Answer:
Compound-Complex sentence
Explanation:
compound-complex sentence is a type of sentence that is comprised of atleast two independent clauses also it is characterised by having one or more dependent clauses.
Among all types of sentences, compound-complex sentences are usually the most complicated as well as the longest. This is usually the point because it is made up of two sentence structures; compound and complex sentence structure.
An example of a compound complex sentence below;
Though Mike prefers watching high school films, he rented the latest spy thriller, and he enjoyed it very much.
A soda can rolls off a table top and lands 0. 225 m away 0. 416 s later. How tall was the table
According to the given statement ,we can use the equations of motion and the concept of free fall. Therefore, the height of the table is approximately 0.085 meters.
To determine the height of the table, we can use the equations of motion and the concept of free fall.
First, let's identify the known values:
- The distance the soda can rolled horizontally, 0.225 m.
- The time it took for the soda can to land, 0.416 s.
- The acceleration due to gravity, which is approximately 9.8 m/s².
Since the can was rolling horizontally, we can ignore any initial vertical velocity and consider only the vertical motion of the can.
Using the equation of motion for vertical displacement:
s = ut + (1/2)at²
Where:
- s is the vertical displacement
- u is the initial vertical velocity (which is zero in this case)
- t is the time
- a is the acceleration due to gravity
In this case, we want to find the height of the table, which is the vertical displacement. So we can rearrange the equation to solve for s:
s = (1/2)at²
Plugging in the values:
s = (1/2) * 9.8 m/s² * (0.416 s)²
Simplifying:
s = (1/2) * 9.8 m/s² * 0.173056 s²
s = 0.085 m
Therefore, the height of the table is approximately 0.085 meters.
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What are the two types of heat in the earth's surface?
The other two ways heat moves around are radiation and convection.
power is transferred between the Earth's surface and the ecosystem in a variety of ways, together with radiation, conduction, and convection. Conduction is one of the 3 important methods that warmness electricity moves from region to place. the other ways warmness actions around are radiation and convection.
The go with the flow of heat from Earth's indoors to the surface is anticipated at forty 7±2 terawatts (TW) and is derived from two fundamental resources in more or less identical amounts: the radiogenic warmness produced by means of the radioactive decay of isotopes within the mantle and crust, and the primordial warmth left over from the formation of Earth.
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A mass of 293 g is placed on a spring with an unknown spring constant. The mass has been set in oscillation above a Vernier Motion Sensor. Click on the collect button to start collecting data on the position of the mass as a funtion of time. After you have collected your data, determine the amplitude of oscillation, the frequency of oscillation and the spring constant of the spring. Enter your answers into the box below and then hit submit to see if you are correct
Amplitude (cm):
Frequency (Hz):
Spring Constant (N/m):
The necessary data and applied the relevant formulas, you can input your answers into the boxes provided and hit submit.
As an AI language model, I do not have the capability to click on buttons and collect data. However, I can provide guidance on how to calculate the requested values based on the data collected.
To determine the amplitude of oscillation, measure the maximum displacement of the mass from its equilibrium position. This value represents the distance between the maximum and minimum positions of the mass during one complete cycle of oscillation, and it is expressed in centimeters (cm).
To calculate the frequency of oscillation, measure the time it takes for the mass to complete one cycle of oscillation (also known as the period), and then use the following formula: frequency (Hz) = 1 / period (s). The period can be calculated by measuring the time it takes for the mass to complete a certain number of oscillations and dividing that time by the number of oscillations.
To determine the spring constant of the spring, use the formula: spring constant (N/m) = mass (kg) x (2π x frequency)^2 x amplitude (m) / 4π^2. The mass of the object in this case is 0.293 kg.
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Suppose 61.5 L of gasoline, which has a coefficient of volume expansion of 9.5 × 10^-4 /°C, was originally at 15.0°C.
To what volume, in liters, does the gasoline expand when it warms to 35.0°C?
The gasoline expand when it warms to 35.0°C at 73.185 liters.
To find the final volume of the gasoline when it warms from 15.0°C to 35.0°C, we need to use the formula for volume expansion:
ΔV = V₀ × β × ΔT
Where ΔV is the change in volume, V₀ is the initial volume, β is the coefficient of volume expansion, and ΔT is the change in temperature.
Step 1: Calculate the change in temperature (ΔT).
ΔT = T_final - T_initial = 35.0°C - 15.0°C = 20.0°C
Step 2: Plug in the values into the formula for volume expansion.
ΔV = 61.5 L × (9.5 × 10^-4 /°C) × 20.0°C
Step 3: Calculate the change in volume (ΔV).
ΔV = 61.5 L × (9.5 × 10^-4 /°C) × 20.0°C = 11.685 L
Step 4: Add the change in volume (ΔV) to the initial volume (V₀) to find the final volume (V_final).
V_final = V₀ + ΔV = 61.5 L + 11.685 L = 73.185 L
So, the gasoline expands to a volume of 73.185 liters when it warms from 15.0°C to 35.0°C.
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Two point in a rectangular coordinate ytem have the coordinate (5. 0, 2. 7) and (−3. 1, 5. 5), where the unit are centimeter. Determine the ditance between thee point
8.57cm is the distance between thee point
Define distance .
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 traveled between them are not the same. The length of the entire journey taken to get from one point to another is the distance traveled.
Displacement is just the distance between the object's initial location and its final location. The amount of distance an object travels in a specific length of time is measured in terms of velocity.
d is \(\sqrt{x} (x2-x1)^2 + (y2-y1)^2\)
x1 ,y1 is 5.0, 2.7
x2, y2 is -3.1, 5.5
d will be sqrt.(--3.1-5)^2 + (5.5-2.7)^2 i.e. 8.57cm
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because of the pressure inside a popcorn kernel, water does not vaporize at 100°C. Instead, it stays liquid until its temperature is about 175°C, at which point the kernel ruptures and the superheated water turns into steam. How much energy is needed to pop 95.0 g of corn if 14 percent of a kernel's mass consists of water? Assume that the latent heat of vapor- ization for water at 175°C is 0.90 times its value at 100°C and that the kernels have an initial temperature of 175°C.
The energy needed is 35.4 KJ, to pop the corn of a given quantity, and by using latent heat of vaporization of water.
What is Energy?
When work is done and heat and light are produced, energy is the quantitative quality that is transferred to the body or to the physical system. The law of conservation of energy asserts that although energy can be changed in form, it cannot be created or destroyed. Energy is a conserved quantity.
Calculations:
The boiling point of water is 175 °C.
The mass of corn is 95.0 g.
The percentage of water in corn is 14%.
The latent heat of vaporization for water at 175 °C is 0.90 times its value at 100 °C.
Calculate the mass of water,
Mw = (14/100) × (95g) × (1kg/1000g)
= 0.0133 Kg
calculate the latent heat of vapourization,
Lv = (0.9) × (2.26 × \(10^{6}\)J/kg)
= 2.034 × \(10^{6}\) J/kg
Total heat required,
Q = Mw Lv + Mw. C Δ T
Substitute the values,
Q = (0.0133) × (2.034 × \(10^{6}\)) + (0.0133) × (4186) × (175.25)
= (35403.27 J) × ( 1KJ/ 1000J)
= 35.4 KJ
Hence, the energy needed is 35.4 KJ, to pop the corn of a given quantity.
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What angle (in degrees) is needed between the direction of polarized light and the axis of a polarizing filter to cut its intensity to one-fifth of its initial value?
The 60 degrees is needed between the direction of polarized light and the axis of a polarizing filter to cut its intensity to one-fifth of its initial value.
It is given that axis of a polarizing filter to cut its intensity to one-fifth of its initial value.
It is required to find the angle between the direction of polarized light and the axis of a polarizing filter to cut its intensity to one-fifth of its initial value.
What is the angle between the direction of polarized light and the axis of a polarizing filter?Suppose the angle between the polarizer and the axis of filter is θ.
The intensity of light that is passing after the filter is 0.2 l₀.
From the law of Malus, we have
I = I₀ \(cos^{2}\)θ
0.2I₀= I₀ \(cos^{2}\)θ
0.2 = \(cos^{2}\)θ
\(cos\\\)θ = 0.447
θ = 60°
Thus the angle between the direction of polarized light and the axis of a polarizing filter is 60 degree.
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Which of the arrows is in the direction of the net force on charge b?
The correct answer is option: e. Because, this force always acts along line joining the two charges. For like charges, the force is repulsive in nature.
The Coulomb's law states how charges interact with each other. That law states that: \(F =q1q24πϵ0r2\)
If the charges are like , the force will be repulsive, meaning that each charge will exert a force on the other to push the two of them apart. If charges are opposite , they will exert an attractive force on each other. G or unlike charges, the force is attractive as shown below: ( as Shown in image attached to question), As we know none of the arrow moves in the direction of the net force. Hence, the correct answer is option: e
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a positively charged particle passes through a laboratory traveling in an easterly direction. there are both electric and magnetic field in the room and their effects on the charged particle cancel. if the electric field points upward, what must be the direction of the magnetic field? 1. upward 2. north 3. south 4. west 5. downward 6. east
If there are both electric and magnetic fields in the room and their effects on the charged particle cancel, and the electric field points upward, then the direction of the magnetic field is downwards.
The electric force on a charged particle is provided by an electric field, whereas the magnetic force is provided by a magnetic field. The effect of the electric and magnetic fields on the motion of the particle is a function of the relative directions and magnitudes of the two fields.
If the magnetic field is perpendicular to the electric field and the particle's velocity, the magnetic force is at right angles to both the electric force and the velocity, and it does not adjust the particle's speed. If the electric and magnetic forces on a charged particle are equal and opposite, they cancel each other out, resulting in no acceleration of the charged particle. Since the electric field is pointing upward, the magnetic field should be pointing downward.
In conclusion, the direction of the magnetic field is downward if the electric field is pointing upward, according to the given condition.
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when electromagnetic radiation (e.g., light) is doppler-shifted by motion of the source away from the detector the
When electromagnetic radiation is Doppler-shifted by motion away from the detector, the observed wavelength increases.
What causes Doppler shift effect?When an object emitting electromagnetic radiation, such as light, is moving away from an observer (detector), the wavelengths of the observed radiation are stretched or increased.
This phenomenon is known as the Doppler shift. It occurs because the motion of the source affects the perceived frequency or wavelength of the radiation. When the source is moving away, the observed wavelength is longer compared to the emitted wavelength.
This effect can be observed in various contexts, such as the redshift observed in the light from distant galaxies, indicating their recession from us due to the expansion of the universe.
Additionally, it is relevant in understanding the behavior of stars, galaxies, and other astronomical objects. By analyzing the Doppler shift, scientists can infer important information about the motion and velocity of celestial objects.
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explain why law of inertia is related to ball
Answer:
Soccer ball is a body at rest and does not move(because of inertia of rest) unless a force is applied on it
Explanation:
thanks for question
PLS ANSWER CORRECTLY ASAP. What moon phase is 1 WEEK BEFORE first quarter moon? And what moon phase is 1 WEEK AFTER first quarter moon?
I have attached a picture below as well..
Answer:
waxing cresent and waxing gibbous
Answer:
i think it is the full moon
Explanation:
tell me if am wrong
Which statement describes an unanticipated impact of a technological
advance
Answer:
A. a laser system developed by NASA to help spaceship dock with space stations was later adapted to help doctors perform eye surgery.
Explanation:
Option A is correct because it is the statement that describes an unanticipated impact of a technological advance.
The laser system used in spaceship has been discovered to be useful during eye surgeries. In astronaut, the eye tracking device is used to used to track the eyes without interfering with the work of the astronaut. Also, it now became useful in surgery in tracking the position of the eye without interfering with the surgeon's work.
Answer:
A. a laser system developed by NASA to help spaceship dock with space stations was later adapted to help doctors perform eye surgery.
Explanation:
A P E X
A friend of yours who has not taken an astronomy class looks at your textbook and really likes the picture of the Pleiades, a cluster of stars surrounded by a bluish reflection nebula. She wants to know what causes that beautiful blue glow. To explain it to her, you want to compare the process that causes the blue glow to something that is in your friend's everyday experience. Which of the following terrestrial phenomena is the result of the same type of process that makes a reflection nebula in space?
A. the blueish glow of the flame on a gas stove
B. the blue light you see reflected from a blue sweater
C. the blue colour of the Earth's sky
D. the blue-white colour of the hottest stars
E. the blue feeling you get when you don't do well on an astronomy exam
Answer:
C. the blue colour of the Earth's sky
Explanation:
The Pleiades is a cluster of sister stars that are among the closest star cluster to earth.
The reflection nebula of the Pleiades is due to the scattering of the blue light from the hot blue luminous stars that dominate the star cluster. Th blue light is scattered from dust molecules, thought to be predominantly carbon compound like diamond dusts, and other compounds like iron.
The blue colour of the Earth's sky is the closest terrestrial phenomenon to the reflection nebula. On a clear cloudless day, molecules in the air scatter the blue component of light more than the other component colours of white light, giving the sky its characteristic blue coluor.
The common characteristics of the luminous nebula and the Earth's blue sky is that they both have their light scattered by the presence of small particles.
what energy source would be the most cost efficient and have the smallest impact on the climate? evidence?
Answer: Solar energy and wind energy both can be used
Explanation: Solar energy as well as wind energy would be the most preferable energy source for this community.
Solar energy is the energy that is directly derived from the sun and can be transformed into electrical energy. For example, the use of solar panels.
Wind energy is obtained by the natural agent known as wind. In the region where the wind is high, the turbines moves very fast, thereby generating electricity. For example, wind mill.
Thus this two energy sources are less costly and have lesser environmental impacts and they are very precise and is currently rising in the faster rate and with innovative technical upgradation.
a series rlc circuit has an impedance of 120 ω and a resistance of 64 ω. what average power is delivered to this circuit when vrms = 90 volts?
The average power delivered to the circuit is 126.56 watts.
In a series RLC circuit, the impedance is given by Z = √(R^2 + (XL - XC)^2), where R is the resistance, XL is the inductive reactance, and XC is the capacitive reactance. We know that the impedance Z is 120 ω and the resistance R is 64 ω. So, we can use these values to find the values of XL and XC.
XL = Z^2 - R^2 = √(120^2 - 64^2) = 105.17 ω
XC = √(Z^2 - R^2) = √(120^2 - 64^2) = 105.17 ω
Now, we can use the formula for average power in a series RLC circuit, which is P = Vrms^2/R, where Vrms is the rms voltage. Here, Vrms is given as 90 volts.
P = Vrms^2/R = 90^2/64 = 126.56 watts.
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calculate the density, in g/l, of sf6 gas at 27°c and 0.500 atm pressure.
The density of the SF₆ gas at the given pressure and temperature is 2.96 g/l.
The given parameters:
temperature of the SF₆ gas, T = 27 ⁰C = 273 + 27 = 300 Kpressure of the SF₆ gas, P = 0.5 atmThe molecular mass of the SF₆ gas is calculated as follows;
M of SF₆ = 32 + (6 x 19) = 146 g/mol
The density of the SF₆ gas is calculated by applying ideal gas law as follows;
\(PV = nRT\\\\PV = \frac{m}{M} RT\\\\PM = \frac{m}{V} RT\\\\PM = \rho RT\\\\\rho = \frac{PM}{RT}\)
where;
\(\rho\) is the density of the gasR is the ideal gas constant = 0.0821 L.atm/mol.K\(\rho = \frac{0.5 \times 146}{0.0821 \times 300} \\\\\rho = 2.96 \ g/l\)
Thus, the density of the SF₆ gas at the given pressure and temperature is 2.96 g/l.
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A copper wire has a cross-sectional area of 0.80 × 10-6 m2. The number density of electrons for copper is 9.5 × 10^28 m-3. A current of 18 A flows through the wire. Calculate the mean drift velocity of the free electrons in the wire. *
Answer: 1.480 mm/s
Explanation:
Given
Cross-sectional area \(A=0.80\times 10^{-6}\ m^2\)
Number density(no of charges per unit volume) \(n=9.5\times 10^{28}\ m^{-3}\)
Current \(I=18\ A\)
We know, drift velocity is given by
\(\Rightarrow v_d=\dfrac{I}{neA}\\\Rightarrow v_d=\dfrac{18}{9.5\times 10^{28}\times 1.6\times 10^{-19}\times 0.8\times 10^{-6}}\\\Rightarrow v_d=\dfrac{18\times 10^{-3}}{12.16}=1.480\ mm/s\)
what fraction of the light shining straight at a piece of clear glass is reflected from the first surface?
When light waves encounter a clear glass surface, some of the light is reflected and some is transmitted through the glass. The amount of light that is reflected depends on the angle of incidence and the refractive index of the glass.
Assuming the glass is in air, the fraction of light that is reflected from the first surface can be calculated using the Fresnel equations. For normal incidence (when the light is shining straight at the glass), the fraction of light reflected is given by:
R = ((n₁ - n₂)/(n₁ + n₂))²
where n₁ is the refractive index of air (approximately 1) and n₂ is the refractive index of the glass. For typical clear glass, n₂ is around 1.5.
Plugging these values into the equation, we find that the fraction of light reflected from the first surface is approximately 4%. Therefore, 96% of the light shining straight at the glass is transmitted through the first surface.
It's important to note that the light that is transmitted through the first surface can be partially reflected again at the second surface of the glass, leading to further losses due to reflection.
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Antonio (883 N) does a push-up lifting his body a total of 0.6 meters (down and back up). If this process generated 375 Watts of power, how long did it take her to complete the push-up?
Answer:
Time = 1.413 seconds.
Explanation:
Given the following data;
Force = 883N
Distance = 0.6m
Power = 375 Watts
To find the time;
First of all, we would find the work done by Antonio.
Workdone = force * distance
Workdone = 883 * 0.6
Workdone = 529.8 Joules.
Now, to find the time;
Time = workdone/power
Substituting into the equation, we have
Time = 529.8/375
Time = 1.413 seconds.
Therefore, it took her 1.413 seconds to complete the push-up.
As a ball is released from 10ft above the ground, it falls freely (without friction)
toward the ground, at what point does the ball have the maximum gravitational
potential energy?
Can't be determined
At the top, at the release point.
Half
way
down the ground
At the floor
Answer:
Explanation:
The formula to find Potential Energy is PE = mgh, where m is the mass of the object, g is gravity, and h is the height from which the object can potentially fall. Because this is linear, then PE will increase as either the mass or the height increase (gravity is constant at 9.8 m/s/s). If the mass of the ball being dropped doesn't change, then the only thing that determines this ball's max PE is the height from which it is dropped; max PE ALWAYS occurs at the highest point from which an object can potentially fall. So your answer is "At the top".
help me people( ◜‿◝ )♡
Answer:
4
Explanation:
the temperature at and above which vapor of the substance cannot be liquefied, no matter how much pressure is applied.
(FREE FALL) An object falls from an unknown height, crosses last 196m in 4s. Find the falling time and height.
Answer: An object is dropped from a height of 75.0 m above ground level.
Explanation: I hoped that helped !
The constellation hercules, named after an ancient greek mythical hero. Page from a 1430 copy of the book of fixed stars, an astronomy book written by a tenth-century muslim scientist
An artwork from The Book of Fixed Stars is seen in the figure.
A man is depicted in the drawing holding a sickle with his left hand and extending his right arm forth. The person is hunched over on his left knee, and above him is inscribed in Arabic calligraphy. There are dots all throughout the artwork with Arabic text that identify specific stars and their brightness as observed by Muslim astronomers.
The monarch of the Turkic Timurid dynasty, which ruled over a large portion of Central Asia in the fifteenth century, received this copy of The Book of Fixed Stars. Individual stars are represented by the dots spread throughout the picture, and the symbols next to the dots denote the stars' varying luminosities, as observed by Muslim astronomers.
The greatest evidence that intellectual activities in the Muslim world persisted in the era between 1200 and 1450, despite the dissolution of the Abbasid Caliphate, is the sponsorship of scholarship by Turkic dynasties, such as the Timurids.
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A wave with a height of 6 would have greater amplitude than a wave with a height of 5 true or false? HELP
Answer:
it could be either or because it doesnt just depend on the height but it also depends on the pressure but then again the question didnt ask anything about the pressure so the answer should be true
Explanation:
You drive a bumper car into another bumper car whose driver has a much larger body mass than you do. Who experiences more of a jolt, you or the other driver?
Answer:
both drivers experience the same force. just with different "results"
Explanation:
Answer:
You do
Explanation:
Momentum is mass*velocity. So Newton's 3rd law equal and opposite reaction. Because you weigh less you will have more force act on you than the driver who weighs more.
People under going physical therapy after an injury often find it helpful to perform exercise in water? Why?
(No links please)
An FM radio tuning circuit has a coil with an inductance of 0.0036 mH. What is the value of the capacitance if the set is tuned to 91.3 MHz? a. 3.38E-12 F b. 2.65E-12 F c. 4.84E-13 F d. 8.45E-13 F e. 8.33E-12 F
The value of the capacitance required to tune an FM radio circuit to 91.3 MHz with a coil inductance of 0.0036 mH is 2.65E-12 F.
To calculate the capacitance, we can use the formula for the resonant frequency of an LC circuit: f = \(1 / (2\pi \sqrt(LC)\)). Rearranging the formula, we have L = \((1 / (4\pi ^{2} f^{2} C))\). Plugging in the given values, we can solve for C.
First, convert the inductance to Henrys:\(L = 0.0036 mH = 0.0036 * 10^(^-^3^)\) H = 3.6 × 10^(-6) H. The frequency is given as 91.3 MHz, so f = 91.3 × 10^6 Hz. Plugging these values into the formula, we get\(3.6 * 10^(^-^6^) = (1 / (4\pi ^{2} * (91.3 * 10^6)^{2} * C))\). Solving for C, we find \(C = 2.65 * 10^(^-^1^2^)\) F, which corresponds to option b.
Therefore, the value of the capacitance required to tune the FM radio tuning circuit to 91.3 MHz is approximately \(2.65 * 10^(^-^1^2^)\) F.
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The equation y = 5 Sin (3x - 4t), where
y is in millimeters, x is in metres and t
is in seconds, represents a wave motion.
Determine the (i) frequency (ii) period
(iii) speed of the wave.
Answer:
Frequency, f = 0.63 Hz
Period, T = 1.58 s
Speed of a wave, v = 1.34 m/s
Explanation:
The equation of a wave is given by :
\(y = 5 \sin (3x - 4t)\) ...(1)
y is in mm
x is in meters
t is in seconds
The general equation of a wave is given by :
\(y=A\sin(kx-\omega t)\) ...(2)
(i) Compare equation (1) and (2) we get :
\(k=3\\\\\omega=4\)
Since,
\(\omega=2\pi f\\\\f=\dfrac{\omega}{2\pi}\\\\f=\dfrac{4}{2\pi}\\\\f=0.63\ Hz\)
(ii) Period of wave is :
\(T=\dfrac{1}{f}\\\\T=\dfrac{1}{0.63}\\\\T=1.58\ s\)
(iii) Speed of a wave,
\(v=\dfrac{\omega}{k}\\\\v=\dfrac{4}{3}\\\\v=1.34\ m/s\)
A fixed charge (circle) is placed somewhere in empty space. A test charge is placed at point x. If the fixed charge is replaced by one with twice the amount of charge, then the electric force the test charge experiences will:
A. Double B. Quadruple C. Be one quarter as large D. Be halved E. None of the above х
If a test charge is substituted for the fixed charge with one that has twice as much charge, the test charge will experience the following electric forces: Double A.
What exactly does a force in science mean?The definition of "force" is obvious. It is quite fair to use the phrases "push" or "pull" to describe a force at this level. An object simply does not "have in it" or "contain" a power.
What does a force actually signify at its core?When pushed or pulled, a massed object will alter its velocity. A body's resting state can be changed by an outside force.
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