what advantage is there to making graduated cylinders tall and thin rather

Answers

Answer 1

The thin and tall design of graduated cylinders allows for improved precision at smaller volumes. The volume markers on the glass would be incredibly close together and challenging to read for lesser volumes if the cylinder was short and fat.

A graduated cylinder, also known as a measuring cylinder, is typically employed in laboratories where reasonably accurate volume measurements are needed. It has volume measuring indications and is cylindric and thin. It is employed to measure the mass of a solid in addition to the volume of a liquid. A succession of lines will be drawn on the graduated cylinder to indicate various measurement intervals. While intermediate markings won't have numbers, some lines will be marked with them. Since the measurement intervals on smaller graduated cylinders are often narrower, they measure more precisely.

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which of the following statements is not one of newton's laws of motion? group of answer choices in the absence of a net force, an object moves with constant velocity. for any force, there always is an equal and opposite reaction force. what goes up must come down. all of the above are newton's laws of motion. the rate of change of momentum of an object is equal to the net force applied to the object.

Answers

"What goes up must come down." is not newton's law. Option C is the correct option.

What is laws?

Laws of Physics are by definition stated facts that have been derived and inferred from empirical observations. Simply put, physical laws are a way to categorize how the world behaves and interacts with us.

Newton's laws are:

First law:

Unless a force acts upon a body that is at rest or moving in a straight line at a constant speed, it will continue to be at rest or move in that direction.

Second law:

A numerical description of the modifications to a body's motion that a force can cause. According to this, a body's momentum changes at a rate that is equal to the force acting on it over time in both magnitude and direction.

Third law:

When two bodies come into contact, they exert forces on one another that are both equal in strength and directed in opposing directions.

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Paper clip Y is not attracted to the magnet. Which step should the student take to attract it?
O A The student should use a battery with less energy.
O
8
D
The student should use a smaller core in the magnet.
The student should wrap the coil fewer times around the nail.
The student should move the magnet closer to the paper clip.

Answers

Answer:d

Explanation:magnet is to weak

Answer: that means to shut your trap you little turd

Explanation:

bond involves the sharing of electron pairs between atoms, also known as a molecular bond.true or false

Answers

A bond involves the sharing of electron pairs between atoms, also known as a molecular bond.

The given statement is True.

A covalent bond is a chemical relationship that requires the sharing of electrons between atoms to generate electron pairs. These electron couples are known as bonding pairs or sharing pairs. Covalent bonding is the steady equilibrium of attractive and repulsive forces between atoms when they share electrons.

The number of atoms that can be bound together to create molecules is fixed; for example, every water molecule has two hydrogen atoms and one oxygen atom. Chemical compounds are distinguished from solutions and other mechanical mixes by this property.

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Help please!!! What is the difference between corrosive and flammable?

Answers

Answer:

Explanation:

Most corrosive materials are non-flammable, except for acetic acid and formic acid. However, nitric acid and perchloric acid are oxidizers and should be segregated from combustible and flammable materials. Corrosive materials can have other hazards, however, the corrosivity is usually the primary hazard.Flammable liquids burn at normal working temperatures while combustible liquids need heat before they will ignite All this info should help…. ✨

a 2 μc charge is at the origin. a 5 μc charge is on the x-axis at 1 m. at what point between the charges is the electric field zero?

Answers

The point between the two charges where the electric field equal to zero is calculated to be 0.32 m.

The charge q₁ is given as 2 μc = 2 × 10⁻⁶ c

It is located at x₁ = 0.

The charge q₂ is given as 5 μc = 5 × 10⁻⁶ c

It is located at x₂ = 1 m.

Let us suppose that, electric field is zero at the point x, it is in between 0 and 1 m.

We know the formula for electric field as,

E = k q /r²

Let us equate the electric field at both the charges.

k q₁/x² = k q₂/(x₂ - x)²

q₁ (x₂ - x)² = q₂ x²

2 × 10⁻⁶× (1 - x)² = 5 × 10⁻⁶× x²

2 × ( 1 + x² - 2x) = 5 × x²

2 + 2x² - 4x = 5x²

7 x² + 4x - 2 = 0

The two values of x are,

x = 0.32, -0.892

The distance cannot be negative. So, the electric field at x = 0.32 m is said to be zero.

Thus, the required value of x is 0.32 m.

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Four point-like charges are placed as shown in the figure, three of them are at the corners and one at the center of a square, 30.0 cm on each side. Find the magnitude of the net electrostatic force exerted on the point charge q4. Let q1 = q 3 = +31.0 pC, q2 = -23.0 µC, and q4 = -45.0 µC.

Answers

As a result, the point charge q₄ experiences a net electrostatic force of 4.80 x 10⁻² N.

What is the charge?

The sum of the forces exerted on the point charge q₄ by the three other point charges is the magnitude of the net electrostatic force on that charge:

We can use Coulomb's law to determine the magnitude of [tex]F_{net}[/tex] :

                                     [tex]F_{net}[/tex] = F₁₂ + F₁₃ + F₂

                             F is equal to k × |q₁×q₂ / r₂,

where k is the Coulomb's constant, q₁ and q₂ are the charges of the two points, and r is the distance between the points.

The side of the square is the distance r for F₁₂,

                                     so r = 30.0 cm.

                     F₁₂ = k × |(31.0 pC)× (-23.0 C) / (30.0 cm)²

F₁₃ and F₂₃ have the same equation, but the charges are different, so we can calculate them in the same way.

We can then add the three forces to get the net force on q₄:

F₁₃ = k × |(31.0 pC)× |(-45.0 °C)| / (30.0 cm)²

F₂₃ = k × |(-23.0 °C)× |(-45.0 °C)| / (30.0 cm)²

                              Fnet = F₁₂ + F₁₃ + F₂₃

Fnet = (k × |(31.0 pC) × (-23.0 C)| / (30.0 cm)2) + (k × |(31.0 pC) × (-45.0 C)| / (30.0 cm)²) + (k × |(-23.0 C) × (-45.0 C)| / (30.0 cm)²)

When the charges and the distance are substituted

The magnitude of the net electrostatic force exerted on the point

                                charge q₄ is 4.80 x 10⁻² N

Fnet = (8.99 x 10⁹ Nm²/C² × |(31.0 pC)×(-23.0 °C)| / (30.0 cm)²) + (8.99 x 10⁹ Nm²/C² × |(31.0 pC) × (-45.0 °C)| / (30.0 cm)²)

                                             [tex]F_{net}[/tex] = 4.80 × 10 ⁻²

What gives rise to electric charge?

When electrons are added to or taken away from an object, an electrical charge is created. When electrons are added to an object, it takes on a negative charge due to their negative charge. Positive charge is created when an object loses its electrons.

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true/false - Sonar uses sound waves to measure water depth

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Sonar (SOund Navigation And Ranging) uses sound waves to estimate water depth. It operates by producing a sound wave and monitoring how long it takes for the wave to bounce back after striking the ocean floor. The depth of the water may be determined based on this time measurement.

What is SONAR?

Sonar is a technology for navigating, measuring distances, communicating with, or detecting things on or beneath the water's surface, such as other vessels. Sonar (from "sound navigation range") is an acoustic technology for detecting and estimating the distance and direction of underwater objects. Sonar equipment detects and analyzes sound waves generated or reflected by the item for the information they convey. sonar.

Here,

Sonar (SOund Navigation And Ranging) does utilize sound waves to estimate water depth. It operates by sending out a sound wave and monitoring how long it takes for the wave to bounce back after reaching the ocean floor. The depth of the water may be determined using this time measurement.

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Which two equations represent double replacement reactions.
A. HCl+KOH=KCl+H2O

B. BaCl2+Na2SO4=2NaCl+BaSO4

C. 2C2H6+7O2=4CO2 +6H2o

D. Ca+MgS=CaS+Mg

Answers

Two equations represent double replacement reactions are:

C. 2C2H6+7O2=4CO2 +6H2o

D. Ca+MgS=CaS+Mg

ABOUT METATHESIS REACTION

A metathesis reaction, sometimes referred to as a double exchange reaction, double replacement reaction, or multiple decomposition reaction, is a chemical reaction involving the exchange of bonds between two non-reacting chemical species resulting in the formation of products with the same type of bond. This reaction is illustrated by the following scheme:

A-B + C-D → A-D + C-B

A metathesis reaction involves the exchange of two groups or ions between the reactants.

The bond between reacting species can be either ionic or covalent. Usually, this reaction produces an insoluble product from the soluble reactant. This product is referred to as precipitate.

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a centripetal force of 155 n acts on a 1,500-kg satellite moving with a speed of 5,300 m/s in a circular orbit around a planet. what is the radius of its orbit?

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A centripetal force of 155 n acts on a 1,500-kg satellite moving with a speed of 5,300 m/s in a circular orbit around a planet. The radius of its orbit is 1.35  x [tex]10^{7}[/tex] meters.

The radius of a satellite's orbit can be calculated using the equation for centripetal force:

F = m * [tex]v^{2}[/tex]/ r

Where,

m = the mass of the satellite

v =  its speed

r = the radius of its orbit.

Rearranging the equation and plugging in the given values:

r = m * [tex]v^{2}[/tex] / F = (1500 kg) * [tex](5300 m/s)^{2}[/tex] / (155 N)

r = approximately 1.35  x [tex]10^{7}[/tex] meters.

So the radius of the satellite's orbit is approximately 1.35  x [tex]10^{7}[/tex] meters.

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the lines in the emission spectrum of hydrogen are measured when observer moving away

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The lines in the emission spectrum of hydrogen are measured to become more widely spaced and longer in wavelength when the observer is moving away from the source of light.

This effect is known as redshift and is a result of the Doppler effect, which occurs when a light source is in motion relative to an observer.

As the observer moves away from the source of light, the wavelength of the emitted light is stretched, making the spectral lines appear longer and more widely spaced.

This is because the speed of light is reduced relative to the observer, causing the wavelength of the light to be longer than it would be in the rest frame of the observer.

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The lines in the emission spectrum of hydrogen are measured when observer moving away from the source of light ?

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the force that charge q1 exerts on q2 is opposite and ________ the force that charge q2 exerts on q1.

Answers

The force that charge q1 exerts on q2 is opposite and equal in magnitude to the force that charge q2 exerts on q1.

What is charge?
Charge is a physical property of matter that can be either negative or positive. It is related to the electromagnetic force, and is measured in coulombs. Charge is the cause of electric fields and electric potential, which are important in many areas of physics and chemistry. Charge can be transferred from one object to another, and is conserved in any physical process. Charge can also be created from the motion of matter through a medium, such as when electrons are pushed from one material to another. Charge is always conserved, meaning that the net charge of a system will always be the same.

Therefore, The force that charge q1 exerts on q2 is opposite and equal in magnitude to the force that charge q2 exerts on q1.

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A uniform beam xy is 100 cm long and weighs 4. 0 n. The beam rests on a pivot 60 cm from end x. A load of 8. 0 n hangs from the beam 10 cm from end x. The beam is kept balanced by a force f acting on the beam 80 cm from end x. What is the magnitude of force f?.

Answers

To keep the balance the beam's required magnitude of force f will be 22 N.

Given,

Length of the beam, xy = 100cm

Pivoted at 60 cm from end x

Weight force at 50 cm from x, W = 4 N

force due to hanging mass, F = 8 N 10 cm from x

and f at 80 cm at x.

Now, let the direction of force f is downward

so we have to balance the moment due to all the forces about the pivot,

So the total clockwise moment

= fx(80-60) = 20f Ncm

And anti-clockwise moment

= Wx(60-50) + F(60-10) = 4x10+8x50 = 440 Ncm

Now anticlockwise moment = Clockwise moment

or 20f = 440

or f = 22 N

Therefore, To keep the balance the beam's required magnitude of force f will be 22 N.

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the terminator of a gene is located upstream of the coding region. TRUE OR FALSE

Answers

False. The terminator of a gene is located downstream of the coding region.The terminator of a gene is a DNA sequence that signals the end of transcription, or the process by which genetic information is converted from DNA to RNA.

It is located downstream of the coding region, which is the part of the gene that contains the instructions for making a particular protein. The terminator helps to regulate the amount of mRNA that is produced, as well as to prevent the production of unwanted transcripts. The precise location and sequence of the terminator vary among different genes, but its role in regulating transcription is an important aspect of gene expression.

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An airplane flying North at 98. 7 m/ encounter a 47. 5 m/ headwind. What i the airplane’ peed relative to the ground?

Answers

Answer:

51.2 m/

Explanation:

The headwind will slow down the airplane and make it move slower relative to the ground     98.7 - 47.5 = 51.2 m/ relative to ground

WILL MARK BRAINLIEST!!
A truck of a mass of 2 tons is traveling north at a speed v=70 km/h collides with a car of mass of 1.2 tons moving south at an equal speed. After collision, both vehicles remain tangled together.

With what speed and in what direction does the wreckage move?
(Would love it if it's solved in the GUESS method, but if not it's okay!)

Answers

The final speed of the wreckage after the collision is 17.5 km/h north.

What is the final speed of the wreckage after the collision?

The final speed of the wreckage after the collision is calculated by applying the principle of conservation of linear momentum.

m₁u₁ + m₂u₂ = v ( m₁ + m₂ )

where;

m₁ is the mass of the truckm₂ is the mass of the caru₁ is the initial speed of the trucku₂ is the initial speed of the carv is their final speed after the collision

let north be positive and let south be negative direction

The final speed is calculated as follows;

(2 x 70) - (1.2 x 70) = v ( 2 + 1.2 )

56 = 3.2v

v = 56/3.2

v = 17.5 km/h north

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an 80 kg man and 50 kg woman stand 0.5 m from each other. what is the force of gravitational attraction between the couple?

Answers

The force of gravitational attraction between the man and woman is 1.0672 × 10⁻⁶ N, if the mass of the man & woman is 80 kg & 50 kg respectively.

Let the Mass of the man, m₁ = 80 kg

Mass of the woman, m₂ = 50 kg

Distance between them, d = 0.5 m

We know the universal gravitational constant, G = 6.67 × 10⁻¹¹ Nm²/kg²

According to Newton's law of gravitation, Gravitational force between two objects having mass m₁ & m₂ at a distance apart d meter, is mathematically formulated as, F = Gm₁m₂/d²

F = (6.67 × 10⁻¹¹ × 80 × 50)/0.5²

F = (2.668 × 10⁻⁷) /0.25

F = 1.0672 × 10⁻⁶ N

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A speed versus time graph is shown:







Which statement accurately describes the motion of the object in the graph above?

Group of answer choices

From 2s to 6s, the object is at rest.

From 0s to 4s, the object is moving at 1.5 cm/s.

From 6s to 7s, the object speeds up.

From 2s to 6s, the object is moving at 1.5 cm/s.

Answers

The statement accurately describes the motion of the object in the graph above is from 2s to 6s, the object is moving at 1.5 cm/s.

option D is the correct answer

What is speed time graph?

A speed time graph is a graph that shows the motion of an object against time. They can also be referred to as velocity-time graphs.

The motion of the object in the graph above can be described as follows;

between 0 to 2 seconds, the speed of the object = 0 cm/s

between 2 to 6 seconds, the speed of the object = 1.5 cm/s

between 6 to 8 seconds, the speed of the object = 0 cm/s

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A player runs the length of the 30. 0 space m court and back. The player does this three times in 60 space s.

Answers

This is repeated three times in 60 spaces, with a 1.5 m/s average speed.

The player runs a total distance of 30 m * 3 = 90 m in 60 s,

so the player's average speed is 90 m / 60 s = 1.5 m/s.

The size or extent of the displacement between two points is referred to as distance. Keep in mind that the distance between two points and the distance travelled between them are not the same. The length of the entire journey taken to go from one point to another is the distance travelled.

Calculating the ratio of the body's total distance traveled to the time needed to complete that distance yields the average speed formula. The formula describing the average speed of an item traveling at a variable speed is called an equation.

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Note: The correct question would be as bellow,

In a drill during basketball practice, a player runs the length of the 30 meter court and back. The player does this three times in 60 seconds. The magnitude of the player's average velocity during the drill is...

calculate the speed of a proton that is accelerated from rest through an electric potential difference of 144 v.

Answers

The speed of a proton that is accelerated from rest through an electric potential difference of 144 V is 160 km/s.

Proton Electric field system as an isolated system for energy. Applying energy conservation: ΔK+ΔU=0

(1/2​ mp× vf² − 1/2mp​× vi² )−qp×​ ΔV=0. Where vi=0 since the proton is accelerated from rest, so, (1/2​ mp× vf²)−qp×​ ΔV=0. The electric potential difference,∆V= 144 volts. Now solving for vf=[(2×qp×∆V)/mp]^½ =[(2×1.602×10⁻¹⁹×144)/1.674×10⁻²⁷]^½  =16×10⁴ m/s = 160 km/s.

A proton has about 2000 times the mass of an electron, so it would have to travel at about ¹/₂₀₀₀ the speed of an electron to have the same momentum — 3.90×10⁶m/s2000 ≈ 2000 m/s and the same wavelength.

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Gauss's Law Problem 1 (a) Consider a solid sphere of radius R where the electric charges are uniformly distributed throughout the entire sphere with a uniform volume charge density p. Find the electric field everywhere at points both inside the sphere. d (b) A charged slab extends infinitely in two dimen- sions and has thickness d in the third dimension, as shown in the right figure. The slab carries a uniform volume charge density p and is extended between z =d/2 and z= -d/2. Find the expression for the electric field inside the slab. -2=0 Id y (c) As shown in the right figure, we have a slab with a uniform volume charge den- sity p extending to infinity in the c-y plan, with a thickness d. At the center of the system, we have a spherical cav- ity of radius R with R

Answers

The electric field within the sphere is given by E = (4p/3) * (R^3 - r^3) / (R^2 - r^2). The electric field inside the slab is given by E = pd/2. The electric field at the center of the spherical cavity is given by E = pd/2 * (R/d)2.

What is electric flux?

Electric flux is the measure of the electric field through a particular surface in electromagnetism, despite the fact that an electric field cannot flow. At any location in space, the electric field E can impose a force on an electric charge. The gradient of the potential is represented by the electric field.

Here,

(a) According to Gauss's Law, the electric flux through any closed surface is proportional to the charge contained inside the surface. The electric field at a location inside a solid sphere may be computed by splitting the sphere into concentric shells and calculating the electric field owing to each shell. Inside the sphere, the electric field is given by:

E = (4πp/3) * (R^3 - r^3) / (R^2 - r^2)

(b) The electric field inside a charged slab may be calculated by splitting the slab into thin charge layers and adding the electric field owing to each layer. Inside the slab, the electric field is given by:

E = pd/2

(c) Subtracting the electric field owing to the slab from the electric field due to the entire space yields the electric field at the center of a spherical cavity in an indefinitely large charged slab. The electric field at the spherical cavity's center is given by:

E = pd/2 * (R/d)^2

The electric field inside the sphere is given by: E = (4πp/3) * (R^3 - r^3) / (R^2 - r^2). The electric field inside the slab is given by: E = pd/2. The electric field at the center of the spherical cavity is given by: E = pd/2 * (R/d)^2.

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how many milliseconds after the switch opens is the energy stored in the capacitor 79 % of its final value?

Answers

The time cannot be calculated without those values but if we take R= 1 and C= 1, the switch opens at almost 4 milliseconds according to the question.

The time constant, τ, of the RC circuit would be τ = R × C = 1 × 1 = 1 (Where R denotes the resistance and C the capacitance).

The time it takes for the energy stored in the capacitor to fall to 79% of its final value after the switch opens is approximately equal to

4 × τ = 4 × 1 = 4 milliseconds.

After the switch opens, it takes around 4 times for the energy stored in the capacitor to decrease to 79% of its final amount.

Therefore, knowing the values of R and C is necessary in order to calculate the time in milliseconds. The time cannot be calculated without those values.

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a 150 watt bulb has a surface area of 15 cm, a radius 0.05 m and an emissivity of 0.85. what is the temperature?

Answers

The temperature of a 150-watt bulb having a surface area of 15 cm², a radius of 0.05 m, and an emissivity of 0.85 is 1200K.

According to the Stefan-Boltzmann law, P=eσAT⁴. The power of the bulb is 150 watts. The value of emissivity, e=0.85, and the radius, r=0.05m. The surface area, A= 15 cm²= 0.0015 cm². The value of the Boltzmann constant,σ =5.67×10⁻⁸ Wm² K⁴. So, the temperature,T⁴= P/eσA = 150/(0.85×5.67×10⁻⁸×0.0015) =(150×10⁸)/ (0.85×5.67×0.0015) = 20750×10⁸. Therefore Temperature,T= (20750×10⁸)^¼ = 1200 K.

So the temperature of the 150-watt bulb is 1200 K. Stefan-Boltzmann describes about the power that is radiated by a black body in terms of temperature. It states that the amount of radiation emitted by a black body per unit area is directly proportional to the fourth power of the temperature. While the typical situation is envisioned here is the radiation of a hot object to its cooler surroundings, this law is not limited here.

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when the velocity and acceleration of an object have opposite signs, the speed of the object increases. T/F

Answers

when the velocity and acceleration of an object have opposite signs, the speed of the object increases, is true statement.

What is velocity and how is it related to acceleration?

Velocity is a vector quantity that represents the rate of change of an object's position with respect to time, including both the speed and direction of motion. It is defined as the derivative of position with respect to time. Acceleration and velocity are closely related quantities in mechanics. Acceleration is defined as the rate of change of velocity over time. In other words, acceleration is the derivative of velocity with respect to time. When an object's velocity is increasing, its acceleration is positive, and when its velocity is decreasing, its acceleration is negative. If an object is moving at a constant velocity, its acceleration is zero.

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a 2.5 kg mass is rotated into a conical pendulum where the length of string connected to the mass is 0.68 m and the angle between the string and vertical is 35°. determine:

Answers

The  tension in the string of a conical pendulum is 18.6 N.

What is the tension in the string?

The  tension in the string of a conical pendulum can be determined using the following formula:

T = mg(L / L + lcos(θ))

where:

m = 2.5 kg (mass of the object)g = 9.8 m/s² (acceleration due to gravity)L = 0.68 m (length of the string)θ = 35° (angle between the string and vertical)

The  tension in the string of a conical pendulum is calculated as

T = 2.5 x 9.8 x (0.68 / (0.68 + (2.5 x 9.8 x cos(35°)))

T = 18.6 N.

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four or fewer luminaire conductors, smaller than awg, and/or small equipment grounding conductors that originate in the luminaire and terminate in the box, need not be counted when calculating box fill. a. 8 b. 10 c. 12 d. 14

Answers

Option a. 8 is the correct answer because Four or fewer luminaire conductors, smaller than AWG size, and small EGCs.

It's essential to guarantee that crates or nooks that contain electrical associations have sufficient space to oblige the transmitters and hardware establishing conveyors (EGCs) without surpassing the case fill limits determined by the Public Electrical Code (NEC).

As per the NEC, four or less luminaire channels, less than American Wire Check (AWG) size, and additionally little EGCs that start in the luminaire and end in the container need not be counted while computing box fill.

This standard is intended to give a specific level of adaptability and diminish the intricacy of box fill estimations, particularly in lighting establishments where luminaire guides and little EGCs are usually utilized. Notwithstanding, it's vital to take note of that this avoidance just applies to the guides and EGCs referenced, and different guides and fittings that consume space inside the container actually should be thought about while computing box fill.

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One way to write Coulomb's law is F = where F is the p2 magnitude of the electric force, k is a constant, Q and q are the two electrical charges and r is the distance between them. Solve Coulomb's law for r. r = KQq F

Answers

One way to write Coulomb's law is F = where F is the p2 magnitude of the electric force, k is a constant, Q and q are the two electrical charges and r is the distance between.

What is Coulomb's law?

Coulomb identified the following characteristics of the electric force for charges at rest: Contrary charges attract each other whereas like charges repel one another. Accordingly, two negative charges repel one another, but a positive charge pulls a negative charge toward it. In between the two charges, there is an area of attraction or repulsion.

What is electric charge?

Protons and electrons, which function as charge carriers, frequently carry both positive and negative electric charges. By moving charges, energy is produced. Charge—also referred to as electric charge, electrical charge, or electrostatic charge—is a property of a unit of matter in physics and is denoted by the letter q.

Therefore, One way to write Coulomb's law is F = where F is the p2 magnitude of the electric force, k is a constant, Q and q are the two electrical charges and r is the distance between.

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1–61. if the 60-mm diameter shaft is subjected to an axial force of 5 kn, determine the average shear stress developed in the shear plane where the collar a and shaft are connected.problems 1–60/61

Answers

The average shear stress developed in the shear plane where the collar A and shaft are connected is 50.265 kPa.

The average shear stress can be calculated using the formula:

τ_avg = F / A

where F is the applied axial force of 5 kN and A is the shear area.

The shear area can be calculated using the formula:

A = π * d * t

where d is the diameter of the shaft (60 mm) and t is the thickness of the collar (15 mm).

Substituting the values, we get:

A = π * 60 * 15 * 10^-6 m^2

Calculating the average shear stress:

τ_avg = 5 kN / (π * 60 * 15 * 10^-6 m^2) = 50.265 kPa

Therefore, the average shear stress developed in the shear plane where the collar A and shaft are connected is 50.265 kPa.

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A positive charge and a negative charge held near each other are released. As they move, the force on each particle a. increases. b, decreases. c. stays the same. 

Answers

Placing a conductor increases the force between two charges because in the case of glass or other dielectrics, the effective distance between two charges rises as opposed to decreasing.

What occurs when a positive and negative charge are in close proximity to one another?

Each charge repels the other. When a positive charge and a negative charge interact, their forces move from the positive to the negative charge in the same manner. Because of this, opposing charges are drawn to one another: the ensuing forces and electric field created by two electrical charges with different polarities.

What is the definition of Coulomb's law of force between charges?

Coulomb listed the following characteristics of the electric force for charges in a resting state: Unlike charges attract each other whereas like charges repel one another. the two positive charges attract a negative charge, while negative charges repel one another.

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A proton is located at <0, 4 × 10-8, 0> m. What is the force on the proton, due to the dipole? (Express your answer in vector form.)F→ on⁢ p+⁢by⁢dipole⁢ =< , , > N

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Proton is subject to a dipole-induced force of F = 32.40 10-15 N. [(proh-ton)] A positively charged elementary particle that can be found in the atom's nucleus.

A proton, a subatomic particle, is found in the nucleus of every atom. The particle has a positive electrical charge, similar to the electron but moving in the other direction. The H+ ion or the hydrogen atom's nucleus are examples of protons. Each hydrogen atom, regardless of isotope, has one proton, each helium atom, two, each lithium atom, three, and so on. The electron, which is negatively charged, is a very light particle. These electrons go around the nucleus in different orbits. Protons are positively charged particles that have a mass of about 1 amu. These positively charged particles are found in the center of the atom, the nucleus.

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Enzo found a wooden hammer at a crime scene. The head of the hammer appears to have been used to strike the victim. What can he MOST
accurately conclude about DNA evidence and the hammer?
A.
The handle of the hammer could possibly have sweat or skin on it.
B.
The head of the hammer is most likely to have the suspect's DNA on it.
C.
The handle of the hammer is most likely to have the victim's DNA on it.
D. It is impossible to collect DNA from a wooden surface.

Answers

A.

The handle of the hammer could possibly have sweat or skin on it.

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