in the jackie smazz show, during molecule moments, what do the little white balls that are the subject of the show represent?

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Answer 1

In the Jackie Smazz Show's "Molecule Moments," the little white balls are used to represent atoms or molecules.

The little white balls in the Jackie Smazz Show's "Molecule Moments" serve as a visual aid to help explain complex scientific concepts in a way that is both educational and engaging for viewers.

The show uses a stylized representation of these tiny building blocks of matter to explain scientific concepts in an easy-to-understand and entertaining manner.

The little white balls are shown as interacting with each other to form different types of bonds and molecules. For example, when two balls come together, they represent the formation of a covalent bond between two atoms. The movement of the balls and their interactions help to illustrate the concepts of chemical reactions, molecular structure, and chemical bonds.

Additionally, the show often uses the little white balls to demonstrate the properties of different elements, such as the boiling points and melting points of different substances, as well as how they react with each other in various chemical reactions.

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Related Questions

How mnemonic strategies could be used to improve memory?

Answers

Mnemonic strategies can be used to improve memory by improving the capacity of the brain to store information.

Why do mnemonics help us remember?

Mnemonics help us remember by using associations, images, and stories to link information together in a way that our brains can easily recall. This makes it easier to remember facts, numbers, or pieces of information that we would otherwise struggle to remember.

These strategies involve using techniques such as visual imagery, association, and organization to make it easier to recall information. For example, using visual imagery can help to create a mental image of the information or concept being remembered, which can help to recall it more easily. Associations can be made between new information and existing knowledge, which can also help to remember it better. Finally, organizing information into categories or hierarchies can make it easier to recall. These strategies can help to improve memory by making it easier to recall information and by improving the ability to remember information for longer periods of time.

Therefore, improving the capacity of the brain to store information is the answer.

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how many signals would you expect to find in the 13c nmr spectrum of the compound shown? 6 7 8 9 10

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The 13C NMR spectrum of the compound shown would have 6 signals because the compound contains 6 unique carbon atoms.

What is the compound ?

A compound is a substance consisting of two or more elements combined in a fixed ratio. Compounds can be formed from chemical reactions between two or more pure elements, or they can exist naturally in nature. Compounds can be classified in different ways, such as organic or inorganic, covalent or ionic, and molecular or atomic. Compounds can also be defined as combinations of atoms that are held together by chemical bonds. These bonds can be strong or weak and can be formed through a variety of processes. Compounds can exist as solids, liquids, or gases, depending on their temperature and pressure. They can also be in different states such as crystalline, amorphous, or colloidal.

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A charge q is located at the centre of a cube. The electric flux through any face is :

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Answer: 4πq​/ 6(4π∈₀​)

What is the Electric Flux through the surface?

According to Gauss's theorem in electrostatics, the flow of electricity through a surface depends only on the amount of charge trapped on the surface. It does not depend on the size or shape of the surface. Therefore, the flow of electricity through the surface is the same for all figures.

Step 1: Charge enclosed in cube =q

Step 2: Apply Gauss Law

Electric flux passing through cube = ​Charge Enclosed / ∈ ​= ​q / ∈₀

A charge is placed at the centre, Therefore, due to symmetry, all six faces of the cube are equivalent, so the same flux will pass through each face.

∴   Flux through each face = Total flux through cube / 6

​= q / 6∈₀ ​= 4πq​/ 6(4π∈₀​)

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A charge q is located at the centre of a cube. The electric flux through any face is 4πq​/ 6(4π∈₀​)

What is the Electric Flux through the surface?

According to Gauss's theorem in electrostatics, the flow of electricity through a surface depends only on the amount of charge trapped on the surface. It does not depend on the size or shape of the surface. Therefore, the flow of electricity through the surface is the same for all figures.

Step 1: Charge enclosed in cube =q

Step 2: Apply Gauss Law

Electric flux passing through cube = ​Charge Enclosed / ∈ ​= ​q / ∈₀

A charge is placed at the centre, Therefore, due to symmetry, all six faces of the cube are equivalent, so the same flux will pass through each face.

∴   Flux through each face = Total flux through cube / 6

​= q / 6∈₀ ​= 4πq​/ 6(4π∈₀​)

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A student observes a shadow move across the sun during a solar eclipse. Which list represents the position of earth, the sun, and the moon during this event?.

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Answer: sun, moon, earth.

Explanation:

Use the drop-down menus to identify the labeled groundwater features.




Label A


Label B


Label C

Answers

Label An addresses an artesian well. Label B addresses spring and label C addresses a confined aquifer.

What is the distinction between the three waterways?

A Spring addresses the accumulation of water on the surface that has risen up out of the earth.

An artesian well happens when the water ascends from the earth to the surface naturally, in a sort of underground hallway.

A confined aquifer alludes to the accumulation of underground water trapped between two layers of earth.

Based on these definitions, we can distinguish what each of the labels displayed in the figure addresses. In addition, through the figure, seeing the working and the relationship between these three waterways is conceivable.

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Two zones contain groundwater. The first is the unsaturated zone, which is found immediately below the surface of the land and includes both air and water in open pores or voids.

An artesian well is represented by Label A. Label B denotes spring, while Label C denotes a restricted aquifer. What distinguishes the three bodies of water from one another? A spring symbolises the buildup of water that has surfaced after emerging from the subsoil. An artesian well is created when water naturally rises in the form of an underground passageway from the subsoil to the surface. The collection of underground water that is sandwiched between two layers of earth is referred to as a restricted aquifer. We can determine what each of the labels in the figure in the figure represent based on these definitions. Additionally, the interaction and operation of these three bodies of water can be understood by the diagram.

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Two cars with equal mass come to a stop from the same initial speed, one braking gently and the other braking hard.

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The car that brakes hard will convert more kinetic energy to thermal energy compared to the car that brakes gently.

What do you mean by Kinetic energy ?

Kinetic energy is the energy an object has due to its motion. It is defined as the work required to accelerate an object from rest to its current velocity. The equation for kinetic energy (KE) is given by:

KE = 0.5 * m * v²

where

m is the mass of the object and

v is its velocity.

Kinetic energy is a scalar quantity and has units of joules (J) in the SI system. It is an important concept in mechanics and is used to calculate the energy of an object in motion, the energy transfer in collisions and other interactions, and the potential energy of an object in motion.

When a car brakes, its kinetic energy is transformed into thermal energy due to the friction between the brakes and the wheels. The harder the brakes are applied, the greater the friction and the more kinetic energy is converted into thermal energy.

As a result, the car that brakes hard will experience a greater amount of friction and convert more of its kinetic energy into thermal energy, leading to higher temperatures and more energy lost as heat compared to the car that brakes gently.

Therefore, the car that brakes hard will convert more of its kinetic energy into thermal energy due to the increased friction between its brakes and wheels, leading to a greater loss of energy as heat.

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a commuter backs her car out of her garage with a constant acceleration of 1.9 m/s2. assume that her initial motion is in the positive direction.

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If a commuter backs her car out of her garage with a constant acceleration of 1.9 m/s^2 and her initial motion is in the positive direction, we can use kinematic equations to calculate the position, velocity, and time of her car.

The first equation we can use is the position equation:

x = x0 + v0 * t + 0.5 * a * t^2

where x is the final position, x0 is the initial position (which is 0 in this case since she is backing out of the garage), v0 is the initial velocity (which is 0 m/s since she is starting from rest), t is the time, and a is the acceleration (1.9 m/s^2).

The next equation we can use is the velocity equation:

v = v0 + a * t

where v is the final velocity.

To solve for t, we can use either equation and substitute the known values. For example, using the velocity equation:

v = v0 + a * t

t = (v - v0) / a

t = (v - 0) / 1.9

Once we have t, we can use it in the position equation to solve for x:

x = x0 + v0 * t + 0.5 * a * t^2

x = 0 + 0 * t + 0.5 * 1.9 * t^2

x = 0.5 * 1.9 * t^2

The above equation can thus be used to calculate the car's position as a function of time. The velocity and position of the car at any given time can be calculated by plugging the value of t into the velocity and position equations, respectively.

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complete the following statement: the term net force most accurately describes

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The overall force acting on an object, taking into account all the individual forces that are affecting it. The net force is equal to the sum of all the forces acting on an object, and it determines the direction and magnitude of the object's motion.

The net force is also known as the resulting force and it is calculated by subtracting the forces that are in the opposite direction from the forces that are acting in the same direction. The net force is an important concept in physics and is used to describe the interactions between objects and the physical laws that govern motion. force of anything is the measure of the body to create a pressure to pull or push something from its position and we can do it. The net force is equal to the sum of all the forces acting on an object

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three vectors are added together. the magnitude of the resultant vector may be

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Vectors are not added algebraically, but rather geometrically. Two vectors whose product must be determined act differently from one another.

What magnitude of the resultant vector after adding vector?

The result of the three vectors will be zero if the criteria listed below hold. If the third vector's direction exactly opposes that of the resultant of those first two vectors. 3. If the third vector has a magnitude exactly equal to the resultant of the first two vectors.

Finding the sum of several vectors acting on a body is what vector addition is all about. Commutative vector addition. This implies that the order of the vectors has no bearing on the final vector.

Therefore, The outcome is the result of adding two vectors. Here, we see that the magnitude and direction of the two vectors are identical. Two vectors are parallel to one another if their magnitude and direction are distinct from one another.

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Vectors are not added algebraically, but rather geometrically. Two vectors whose product must be determined act differently from one another.

What magnitude of the resultant vector after adding vector?

The result of the three vectors will be zero if the criteria listed below hold. If the third vector's direction exactly opposes that of the resultant of those first two vectors. 3. If the third vector has a magnitude exactly equal to the resultant of the first two vectors.

Finding the sum of several vectors acting on a body is what vector addition is all about. Commutative vector addition. This implies that the order of the vectors has no bearing on the final vector.

Therefore, The outcome is the result of adding two vectors. Here, we see that the magnitude and direction of the two vectors are identical. Two vectors are parallel to one another if their magnitude and direction are distinct from one another.

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Explain the process by which charge is transferred and provide evidence

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The process of transferring charge from a charged body to earth is called earthing and the process involves the transfer of electrons that occurs when an electron relocates from an atom or molecule to a different such entity.

What is a Charge?

This is referred to as the property of subatomic particles that causes it to experience a force when placed in an electric and magnetic field.

Earthing is a method and it is a process is carried out by connecting the neutral or non-current carrying part of the equipment to the ground or other substances and the evidence involves touching of a charged particle to a conductive material which leads to the charges being transferred from the charged material to the conductor such that particles with the same charge will repel.

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planetary winds and currents move in the same direction.

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Planetary winds and currents have a significant impact on the Earth's climate and weather patterns. They are influenced by a variety of factors such as solar radiation, the rotation of the Earth, and temperature gradients.

Planetary winds and currents move in the same direction, assisting in the transport of heat and moisture around the world. For example, trade winds move from subtropical high-pressure zones to equatorial low-pressure zones, whereas prevailing westerlies move from west to east. Warm currents flow from the equator to the poles, and cold currents flow from the poles to the equator, as do ocean currents. The direction and strength of planetary winds and currents influence climate and weather patterns in various parts of the world.

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A block of mass m is at rest on a rough incline, as shown in the figure above. Which of the following forces must have a magnitude equal to mg? Select 2 answers.
a. the total force exerted by the block on the incline
b. the normal force exerted on the block by the incline
c. the force of friction exerted on the block by the incline
d. the gravitational force exerted on earth by the block

Answers

The correct answers are:

a. The total force exerted by the block on the incline.

b. The normal force exerted on the block by the incline.

a. The total force exerted by the block on the incline must have a magnitude equal to mg. This force can be decomposed into two components: one parallel to the incline (friction force) and one perpendicular to the incline (normal force). The sum of these two components is equal to mg.

b. The normal force exerted on the block by the incline must have a magnitude equal to mg. The normal force is the force exerted perpendicular to the incline, and it balances the component of the weight of the block that acts perpendicular to the incline.

c. The force of friction exerted on the block by the incline does not necessarily have a magnitude equal to mg. The force of friction depends on the coefficient of friction between the block and the incline, as well as the other forces acting on the block.

d. The gravitational force exerted on Earth by the block is equal to the weight of the block, which is mg. However, this force is not relevant to the situation of the block on the incline.

Therefore, the correct options are a and b.

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estimate the average gasoline consumption over the time interval [0,3]. the average consumption is enter your response here gallons per day.

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Average gasoline consumption is 20,000 gallons per day.

Engineer-of-Record, Proctor Engineering Research & Consulting, Inc., Alachua, Florida. Gasoline engine, any of a class of internal-combustion engines that generate power by burning a volatile liquid fuel (gasoline or a gasoline mixture such as ethanol) with ignition initiated by an electric spark. this is the oil that is made after the processing of the crude oil and we can use it in our cars for travelling in them. it is very important fuel for us as it is used for burning. Gasoline or petrol is a derivative product of crude oil/petroleum. It is derived during fractional distillation process and has a translucent liquid form. It's not used in its crude form. Different additives are added like ethanol to use it as fuel for passenger vehicles.

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A small block has constant acceleration as it slides down a frictionless incline. The block is released from rest at the top of the incline, and its speed after it has traveled 6.80 m to the bottom of the incline is 3.80 m/s. What is the speed of the block when it is 3.40 m from the top of the incline?

Answers

The speed of the block after 3.4 m is 2.68 m/s. Speed can be defined as the change in the position of an object over time.

The position of an object changes with time, and this is what is meant by speed.

Calculate the acceleration first,

Vf²- Vi²=2aΔs,

Where,

Vf is final speed = 3.80 m/s

Vi is initial speed = 0

Δs is Distance traveled = 7.4 mm

A is acceleration

Fill out the formula with the values,

Vf²- Vi²=2aΔs,

(3.80 m/s)² - 0² = 2xa x6.8 mm

1.061 m/s² = a

Put the value of acceleration,

Vf²- Vi²=2aΔs,- Vi²=2aΔs

Vf²= 2aΔs + Vi²

Vf² =  2x 1.061 m/s² x 3.4mm + 0²

Vf²= 7.22

Vf=2.68 m/s

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SOLVE PLS EZ FOR POINTS

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The substance with meting point of 240 °C and boiling point of 300  °C is hard plastics. Any volume of alcohol has an 78 °C. Candle wax have higher melting point than water.

What is boiling point ?

Boiling point of a substance is the temperature at which the substance is converts from liquid state to vapor state at which the the vapor pressure equal to the atmospheric pressure.

It is clear from the table that, substance with meting point of 240 °C and boiling point of 300  °C is hard plastics. Boiling point of a substance does not change with change in volume.

Hence, any volume of alcohol has an 78 °C. Candle wax have higher melting point than water.

Oxygen and nitrogen can be differentiated based on their densities and mass.

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in a post-apocalyptic world, you must use these metal combs as gratings for gigahertz spectroscopy. the spacing of the comb teeth is 2 mm. if you direct ghz electromagnetic waves at the comb, what frequency (in ghz) is deflected by 10 degrees?

Answers

The frequency deflected by 10 degrees is approximately 3.85 MHz.

What is deflection?

The deflection of 10 degrees by electromagnetic waves with a frequency of f (in GHz) at a metal comb with a tooth spacing of 2 mm can be described by the equation:

sin(10) = m * lambda = m * c / f

where m is the diffraction order, c is the speed of light (3 x 10^8 m/s), and lambda is the wavelength of the wave.

Solving for the frequency:

f = c / (m * lambda) = c / (m * c / f) = f / m

Since sin(10) = 0.173, we can find the diffraction order that gives us this value:

0.173 = m * 2 * 10^-3 / (3 * 10^8)

m = 2.6 * 10^5

Finally, the frequency that will be deflected by 10 degrees is:

f = f / m = 1 / (2.6 * 10^5) = 3.85 * 10^-6 GHz

So the frequency deflected by 10 degrees is approximately 3.85 MHz.

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a student releases a ball from rest on an inclined plane and measures that it travels a distance of 0.5 m in a time of 2.0 s. the average speed of the ball is

Answers

The average speed of the ball is 0.25 m/s

Define speed.

Velocity is the pace and direction of an object's movement, whereas speed is the time rate at which an object is travelling along a path.

The displacement of a body over a predetermined amount of time is referred to as velocity. It has a scalar value. A vector quantity, that is.

Distance/Time = Speed.

A force has the power to alter an object's motion's direction. A greater force acting on an object will result in a greater change in motion. To undergo the same change in motion, a heavier object needs more force than a lighter thing.

S = Average speed

d = total distance

t = total time.

S = d/t.

d = 0.5m

t = 2.0s

S = 0.5/2

S = 0.25m/s

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A spring is hung from the ceiling. When a block is attached to its end, it stretches 2.0 cm before reaching its new equilibrium length. The block is then pulled down slightly and released. What is the frequency of oscillation? (in Hertz)

Answers

The frequency of oscillation can be calculated using the formula f = 1/2π√(k/m) where k is the spring constant and m is the mass of the block.

Using a spring constant of k = 100 N/m and a mass of 2 kg, the resulting frequency of oscillation is 0.785 Hertz.

This formula is known as the natural frequency, and is an important concept in physics. The natural frequency of a system is the frequency at which it tends to oscillate when it is disturbed. This is why when a mass is attached to a spring, the system oscillates when it is disturbed. The natural frequency of a system is determined by the mass and stiffness of its components.

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An elevator does 15,000 jolts of work while exerting a force of 10,000 N to take people to the top floor of a building what distance does the elevator travel

Answers

The elevator travels a distance of 1.5 meters

The distance traveled by elevator can be calculated by the simple work equation:

W = F × d

∴, d = W ÷ F

where W is the work done, F is the force exerted and d is the distance traveled.

Now we have work and force as the elevator does 15,000 J of work and exerts a force of 10,000 N

∴, d = 15,000 J ÷ 10,000 N

d = 1.5 meters

So the elevator travels a distance of 1.5 meters while taking people to the top floor of a building.

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an unknown additional charge q3 is now placed at point b, located at coordinates (0 m , 15.0 m ). find the magnitude and sign of q3 needed to make the total electric field at point a equal to zero. express your answer in nanocoulombs to three significant figures.

Answers

The magnitude and sign of q3 needed to make the total electric field at point a equal to zero is +0.3nc.

What is the charge?

Electric charge is a physical property of matter that causes matter to experience a force when placed in an electromagnetic field.Electric charge can be positive or negative (commonly carried by protons and electrons, by convention). Like charges, they repel each other, and unlike charges, they attract. An object with no net charge is referred to as neutral. The early knowledge of how charged substances interact is now called classical electrodynamics and is still accurate for problems that do not require consideration of quantum effects.

Two point charges are placed on the x axis. The first charge, q1 = 8.00 nC , is placed a distance 16.0 m from the origin along the positive x axis; the second charge, q2 = 6.00 nC , is placed a distance 9.00 m from the origin along the negative x axis.

q3 = +0.3nc

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seafloor topography can be mapped by satellite sensors that use: group of answer choices electromagnetic waves that pass through ocean water and bounce back to the satellite from the seafloor. extremely sensitive cameras that sense electromagnetic radiation being emitted by the seafloor. sound waves that pass through ocean water and bounce back to the satellite from the seafloor. electromagnetic waves that bounce back to the satellite from the sea surface.

Answers

Answer:wet wet

Explanation:

X + worksheet/questions?ald=25241606&wld 3215 MG Calculate Speed X What is the average speed of a car that travels 200 miles in 5 hours? miles per hour (just write the number) Type your answer in below.​

Answers

Answer:

40 miles per hour

Explanation:

Average speed = distance ÷ time

= 200 ÷ 5

= 40

At a certain temperature and preure, the peed of ound in helium i 992 meter per econd, and the peed of ound in air i 334 meter per econd. A ound with a wavelength of 4. 98 meter travel in helium and pae into air. What are the wavelength and frequency of the ound after it enter the air?

Answers

After the sound wave enters air, its wavelength is 1.68 m and its frequency is 199 Hz.

The wavelength and frequency of a sound wave are related by the equation:

v = fλ

Where,

v = the speed of sound

f = the frequency

λ = the wavelength.

In helium, the speed of sound is 992 m/s and the wavelength of the sound wave is 4.98 m. The frequency of the sound wave in helium can be calculated as:

f = v / λ = 992 m/s / 4.98 m = 199 Hz

When the sound wave passes from helium into air, the speed of sound decreases to 334 m/s. Since the frequency is constant for a given wave, the wavelength must change to compensate for the decrease in speed:

λ = v / f = 334 m/s / 199 Hz = 1.68 m

So, after the sound wave enters air, its wavelength is 1.68 m and its frequency is 199 Hz.

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at which of the following locations is the electric field the strongest? a point 1 m from the surface of a charged spherical shell with a radius of 0.5 m and a charge of 1 c a point 0.1 m (perpendicular distance) from the center of a 10-m-long wire with 1 c of charge distributed on it a point 1 m from a 1-c point charge a point 0.1 m (perpendicular distance) from the center of a 10-m2 conducting plane with charge with 1 c of charge distributed on each side a point 1 m from the surface of a charged spherical with a radius of 1 m that has 1 c of charge distributed on it

Answers

A point 0.1 m (perpendicular distance) from the center of a 10 - m long wire with 1C of charge distributed on it. Thus, option 4 is correct.

What is charge?

Subatomic particles with an electric charge will exert a force when they are in an electric or magnetic field, according to the definition of electric charge.

Protons and electrons are the most common charge carriers for the two types of electrical charges—positive and negative.

Subatomic particles or matter particles serve as examples of different types of charges:

The charge on a proton is positive.

Negative charge is a property of electrons.

Null charge exists in neutrons.

Option 4 has the  the strongest electric field

[tex]$$for the long wire,$$\mathrm{E}=\frac{\lambda}{2 \pi \epsilon_{\mathrm{o}} \mathrm{r}}$$where,$$\lambda=\frac{\mathrm{Q}}{\mathrm{L}}=\frac{1}{10}=0.1 \frac{\mathrm{C}}{\mathrm{m}}$$so,$$\begin{aligned}\mathrm{E} & =\frac{0.1}{2 \pi \times 8.85 \mathrm{e}-12 \times 0.1} \\\mathrm{E} & =1.8 \times 10^{10} \ {\mathrm{N}}/{\mathrm{C}}\end{aligned}$$[/tex]

which is comparatively stronger than other cases.

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a ball is thrown straight up from the ground level, with an initial velocity of 9.8 m/s. how high is the ball thrown? assume the acceleration due to gravity is 9.8 m/s2.

Answers

The ball is thrown up to a height of 4.9 high. The result is obtained by using the equation in uniformly accelerated straight motion.

Uniformly Accelerated Straight Motion

The equations apply in uniformly accelerated straight motion in vertical dimension are

v₁ = v₀ + gt

v₁² = v₀² + 2gh

h = v₀t + ½ gt²

Where

v₀ = initial velocityv₁ = final velocitya = accelerationt = timex = distance

A ball is thrown straight up from the ground level.

v₁ = 9.8 m/sg = 9.8 m/s²

Find the height of the ball thrown!

It means that we find for the highest point of the ball can reach. That time the velocity of the ball is 0.

Use the second equation above to find the height of the ball thrown!

v₁² = v₀² - 2gh

0 = 9.8² - 2(9.8)h

96.04 = 19.6h

h = 4.9 m

Hence, the highest point of the ball thrown is 4.9 m.

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FIGURE Q2.7 shows the position-versus-time graph for a movingobject. At which lettered point or points:a. Is the object moving the fastest?b. Is the object moving to the left?c. Is the object speeding up?d. Is the object turning around?

Answers

A distance-time graph is a graph that displays an object at various positions and times. This graph's slope provides the speed value. is shifting in such a way that the slope of the position-time graph varies at six separate places.

The steepest slope of the x-t graph is found at point C. The object is therefore travelling the fastest at point C.

Step 1 of Part B: Introduction

The velocity of the supplied item is a tangent to the position-time curve.

Step 2: Clarification

The slope of the curve at point F in the provided graph is negative. Which means that at F, the object is travelling in the opposite direction, or in the direction of the starting point, if we regard the positive x-axis to be positive.

Step 1 of Part C: Introduction

Whether an object is travelling to the right or to the left depends on the slope of the velocity curve with a positive x-axis.

Step 2: Clarification

The slope of the curve is increasing from point B or is moving in the direction of a positive value. The purpose is therefore accelerating up from point B.

Step 1 of Part D: Introduction

At point E, the positive x-axis is parallel to the tangent of the x-t curve.

Step 2: Clarification

At point E, the position-time curve's slope is zero. The slope turns negative from this point onward. From point E, the curve is turning around and moving in the opposite direction.

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A speaker creates a tone at a frequency of 500.0 Hz. The speaker cone has a maximum displacement of 0.2 cm when turned on. The speed of sound in air is 343 m/s. Construct mathematical and graphical representations of the resulting wave as a function of time.​

Answers

Answer:344

Explanation:

The mathematical representations of the resulting wave as a function of time is y(t) = Asin(2π ft  +  ϕ).

What is the resulting wave function?

The resulting wave function is determined as follows;

y(t) = Asin(2π ft  +  ϕ)

Where;

y(t) is the displacement of the wave as a function of time, A is the amplitude (0.2 cm), f is the frequency (500.0 Hz), t is the timeϕ is the phase angle.

To construct a graphical representation of the wave, we will plot a displacement versus time graph as shown in the image uploaded. The wave will repeat after 1/f seconds, which is the period of the wave.

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During a softball game, a shortstop catches a ground ball. The action force is the ball pushing on the glove. What is the reaction force? question 2 options: the ball pushing on the ground the glove pushing on the ball the ground pushing on the ball the fielder pushing on the ball.

Answers

The reaction force would be the exact opposite of the action. In this case, choice (c) would be the most correct. If the action is the ball pushing the glove, the reaction would then be the glove pushing back on the ball.

The reaction force to the action force of a ground ball pushing on a glove during a softball catch is the glove pushing back on the ball with equal and opposite force. This is Newton's Third Law of Motion in action.

The glove's pushback on a ball during a catch is the reaction force, equal and opposite to the ball's push, according to Newton's Third Law.

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As well as oxygen levels and rainfall, what other non-living indicator can give a good indication of changes in the environment?.

Answers

As well as oxygen levels and rainfall, temperature as

non-living indicator also can give a good indication of changes in the environment.

Change in natural environment

Changes in the natural environment can occur due to natural factors and human factors. Floods, hot lava, volcanic eruptions, earthquakes and tsunamis are examples of changes in the natural environment due to natural factors.

While the cause of changes in the natural environment due to human factors that can cause changes in the natural environment.

For example, the use of technology in managing nature, excessive use of the natural environment, disposal of waste into the natural environment and so on.

When the use of technology is not considered properly it can result in damage. Changes that occur in the natural environment can even cause the people who live in the area to be forced to leave their homes.

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which technique uses parallel lines to suggest spatial volume?

Answers

The technique of using parallel lines to suggest spatial volume is known as linear perspective.

Linear perspective is a method used in art to create an illusion of depth and space on a flat surface, such as a canvas or a piece of paper. The technique uses parallel lines to suggest spatial volume and make the depicted objects appear to recede into the distance. This creates the illusion of a three-dimensional space on a two-dimensional surface.

The basic idea behind linear perspective is that as objects in a scene move further away from the observer, they appear to get smaller. This phenomenon is due to the fact that the lines of sight from the observer to the objects are converging, creating the illusion of depth.

In linear perspective, the artist draws a set of parallel lines that converge at a single vanishing point. The position of the vanishing point determines the direction in which the depicted space is receding. The artist then uses these lines as a guide to draw objects in the scene, making sure that the edges of each object are parallel to the lines and converge at the vanishing point.

Linear perspective was first used in the Renaissance period and has since become a staple of Western art. It is a crucial component of many forms of representational art, including painting, drawing, and printmaking. It continues to be used in contemporary art, as well as in design, architecture, and film-making.

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