\\\frac{3.4}{(5-x)^2} - \frac{2}{x^2} = 0\\[/tex]

Let's solve for x using mathematical methods.

[tex]\frac{3.4x^2 - 2(5-x)^2}{(5-x)^2x^2}= 0\\ 3.4x^2 - 2(5-x^2) = 0\\3.4x^2 - 50 - 2x^2 + 20x = 0\\1.4x^2 +20x - 50 = 0[/tex]

Solving the above quadratic equation;

[tex]x = -16.45cm[/tex]

The electric field is zero at x = -16.45cm

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6 J of work is needed to stretch a spring from 10 cm to 12 cm and another 10 J is needed to stretch it from 12 cm to 14 cm, what is the natural length of the spring (in centimeters)

Answers

Answer:

9.8 cm

Explanation:

x = natural length

k*[(12 - x)² - (10 - x)²]/2 = 6            (1)

k*[(14 - x)² - (12 - x)²]/2 = 6 + 10     (2)

(1): k(144 + x² - 24x - 100 - x² + 20x) = 12

k(44 - 4x) = 12,

divide by 4, k(11 - x) = 3, k = 3/(11 - x)

(2): k(196 + x² - 28x - 144 - x² + 24x) = 32

k(52 - 4x) = 32

divide by 4, k(13 - x) = 8

3/(11 - x) * (13 - x) = 8

3(13 - x) = 8(11 - x)

39 - 3x = 88 - 8x

5x = 49

x = 9.8 cm

Essay on Outdoor skills

Answers

Answer and Explanation:

I can't write the essay for you, but I can give you useful tips on what information should be in your essay.

____________________________________

Outdoor skills basically have a similar concept to street smarts. With street smarts, you are knowledgeable in what to do on the streets, how to act, what signs and signals to look out for, and other things like that. With outside smarts, it's the same way. Except, I would say that it is a little less social.

Outside smarts could be something like camping, and surviving in general in the wild, such as:

- Creating a tent or shelter for yourself to sleep in.

- Finding food and knowing whether it is acceptable and safe to eat.

- Making sure that you are in a safe area that is okay for you to camp out in.

- Making sure that you have some sort of protection, whether that would be with a weapon, a tool, or something else.

- Making sure that you have safe water to drink that you brought with you.

- A back-up plan in case there is a reason that you need to leave.

- A first aid kit in case of injury.

- How to create a fire and use it safely.

- A way to get back home, with a plan and possibly even a compass.

____________________________________

I hope that this helps.

How does work affect energy between objects so it can cause a change in the form of energy?
O Work transfers energy.
O Work changes energy.
O Work increases energy.
O Work decreases energy.

Answers

Answer:

Work transfers energy

Explanation:

Work can affect energy by transfering energy between objects to result to a change in the amount and form of energy

How does light from a headlamp use a lens and a mirror to produce a narrow beam?

Answers

Answer:

AnSwEr iS BeLoW

Explanation:

Well according to https://van.physics.

The headlamp's concave mirror is open on one end, and the light bulb's filament is placed at or near the focus. Parallel ight rays, if they were coming into the headlamp from outside (say, the driver is driving his car in the direction of the setting sun), would converge near the filament of the light bulb

Hopes this helps :)

When a light bulb is placed at focus , the head lamp as a concave mirror will produce a narrow beam.

What is concave mirror?

Concave mirror is the spherical part of mirror which is painted from outside and the ray falling on this mirror forms a real image.

The concave mirror of headlamp is open on one end, and the bulb filament is placed at the focus. Parallel ight rays from outside will converge to form a narrow beam near the filament of the light bulb.

Thus, When a light bulb is placed at focus , the head lamp as a concave mirror will produce a narrow beam.

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relation between linear and cubical expansion?​

Answers

cubic expansion is 3 times the linear expansion. expressed mathematically as

[tex] \gamma = 3 \alpha [/tex]

A raised object has energy in its __________ __________ energy stores. What two words complete the sentence?

Answers

gravitational potential energy





When an object is lifted, work is done. When work is done in raising the height of an object, energy is transferred as a gain in the gravitational potential energy of the object. For example, suppose you lift a suitcase of mass through a height . The weight of the suit case is a downward force of size .




Please mark as brainliest

The complete statement is -

"A raised object has energy in its gravitational potential energy".

What is gravitational potential energy?                                Gravitational energy or gravitational potential energy is the potential energy a massive object has in relation to another massive object due to gravity. It is the potential energy associated with the gravitational field, which is released (converted into kinetic energy) when the objects fall towards each other. Gravitational potential energy increases when two objects are brought further apart.For two pairwise interacting point particles, the gravitational potential energy {U} is given by -

        [tex]${\displaystyle U=-{\frac {GMm}{R}}}[/tex]

Close to the Earth's surface, the gravitational field is approximately constant, and the gravitational potential energy of an object reduces to -  

        U = mgh

The force between a point mass {M} and another point mass {m} is given by Newton's law of gravitation -

       [tex]${\displaystyle F={\frac {GMm}{r^{2}}}}[/tex]

       To get the total work done by an external force to bring point mass

       {m} from infinity to the final distance {R} (for example the radius of      

       Earth) of the two mass points, the force is integrated with respect to    

       displacement -

       [tex]${\displaystyle W=\int _{\infty }^{R}{\frac {GMm}{r^{2}}}dr=-\left.{\frac {GMm}{r}}\right|_{\infty }^{R}}[/tex]

       [tex]${\displaystyle U=-{\frac {GMm}{R}}}[/tex]

Given is the statement as -

"A raised object has energy in its __________ __________ energy"

An object that is raised above the surface of earth {near to earth surface} than it has gravitational potential energy.

Therefore, the complete statement is -

"A raised object has energy in its gravitational potential energy".

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What is the relationship between frequency, wave length, and speed of a wave?

Answers

Answer:

Wave speed is the distance a wave travels in a given amount of time, such as the number of meters it travels per second. Wave speed is related to wavelength and wave frequency by the equation: Speed = Wavelength x Frequency. This equation can be used to calculate wave speed when wavelength and frequency are known.

Answer:

v = νλ

Explanation:

Let these be the denoted symbols for the values :-

Frequency = ν

Wavelength = λ

Speed = v

=> Then the relation is :

=> v = νλ

which issue was not a problem that had to be overcome for humans to travel into space
A.High levels of radiation
B.Extreme hot and cold temperatures
C.Lack of government support
D.Lack of oxygen

Answers

Lack of government support is not a problem faced by humans to travel to space.

What is Space travel?

Space exploration or travel refers to employing the use of astronomy and space technology by humans to travel outer space. This is carried out by astronomers using uncrewed robotic space probes and human spaceflight.

Therefore,lack of government support is not a problem faced by humans while traveling to space because it does not require government support and outer space have harsh weather's which are not conducive to humans living on Earth, there is also high level of radiations,emissions of dangerous rays because of it's closeness to sun and also lack of oxygen which can be as a result of non existence of plants that release oxygen during photosynthesis.

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A superelastic collision is one in which...

A. kinetic energy before the collision equals kinetic energy after the collision.

B. kinetic energy after the collision is zero.

C. kinetic energy before the collision is less than kinetic energy after the collision.

D. kinetic energy before the collision is greater than kinetic energy after the collision.

Answers

Answer:  ~Y/n here~ Your answer I believe would be:

A. kinetic energy before the collision equals kinetic energy after the collision.

(Hope this helps!)

C. Kinetic energy before the collision is less than kinetic energy after the collision.

I hope this helps you
:)

What combination do I need to use for this egg to survive a 5 meter drop?

Answers

Answer:

lunch box, cotton, toilet paper, and the foam peanuts

Explanation:

bc I did this experiment in 3rd grade =w="

Hope this helped! Have a nice day!

Please give brainliest when possible!

:3

Four metals were kept in contact with each other. The table below shows the initial temperature of the metals.

Metal Initial temperature
A. 30 degrees Celsius
B. 42 degrees Celsius
C. 25 degrees Celsius
D. 16 degrees Celsius

From which metal will heat flow into all the other metals?
O Metal A
O Metal B
O Metal C
O Metal D

Answers

Answer:

metal B

temperature flow from high region to low . metal B has more temperature than others

You will need these materials:

1 compass (available wherever science lab supplies, educational science materials, or party supplies are sold)
1 bar magnet (must be strong enough to move the compass)
2 pieces of white paper, partially overlapped and taped together to make an 11-inch square
pen or pencil
Stay safe! Keep the magnet away from all electronic devices, including cell phones and computers. Do not carry out this activity if you have an implanted device that contains metal.

Part A
Bring the compass and the magnet near one another. Verify that they are both magnetic and interact with each other. Like poles should repel, and unlike poles should attract.

Answers

Answer:

sorry really need points thanks tho

A wire loop having area 0.606 m2 is placed in a uniform magnetic field with the normal vector of the loop at a 75.1 degree angle to the field. The field has an initial magnitude of 2.91 Tesla and then is increased at a constant rate to 7.97 Tesla in 0.856 seconds. If a current of 0.0980 Amps is measured to flow through the wire during this time, what must the resistance of the wire be in Ohms

Answers

The resistance of the wire is is 36.55 ohms.

Induced emf of the coil

The induced emf in the loop is calculated by Faraday's law as follows;

emf = A(B₂- B₁)/t

emf = 0.606 (7.97 - 2.91)/0.856

emf = 3.58 V

Resistance of the wire

The resistance of the wire is calculated by using Ohms law as follows;

emf = IR

R = emf/I

R = 3.58/0.098

R = 36.55 ohms

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Help me pls, the lesson is simple machines

Answers

Answer:

1.pulley,screw,inclined plane

2.using simple machine properly with right way and precautions

Explanation:

3.cuz if they are not used properly they can cause injuries to organs

The first user who answer is correct :)

005 10.0 points
A football punter accelerates a 0.52 kg football
from rest to a speed of 8.6 m/s in 0.27 s. What
constant force does the punter exert on the ball?
Answer in units of N.

Answers

Answer:

16.6 N

Explanation:

m = 0.52 kg, v₀ = 0, v = 8.6 m/s, t = 0.27 s

a = (v - v₀)/t

F = ma = m(v - v₀)/t = 0.52 (8.6 - 0)/0.27 = 16.6 N

Two charged particles with opposite signs but the same magnitude of charge enter a magnetic field that is perpendicular to their direction of motion. How will the motion of the two particles differ when they enter the magnetic field?

Answers

Answer:

the two particles will go opposite directions, along clockwise circle and counter-clockwise circle, respectively.

Explanation:

charge = ±q, velocity = v, magnetic field = B

force F = q v x B

opposite q will give opposite force, so the two particles will go opposite directions, along clockwise circle and counter-clockwise circle, respectively.

How much force is needed to stretch a spring 1.2m if the spring constant is 8.5 N/m?

Answers

Explanation:

spring constant k::8.5

and displacement x::1.2

f:? f: k×x

8.5×1.2:10.2N

A container of an ideal gas at 1 atm is compressed to 1/3 its volume, with the temperature held constant, what is its final pressure?

Answers

Answer:

0.013atm

Explanation:

every gas contains 22.4 GameCube at atmospheric pressure

A container of an ideal gas at 1 atm is compressed to 1/3 its volume, with the temperature held constant, then its final pressure would be 3 atm

What is an ideal gas?

It is an imaginary gas for which the volume occupies by it is negligible, this gas does not exist in a practical situation and the concept of an ideal gas is only the theoretical one, the real gases approach the behaviors of an ideal gas at a very high temperature and very low pressure.

As given in the problem A container of an ideal gas at 1 atm is compressed to 1/3 its volume, with the temperature held constant

By using the Boyle's  law equation for the given problem

P₁V₁=P₂V₂

By substituting the values in the above equation

P₁ = 1 atmospheric pressure

V₁= V

P₂ =?

V₂= V/3

1×V=P₂×V/3

P₂ = 3V/V

P₂ = 3 atm

Thus, then its final pressure would be 3 atm

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3. In what circumstance will a flash of lightning travel through the sky and
touch the ground?

Answers

Answer: The answer is both. Cloud-to-ground lightning comes from the sky down, but the part you see comes from the ground up. A typical cloud-to-ground flash lowers a path of negative electricity (that we cannot see) towards the ground in a series of spurts.

Explanation:

how to how to how to how

Answers

Answer:

Not sure what how to how to how to how means but if you tell me what you need id be happy to help

how to trust someone well first find out if they are nice

Gauss's law combines the electric field over a surface with the area of the surface. From Coulomb's law we know that the electric field falls off as 1/r2 of the distance r from the charge. How does the surface area change with r ?

Answers

The change in surface area of Gaussian surface with radius (r) is 8πr.

Electric field from Coulomb's law

The electric field experienced by a charge is calculated as follows;

[tex]E = \frac{Q}{4\pi \varepsilon_o r^2}[/tex]

where;

E is the electric fieldQ is the charger is the radius

The electric field reduces by a factor of [tex]\frac{1}{r^2}[/tex]

Surface area of a Gaussian surface;

The surface area of a sphere is given as;

[tex]A = 4\pi r^2[/tex]

Change in area with r

[tex]\frac{dA}{dr} = 8\pi r[/tex]

Thus, the change in surface area of Gaussian surface with radius (r) is 8πr.

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When work is done by the force of gravity, the path that the object takes isn't important. What matters
is the object's change in height, regardless of the path taken to get there. We have already discussed
that when there is a net force on an object, it's kinetic energy changes. We can see that in the
previous example of the brick falling towards the Earth over a distance h. As it falls the net force on it
is F,-mg, and it gains kinetic energy as it falls. Let's consider what must happen before the brick
falls. If the brick starts on the ground, let's assume that someone has to lift it up a distance h before it
falls.
10) If you lift a brick (mass m) up a distance h, what is the minimum force you need to apply to the
brick to lift it up?
11) If you apply that much force to the brick, how much work does your force do on the brick over the
distance h?
12) While lifting the brick, what is the net force acting on the brick?
13) While you are lifting up the brick, the net force on it is zero. Therefore, the net work done on the
brick is zero, and its kinetic energy remains the same. However, your force is still doing work on
the brick. If it's not causing a gain of kinetic energy then what is that work doing?

Answers

Answer:

Explanation:

10) mg

11) mgh

12) 0

13) Increasing potential energy

help pls someone quick ​

Answers

Answer:

Correct

Explanation:

The logs and the slope helped the men to lift the nearby stone.

What is one limitation of using renewable
resources for electrical energy?
A. The output of energy they produce is not always consistent.
B. They can be easily replaced.
C. They produce less pollution.
D. They produce a large amount of energy.

Answers

The answer to this question to A. The other choices are positive.
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