Calculate the total resistance for a 650ohm , a 350 ohm , and a 1000 ohm resistor connected in series

Answers

Answer 1

Answer:

2000 ohms

Explanation:

Resisters in series just add.

Rt = R1 + R2 + R3

R1 = 650 ohm

R2 = 350 ohm

R3 = 1000 ohm

Rt = 650 + 350 + 1000

Rt = 2000 ohms.

Answer 2

The total effective resistance of several resistors in SERIES is just the sum of all the individual resistances.  

So the effective resistance of 650Ω,  350Ω,  and  1,000Ω  in series is

Sum = (650Ω + 350Ω + 1,000Ω)

Sum = 2,000 ohms


Related Questions

The newest generation of smart phone uses three different batteries connected in a series simultaneously to extend battery life and generate the energy necessary to power the device. If each battery is rated at 2.4 V , what is the overall voltage provided to the phone?

Answers

Answer:

7.2 V

Explanation:

The three batteries are connected in series to the terminals of the phone: it means that they are connected along the same branch, so the current flowing through them is the same.

This also means that the potential difference across the phone will be equal to the sum of the voltages provided by each battery.

Here, the voltage provided by each battery is

V = 2.4 V

So, the overall voltage will be

V = 2.4 V + 2.4 V + 2.4 V = 7.2 V

Which are examples of transverse waves? Check all that apply.

Answers

a water wave where the water moves up and down as the wave passes through the ocean, an oscillating string and a wave of fans in a stadium

The examples of transverse waves are earthquake S waves and Radio waves with visible light and X- rays as the other examples.

Explanation:

The transverse waves are the waves which run perpendicular to direction of the wave. They oscillate at right angle to main wave. They form the crest and troughs which are alternate to each other. All the electromagnetic waves are simply transverse waves as the electric field generated waves are always perpendicular to the magnetic field generated waves.

What electrons are involved in bonding between atoms? (What are they called)

Answers

Answer:

The answer is Valence

Explanation:

I hope me putting the answer instead of a paragraph helps yall<3

Final answer:

Valence electrons, which are located in the outermost shell of an atom, participate in the formation of chemical bonds with other atoms.

Explanation:

The electrons that are involved in bonding between atoms are known as 'valence electrons'. These electrons are situated in the outermost shell or energy level of an atom. Their role is extremely essential as they partake in the formation of chemical bonds with other atoms. For instance, in the bonding of two hydrogen atoms to form a hydrogen molecule (H2), each atom provides one electron to form a single covalent bond.

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Collectively living organisms, air, water, and soil constitute the
A. nonpolluted environment.
B. natural environment.
C. population level.
D. stratosphere.

Answers

B. Natural environment

An ecosystem is a combination of living organisms and non-living elements in a given area. The biosphere encompasses all ecosystems on Earth.

An ecosystem consists of all the living things in a particular area together with the abiotic, non-living parts of that environment such as nitrogen in the soil or rainwater. At the highest level of organization, the biosphere is the collection of all ecosystems, representing the zones of life on Earth.

A car changes speed from 25 m/s to 10 m/s in 240 seconds. Describe its acceleration.​

Answers

Explanation:

Acceleration is change in velocity over change in time:

a = Δv / Δt

a = (10 m/s - 25 m/s) / (240 s - 0 s)

a = -0.0625 m/s²

So the car decelerates at 0.0625 m/s².

why do metals conduct electricity​

Answers

Answer: Metals conduct electricity well due to the fact that the outermost electrons in their atoms are held by weak atomic forces, allowing these electrons to flow easily from one atom to another.

Explanation:

a constant force of 10n is applied for 3 seconds to an 8kg object. calculate the change in speed​

Answers

Answer:

3.75

Explanation:

F= m×a

F=m×(Vf-Vi)/t

10=8×(change in speed)/3

(10×3)÷8=3.75

ITS TIMED HURRY PLEASE The voltage across the primary winding is 350,000 V, and the voltage across the secondary winding is 17,500 V. If the secondary winding has 600 coils, how many coils are in the primary winding?
A. 30 coils
B. 583 coils
C. 12,000 coils
D. 332,500 coils

Answers

12,000 coils. The primary winding has 12,000 coils.

In order to solve this problem we have to use the relation for a transformer Vp/Vs = Np/Ns, where Vp is the voltage across the primary winding, Vs in the voltage across the secondary winding, Np is the numbers of coils in the primary winding, and Ns is the number of coils en the secondary winding.

With Vp = 350,000 V, Vs = 17,500 V, and Ns = 600 coils:

350,000 V/17,500 = Np / 600 coils

Np = (600 coils x 350,000 V) / 17,500 V

Np = 210,000,000/ 17,500 coils

Np = 12,000 coils

Answer:

ITS C

Explanation:

3. The diagram to the right shows a Bunsen burner heating a beaker of
water on a beaker stand. The arrows represent the transfer of heat
energy in the water. Which process is primarily responsible for the
transfer of heat indicated by the arrows in the beaker of water?
a. conduction
b. convection
c. radiation
d. condensation​

Answers

Answer:

I think that the answer is B convection. Heat is transferred by the movement of the water from hotter regions to colder regions.

Answer:

b

Explanation:

. A helicopter is 8.50 m above the ground and climbing at 2.5 m/s. It drops a package from rest (relative to the helicopter). At the moment that the package is released, what is its velocity relative to the ground?

Answers

Answer:

2.5 m/s

Explanation:

The velocity of the package relative to the ground = the velocity of the package relative to the helicopter + the velocity of the helicopter relative to the ground

v = 0 m/s + 2.5 m/s

v = 2.5 m/s

At the moment it is released, the package is rising at 2.5 m/s.

Final answer:

At the moment of release, the package dropped from the helicopter has an upward initial velocity relative to the ground of 2.5 m/s, equal to the helicopter's climbing velocity.

Explanation:

When a package is dropped from a helicopter that is climbing, the initial velocity of the package relative to the ground is the same as the velocity of the helicopter at that moment. Since the helicopter is climbing at a velocity of 2.5 m/s, the package will also have an initial velocity of 2.5 m/s upward relative to the ground. It is important to note that this is the initial velocity at the moment of release; the package will then be subject to gravitational acceleration which will affect its velocity as it falls.

sound of thunder is heard 5s after the flash of lighting is seen. calculate the distance of nearest point of lighting if the speed of sound in air is 346 ms-1​

Answers

Answer:

formula

speed = distance / time

distance = speed x time

distance = 346 x 5

distance = 1730 m

The distance of the lightening strike would be 1730 m or 1.7 km

Explanation:

Answer:

1730m

Explanation:

the change in velocity that occurs at a specific moment in time known as

Answers

Final answer:

The change in velocity at a specific moment is called Instantaneous acceleration. It is the acceleration at an exact instant as opposed to an average over a time period.

Explanation:

The change in velocity that occurs at a specific moment in time is known as Instantaneous acceleration. Acceleration is the rate at which velocity changes with time. In general, it is calculated as the change in velocity divided by the time over which the change occurred. In physics, when we say 'at a specific moment in time', we refer to an infinitesimally small interval of time. In this case, we are referring to the concept of instantaneous acceleration. It's the acceleration at a particular instant in time as opposed to an average over a time interval.

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Final answer:

The change in velocity at a specific moment in time is known as instantaneous acceleration.

Explanation:

The change in velocity that occurs at a specific moment in time is known as the instantaneous acceleration.

Instantaneous acceleration is the rate of change of velocity at a specific instant in time.

It is found by taking the derivative of the velocity function with respect to time.

For example, if a car is accelerating from rest to a speed of 60 mph in 10 seconds, the instantaneous acceleration at the moment when the car reaches a speed of 30 mph would be different from the instantaneous acceleration at the moment when the car reaches a speed of 60 mph.

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What must you know to solve Kepler's third law, the law of periods?

A. Period of the minor axis
B. Period of the orbit
C. Period of the revolution around the sun
D. Period of the major axis

Answers

Answer: B. Period of the orbit

Explanation:

According to the Third Kepler’s Law of Planetary motion “The square of the orbital period of a planet is proportional to the cube of the semi-major axis (size) of its orbit”.

Talking in general, this law states a relation between the orbital period [tex]T[/tex] of a body (moon, planet, satellite) orbiting a greater body in space with the size [tex]a[/tex] of its orbit.

This Law is originally expressed as follows:

[tex]T^{2}=\frac{4\pi^{2}}{GM}a^{3}[/tex]

Where;

[tex]G[/tex] is the Gravitational Constant

[tex]M=1.9(10)^{27}kg[/tex] is the mass of the massive (greater) body

[tex]a[/tex]  is the semimajor axis of the orbit of the smaller body

Answer:

D. period of the orbit

The dispatcher of courier service receives a message from truck A that reports a position of +5 after a displacement of +2. What was the initial position of Truck A? First solve the problem using a number line and then solve the problem using an equation.

Answers

The formula we need to use is displacement.

[tex]d=\Delta{x}=x_f-x_i[/tex], where xf is final position and xi is initial position.

We report the final position of 5 and the displacement of 2 so the formula is now:

[tex]2=5-x_i\Longrightarrow x_i=3[/tex].

So the initial position of truck A is 3.

Hope this helps.

r3t40

Which of the following would 15 centimeters be equal to

Answers

Answer:

150 millimeters

Explanation:

According to linear conversion of units;

1 cm is equivalent to 10 mm

Therefore, 15 cm will be equivalent to 150 mm

On the other hand;

1 Meter is equivalent 100 cm

Therefore; 15 cm will also be equivalent to 0.15 M

Hence;

15 cm = 150 mm = 0.15 m, and so forth

A light bulb with resistance of 22 ohms is connected to a 110 V battery. What is the current
flowing through the circuit?

Answers

5A. The current that flowing through the circuit with a lightbulb of 22Ω connected to a voltage source of 110V is 5A.

The key to solve this problem is using Ohm's Law equations V = I*R, where V is the voltage drop, I is the current that flow through the element and R its resistance.

Clear I from the equation above:

I = V/R

With V = 110V, and R(lightbulb) = 22Ω

I = 110V/22Ω = 5A

Jeff’s father is installing a do-it-yourself security system at his house. He needs to get a device from his workshop that converts electric energy to sound energy. Which device is Jeff’s father looking for?
A.
switch
B.
motor
C.
buzzer
D.
bulb
E.
battery

Answers

Answer:

The correct answer option is C. buzzer.

Explanation:

We know that Jeff's father needs to get a device from his workshop that converts electrical energy to sound energy.

So from the given options, buzzer is the best option Jeff's father can install in his house's security system.

An electric buzzer converts an electrical oscillating voltage into a sound output. In other words, the electrical pulses are converted into sound vibrations.

Answer:

The correct answer option is C. buzzer.

Explanation:

Which imaging techniques capture real-time images? sonography and fluoroscopy radiography and fluoroscopy sonography and CT MRI and CT

Answers

Answer:

A. sonography and fluoroscopy (I just took the edg quiz)

The imaging techniques capture real-time images will be sonography and fluoroscopy.

What is sonography and Fluoroscopy?

Sonography is a diagnostic medical procedure that uses high-frequency sound waves (ultrasound) to produce dynamic visual images of organs, tissues or blood flow inside the body. This type of procedure is often referred to as a sonogram or ultrasound exam.

fluoroscopy simply serves as an image-guidance tool, and as such, alternative imaging modalities that do not rely on ionizing radiation can and should be considered. For example, as a real-time, high-resolution imaging modality, ultrasound shares many characteristics with fluoroscopy.

However, due to its lack of reliance on ionizing radiation, ultrasound is often the imaging tool of choice for a number of image-guided interventions for which fluoroscopy may also be considered, particularly in the pediatric population.

Hence the imaging techniques capture real-time images will be sonography and fluoroscopy.

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A cup of tea at 60°C is sitting on a table in a room whose temperature is 24°C. Choose the best statement concerning heat flow. Heat will flow from the tea into the air in the room. Heat will flow from the air in the room into the tea. There will be no exchange of heat. Heat will flow both ways in equal amounts.

Answers

Answer:

Heat will flow from the tea into the air of the room

Explanation:

Heat Transfer

Answer:

Heat will flow from the tea into the air in the room

Explanation:

The sistem is going to find an equilibrium temperature for both elements.

As we have a small hot mass and a large cold mass, that temperature will be colder than the tea (and hotter than the air, but as the size of a cup is too small for a room, it will be almost equal to 24 Celsius)

Then the heat will 'leave' the tea.

Describe, in as much detail as you can, the life history of a star like our Sun.

Answers

Life Cycle of a Star. Stars are formed in clouds of gas and dust, known as nebulae. ... Small stars, like the Sun, will undergo a relatively peaceful and beautiful death that sees them pass through a planetary nebula phase to become a white dwarf, this eventually cools down over time leaving a brown dwarf.

A worker stands on a support and with the help of a block will lift the load evenly, the weight of which is 480 H (fig. 216). calculate the pressure produced by the support worker, if his weight is 720 N, and the foot area is 320 cm² (Friction and block weight can be neglected.)

Answers

Explanation:

Draw free body diagrams for the worker and the load.

The worker has three forces on him: normal force pushing up, weight pulling down, and tension pulling down.

The load has three forces on it: weight pulling down and two tension forces pulling up.

Sum of the forces on the load:

∑F = ma

2T - 480 N = 0

T = 240 N

Sum of the forces on the worker:

∑F = ma

N - 720 N - 240 N = 0

N = 960 N

So the pressure produced by the worker is:

P = F / A

P = 960 N / 320 cm²

P = 3 N/cm²

P = 30,000 Pa

how do you change the strength of a electromagnet

Answers

 Answer:

The strength of an electromagnet can be increased by increasing the number of loops of wire around the iron core and by increasing the current or voltage. You can make a temporary magnet by stroking a piece of iron or steel (such as a needle) along a permanent magnet.

There are three things that dictate how strong this field is:

1.How much kinetic energy you provide the wire

Answer is changed by pushing more current through the wire.

2. How permeable our magnetic rod is

Answer  is changed by picking a more magnetic media

3.How many little magnetic fields you generate to make the net, large magnetic field

Answer is changed by increasing the amount of turns of the wire. More turns, more little fields, strong big field

The strength of an electromagnet can be altered by increasing the electric current, adding more coils or windings to the solenoid, and incorporating a ferromagnetic core.

To change the strength of an electromagnet, there are several factors you can modify:

Increase the electric current flowing through the coil.Add more coils or windings to the solenoid.Use a ferromagnetic core such as iron to enhance the magnetic field.

It's worth noting that using more windings increases the winding density, and this, along with a higher current, will increase the magnetic field strength.

Also, keep in mind that the limits to how strong you can make your magnet are the coil resistance and any material-related constraints, like the potential destruction of superconducting properties if the magnetic field is too strong.

name the device used for measuring mass​

Answers

Hello There!

A triple beam balance is used to tell how many grams, ounces and pounds an object is.

The pH of coffee is _______ times greater than the pH of pure water.

Answers

Answer:

zero times greater

Explanation:

Coffee's pH level is 5

Pure water's pH level is 7

An elevator traveled 15 floors (150 ft) at a speed of 4.5 m/s. What additional information is needed to determine the velocity of the elevator?

Answers

Answer:

Velocity is vector quantity.So it needs direction in addition to speed.

Explanation:

The velocity of an object is the rate of change of its position with respect to a frame of reference, and is a function of time. Velocity is equivalent to a specification of its speed and direction of motion.

Answer:

It needs to know the direction that the elevator traveled.

Explanation:

The branch of science concerning heat flow and energy conversions is called

Answers

Hello there! the answer is thermodynamics.

Someone in the thermodynamics field often studies how heat works and interacts with different types of energy, making this the best answer choice.

I hope this helps and have a great rest of your day!

Answer:

Thermodynamics

Explanation:

What is a variable?
O
A. A summary of another scientist's work
O
B. An educated guess about the outcome of an experiment
O
C. Something that can change during an experiment
O
D. The analysis of the results of an experiment

Answers

C. something that can change during an experiment

It's C: Something that can change in an experiment.

to keep food warm or cool coolers are made out of materials that are​

Answers

Answer: insulartors..

Does he accelerate as he is being pushed?

Answers

Answer:

yes, I would believe so.

Explanation:

Acelerating means moving, picking up speed...etc and well he is being pushed so he's moving.

Hope my answer has helped you!

Superman is flying 54.5 m/s when he sees
a train about to fall into a river 850 m
away. He reaches the train in 4.22 s.
What is his final velocity?

Answers

348.34 m/s. When Superman reaches the train, his final velocity will be 348.34 m/s.

To solve this problem, we are going to use the kinematics equations for constant aceleration. The key for this problem are the equations [tex]d=v_{0} t+\frac{at^{2} }{2}[/tex] and [tex]v_{f} =v_{0} +at[/tex] where [tex]d[/tex] is distance, [tex]v_{0}[/tex] is the initial velocity, [tex]v_{f}[/tex] is the final velocity, [tex]t[/tex] is time, and [tex]a[/tex] is aceleration.

Superman's initial velocity is [tex]v_{0}=54.5\frac{m}{s}[/tex], and he will have to cover a distance d = 850m in a time t = 4.22s. Since we know [tex]d[/tex], [tex]v_{0}[/tex] and [tex]t[/tex], we have to find the aceleration [tex]a[/tex] in order to find [tex]v_{f}[/tex].

From the equation [tex]d=v_{0} t+\frac{at^{2} }{2}[/tex] we have to clear [tex]a[/tex], getting the equation as follows: [tex]a=\frac{2(d-v_{0}t) }{t^{2} }[/tex].

Substituting the values:

[tex]a=\frac{2(850m-54.5\frac{m}{s}.4.22s) }{(4.22s)^{2}}=69.63\frac{m}{s^{2}}[/tex]

To find [tex]v_{f}[/tex] we use the equation [tex]v_{f} =v_{0} +at[/tex].

Substituting the values:

[tex]v_{f} =54.5\frac{m}{s} +(69.63\frac{m}{s^{2}}.4.22s)=348.34\frac{m}{s}[/tex]

The final velocity is found to be approximately 349.07 m/s.

To determine Superman's final velocity when he reaches the train, we need to use the kinematic equations for uniformly accelerated motion. Given:

Initial velocity (u) = 54.5 m/sTime (t) = 4.22 sDistance traveled (s) = 850 m

First, we can use the kinematic equation:

s = ut + (1/2)at²

where s is the distance, u is the initial velocity, t is time, and a is the acceleration. Plugging in the known values:

850 = 54.5 × 4.22 + 0.5 × a × (4.22)²

Simplifying this:

850 = 229.29 + 0.5 × a × 17.8084850 - 229.29 = 8.9042a620.71 = 8.9042aa = 620.71 / 8.9042a ≈ 69.69 m/s²

Now, we use another kinematic equation to find the final velocity (v):

v = u + atv = 54.5 + (69.69 × 4.22)v = 54.5 + 294.57v ≈ 349.07 m/s

Therefore, Superman's final velocity when he reaches the train is approximately 349.07 m/s.

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