0.8 percent strain elongation does the rod undergo when it undergoes a temperature increase of 1000°c
As per given information;
Thermal expansion coefficient = [tex]8\times10^{-5}[/tex]°[tex]C^{-1}[/tex]
The original length of the rod = 10 cm
change in temperature = 1000°c
The change in length of the ceramic rod ΔL can be calculated using the formula:
ΔL = α * L * ΔT
where:
α = thermal expansion coefficient
L = original length of the rod
ΔT = change in temperature
By placing in the values given in the problem,
we get:
ΔL = ([tex]8\times10^{-5}[/tex]°[tex]C^{-1}[/tex]) * (10 cm) * (1000 °C)
ΔL = 0.08 cm
By using the formula we can calculate the percent strain elongation (ε) :
ε = (ΔL / L) * 100%
where:
ΔL denotes a change in the length of the rod
L denotes the original length of the rod
By plugging in the values, we get:
ε = (0.08 cm / 10 cm) * 100%
ε = 0.8%
Therefore, the ceramic rod undergoes a percent strain elongation of 0.8% when it undergoes a temperature increase of 1000°C.
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how many teaspoons are in an ounce
In one fluid ounce there are 6 teaspoons.
In 1 fluid ounce there are 2 tablespoons.
The calculation is as follows,
1 fluid ounce = 2 tablespoons (tbsp)
1 tablespoon = 3 teaspoons (tsp)
Therefore, 1 fluid ounce = 2 tbsp * 3 tsp/tbsp = 6 teaspoons.
So there are 6 teaspoons in one ounce.
This is because a teaspoon is a unit of measurement for volume, whereas an ounce is a unit of measurement for weight. When measuring liquids, it's important to use volume measurements like teaspoons or fluid ounces instead of weight measurements like ounces or grams.
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a dragster starts from rest and travels 1/4 mi in 4.7 s with constant acceleration. what is its velocity in mi/h when it crosses the finish line?
Answer:
The dragster's velocity in mi/h when it crosses the finish line is 159.2 mi/h. This can be calculated by taking the distance traveled divided by the time taken, multiplied by 3600 (for conversion of seconds to hours).
When preparing a wet mount specimen for viewing, it should be covered with ______. A) clear paper. B) another glass slide. C) a coverslip
When preparing a wet mount specimen for viewing, it should be covered with a coverslip.
A coverslip is a thin, flat piece of glass or plastic that is placed over the specimen on the slide. It is used to protect the specimen from being compressed or damaged, and to prevent evaporation of the liquid medium that the specimen is suspended in. The coverslip also helps to keep the specimen in focus and allows the viewer to observe the specimen clearly under a microscope.
To prepare a wet mount, a small amount of the specimen is placed on a microscope slide and a drop of liquid medium (such as water, saline, or stain) is added. The coverslip is then placed over the specimen at a slight angle and carefully lowered onto the slide to avoid trapping air bubbles. The coverslip should be pressed down gently to flatten the specimen and remove any excess liquid, but not so hard as to crush the specimen.
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A person gives a box a shove so that it slides up a ramp, then reverses its motion and slides down. The direction of the force of friction isA) Always down the ramp.B) Up the ramp and then down the ramp. C) Always up the ramp.D) Down the ramp and then up the ramp. E) Perpendicular to the slope at all times.
Down the ramp and then up the ramp is the direction of force of friction.
What is Force of Friction?
The force of friction is a type of contact force that opposes the relative motion or tendency of motion between two surfaces in contact. When two surfaces are in contact and one of them is moving or attempting to move relative to the other, the frictional force acts to resist the motion.
The force of friction arises due to the interlocking of surface irregularities or the adhesive forces between the two surfaces in contact. The amount of frictional force depends on several factors, including the nature of the surfaces in contact, the normal force pressing the two surfaces together, and the presence of any lubricants or other substances between the surfaces.
There are two main types of frictional forces: static friction and kinetic (or sliding) friction. Static friction is the force that must be overcome to set an object in motion, while kinetic friction is the force that opposes the motion of an object that is already in motion.
Frictional forces are important in many everyday situations, from the movement of vehicles on roads and the motion of objects on surfaces to the friction between parts in mechanical systems.
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why would a baseball player see a baseball flying through the air before he hears the crack of the ball on the bat?
A baseball player see a baseball flying through the air before he hears the crack of the ball on the bat because the sound is made as the ball flies through the air. The eyes react faster than ears. Light moves faster than sound.
What are light waves ?The term light wave defined as the motion of light conceptualized as a wave, defined by such properties as reflection, refraction, and dispersion.
The light waves heavily traveled back from the sky, obtaining energy, and the sound waves traveled in a straight line, losing energy, making the sound to be delayed.
Thus, The eyes react faster than ears. Light moves faster than sound.
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how to convert 60km to mph?
60 kilometers per hour (Km) is equal to 37.28 miles per hour.
Use formula, km/ 1.609 to convert to mph.
Distance is the sum of an object's movements, regardless of direction. Distance can be defined and explained as the amount of space an object has covered, regardless of its starting or ending position.
The pace at which an object's position changes in any direction is referred to as its speed. The distance traveled in the relation to the time it took to travel that distance is how speed is defined. Since speed simply has a direction and no magnitude, it is a scalar quantity. You must always multiply or divide by 1.6 to determine MPH. When moving at 60 km/h, the calculation is 60/1.609344, or 37.28 mph.
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1. Pilihan ganda30 detik1 ptQ. For object A to have a higher absolute temperature than object B, which of the following must object A have?Pilihan jawabangreater specific heathigher average internal potential energygreater masshigher average internal kinetic energy
The correct answer is: object A must have a higher average internal kinetic energy than object B to have a higher absolute temperature.
To understand which of the given options would make object A have a higher absolute temperature than object B, we first need to understand what temperature is and how it is related to the properties of an object.
Temperature is a measure of the average internal kinetic energy of the particles in an object. The greater the average internal kinetic energy, the higher the temperature. So, to have a higher temperature than object B, object A must have a higher average internal kinetic energy.
Now let's consider the given options:
Greater specific heat: Specific heat is the amount of energy required to raise the temperature of a unit mass of a substance by one degree Celsius. Having a greater specific heat would not directly affect the temperature of an object, as it only determines how much energy is required to change its temperature.Higher average internal potential energy: Internal potential energy refers to the energy stored within an object due to the position and arrangement of its particles. While it is related to temperature, it is not the determining factor in an object's temperature.Greater mass: Mass is also not a determining factor in an object's temperature. While larger objects may require more energy to heat up or cool down, they do not necessarily have a higher temperature than smaller objects.Learn more about kinetic energy here:
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In which city would Earth’s gravitational field strength be the smallest?
Mount Nevado, Huascarán in Peru has the lowest gravitational acceleration, at 9.7639 m/s2.
What is gravitational acceleration ?
An object in free fall in a vacuum experiences gravitational acceleration. This is the gradual increase in speed brought on solely by the gravitational pull. No matter their masses or compositions, all bodies accelerate at the same rate in a vacuum; the measurement and analysis of these rates is known as gravimetry.
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which type of sediment is most common in the ocean by area?
The most common type of sediment in the ocean by area is biogenous sediment. Biogenous sediment is made up of the hard remains of once-living organisms.
The majority of biogenous sediment is found in regions of the ocean where there is a high concentration of biological activity, such as close to continental shelves, upwelling zones, and polar regions. Biogenous sediment is composed of the hard remains of once-living organisms, such as shells and skeletons of marine animals.
The kind and amount of marine animals present in a certain area, as well as the pace of sedimentation, the degree of ocean currents and mixing, and the depth and topography of the seabed, are all elements that affect the buildup of biogenous silt on the seafloor over time.
Terrigenous sediment, which is composed of transported rock and mineral fragments that have weathered, is one of the several forms of sediment found in the ocean.
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an object has two forces acting on it. one force with a magnitude of 10 n acts in a northerly direction. the other force with a magnitude of 10 n acts in an easterly direction. what is the magnitude of the net force acting on this object?
14.14 (resultant vector)
what is pressure of atmosphere?
The pressure of the atmosphere, also known as atmospheric pressure, is the force per unit area exerted by the weight of the Earth's atmosphere above a given point.
It is typically measured in units of pascals (Pa) or millimeters of mercury (mmHg). At sea level, the average atmospheric pressure is about 101,325 Pa or 760 mmHg, which is commonly referred to as one standard atmosphere (1 atm). Atmospheric pressure decreases with altitude due to the decreasing weight of the atmosphere above. Changes in atmospheric pressure can affect weather patterns and can have significant impacts on human and animal health.
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Alpha Centauri A lies at a distance of 4.4 light-years and has an apparent brightness in our night sky of 2.7 x 10^−8 Watts/m^2Recall that 1 light-year = 9.46 x 10^15 m.a) Use the inverse square law for light to calculate the luminosity of Alpha Centauri A, in Watts.b) Suppose you have a light bulb that emits 100 Watts of visible light (not true for a standard 100 W bulb, which emits most of its light in the infrared). How far away would you have to put the light bulb for it to have the same apparent brightness as Alpha Centauri A in our sky? (Hint: Use 100 Watts as luminosity L in the inverse square law for light, and use the apparent brightness given above for Alpha Centauri A. Then solve for the distance.)
The light bulb would have to be placed approximately 0.0613 light-years away from us to have the same apparent brightness as Alpha Centauri A in our sky.
a) The inverse square law for light states that the apparent brightness of a light source decreases with the square of the distance from the source. Therefore, we can use the following formula to calculate the luminosity of Alpha Centauri A:
Luminosity = 4π(distance)² × apparent brightness
where distance is the distance from Alpha Centauri A to Earth, which is 4.4 light-years or 4.4 × 9.46 × 10¹⁵ meters.
Substituting the values, we get:
Luminosity = 4π(4.4 × 9.46 × 10¹⁵)² × 2.7 × 10⁻⁸
= 3.85 × 10²⁶ Watts
Therefore, the luminosity of Alpha Centauri A is approximately 3.85 × 10²⁶ Watts.
b) We can use the inverse square law for light to calculate the distance at which a 100 Watt light bulb would have the same apparent brightness as Alpha Centauri A:
100 = Luminosity/4π(distance)² × apparent brightness
Substituting the values, we get:
distance = √(Luminosity/4π × apparent brightness × 100)
Using the value of luminosity and apparent brightness from part (a), we get:
distance = √(3.85 × 10²⁶/4π × 2.7 × 10⁻⁸ × 100)
= 5.80 × 10¹⁴ meters
Converting to light-years, we get:
distance = 5.80 × 10¹⁴/9.46 × 10¹⁵
= 0.0613 light-years
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Is the force of gravity from the sun the same at all points in the orbit?
Answer:
The farther it is from the Sun, the weaker the Sun's gravitational pull, and the slower it moves in its orbit.
how many square feet in a yard
There are 9 square feet in a yard.
A yard is a unit of measurement in the Imperial system that is used to measure length or distance. It is equal to three feet or 36 inches. However, when it comes to measuring an area, we have to multiply the length and width to get the area in square feet.
Therefore, a square yard has an area of 9 square feet. This conversion is commonly used in measuring the size of a lawn or garden. Knowing how many square feet are in a yard is essential for homeowners who want to buy sod, fertilizer, or other lawn care products.
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capillary bulk flow is so efficient that less than 1% of the water filtered into the tissues at the start of a capillary bed is reabsorbed at the end of the capillary bed.
a) true
b) false
Mass fluid flow through and through capillary beds necessitates transport mechanism that is significantly more effective than simple diffusion.
The correct answer is False
What exactly does the mass mean?a huge quantity, quantity, or number is a feature of a body that determines its inertia and is frequently used to gauge the quantity of substance it contains and what makes it have weight inside a gravitational field. mass of stuff.
How are masses calculated?Using a balance would be necessary to determine mass. A triple beam scale or an analytical balance can be used to measure mass in a laboratory, but the traditional balance shown below might help you understand what mass is.
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the difference between the approved reimbursement and what the physician is charging is called the:
The difference between the approved reimbursement and what the physician is charging is called: adjustment.
Reimbursement Approval is defined as the approval, agreement, determination, or decision recommending and otherwise approving the Merchandise for use and/or establishing the Product's prices that can be reimbursed in regulatory cities and counties.
Most companies' laws require the bills and the justification for the outlay to be submitted. You can submit bills for reimbursement, and the business finance department will endorse them based on your qualifications.
Reimbursement is profit paid to an employee, customer, or some other party to cover a business expense, general liability, taxes, or other costs. Out-of-pocket expenses, such as travel and food, are included in business expense reimbursements.
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point a is located 0.26 m away from a charge of -2.09 10-9 c. point b is located 0.46 m away from the charge. what is the electric potential difference vb − va between these two points?
The required electric potential difference Vb - Va is calculated to be 31.46 V.
The gravitational potential energy and the electrostatic potential energy are practically identical. In relation to the gravitational potential energy notion, we explore the electric potential energy formula. An electric charge will store the external work done on it in the form of electric potential energy or electrostatic potential energy when it is exposed to an external electric field. As a result, the external work performed by an agent in getting a charge or system of charges from infinity to the desired location without accelerating the charge is defined as the electric potential energy.
The electric potential at A due to the charge,
Va = 1/4πε₀ (Q/ra) = [- 9 × 10⁹ × (- 2.09 × 10⁻⁹)]/0.26 = 72.35 V
Electric potential at B due to the charge,
Vb = 1/4πε₀ (Q/rb)= [-9×10⁹ × (-2.09 × 10⁻⁹)]/0.46 = 40.89 V
Vb - Va = 72.35 - 40.89 = 31.46 V
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what is the wavelength of maximum intensity (in nm) and the total energy emitted (in j/s/m2) by a celestial object at 8 k above absolute zero?
Moreover, the maximum frequency kinetic energy doubles. And in accordance with the query, the body doubles while moving at a steady speed. the motional energy.
What wavelength and total amount of energy are radiated by a celestial body at absolute zero?A blackbody never approaches zero, hence the wavelength of the highest intensity that a heavenly object may produce is infinite. As a celestial object's temperature rises, its overall energy output increases quickly.
What is the amount of energy a radiating body emits every second?E=T4 denotes the total energy emitted by either an unit volume of a black body each second. E=T4where is the body's emissivity if the entity isn't a perfect black body.
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what is m/s to mach?
The conversion from meters per second (m/s) to Mach is dependent on the speed of sound, which varies with temperature and altitude.
Mach is a unit of speed that is based on the speed of sound in a given medium, usually air. It is defined as the ratio of the speed of an object to the speed of sound in the same medium. The speed of sound, in turn, is affected by temperature and altitude, since the density and compressibility of the medium change with these factors.
Therefore, the conversion factor between m/s and Mach is not a fixed value, but rather depends on the specific conditions of the medium in which the object is traveling. A common approximation for the speed of sound at sea level and 15 degrees Celsius is 340 m/s, which corresponds to Mach 1.
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what equation do you get when you apply the loop rule to the loop abcdefgha, in terms of the variables in the figure?
The loop rule (also known as Kirchhoff's voltage law) states that the sum of the potential differences around a closed loop in a circuit must be zero.
What is electric current?Electric current is the flow of electric charge through a material. It is typically expressed in units of amperes (A), which represent the rate at which charge flows through a conductor.
Here,
In general, the loop rule (also known as Kirchhoff's voltage law) states that the sum of the potential differences around a closed loop in a circuit must be zero. This can be expressed mathematically as
ΣV = 0
where ΣV is the sum of the potential differences (voltages) around the loop. The potential differences can be calculated using Ohm's law (V = IR) and the properties of circuit elements such as resistors, capacitors, and inductors.
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The energy required to begin nuclear fusion in a protostar comes from: A. the wind from nearby stars. B. the pressure from the interstellar medium. C. the gravitational potential energy of the protostar. D. the kinetic energy of the protostar.
The energy required to begin nuclear fusion in a protostar comes from C. the gravitational potential energy of the protostar.
What is nuclear fusion?Atomic nuclei join together to form a heavier nucleus during nuclear fusion, which releases a significant quantity of energy. A reaction known as nuclear fusion occurs when two or more atomic nuclei fuse to create new atomic and subatomic particles. Energy is released or absorbed depending on how much mass there is between the reactants and products.
Natural nuclear fusion occurs in stars, such as the Sun, when hydrogen nuclei combine to generate helium and release energy that powers the Sun's light and heats the Earth. Although fusion has also been utilized to create nuclear weapons, work is still being done to harness fusion energy for the production of electricity.
Therefore, option C is c orrect.
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What is an ionic bond? Explain with an example?
A bond that is formed by a positively charged ion to a negatively charged ion is termed as an ionic bond. An example is sodium chloride.
When two atoms with great difference in electronegativities forms a bond, the electrons are completely transferred between the atoms and are ionized. These positive and negative charged ions forms a bond purely based on the electrostatic force of attraction. Such a compound is called an ionic compound.
Usually an electropositive metal in 1st and 2nd group of periodic table reacts with non-metals in 16th and 17th group to form ionic compounds. Lets consider the example of sodium chloride.
The electronic configuration of sodium is 2, 11, 1
Electronic configuration of chlorine is 2, 8, 7
Sodium is an electropositive metal and it has a tendency to lose electron to complete octet electronic configuration. Chlorine on the other hand is an electronegative non- metal, tends to lose electrons. So the sodium when reacting with chlorine loses its outer electron and become Na⁺ and the chlorine gains the electron and become Cl⁻.
So an electrostatic force of attraction is formed between the ions and form the compound Na⁺Cl⁻.
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The transformers step down the voltage from a high of 765 volts to the voltage we use in our houses.
Question 6 options:
True
False
The statement "The transformers step down the voltage from a high of 765 volts to the voltage we use in our houses." is true. Because Transformers are electrical devices that can step up or step down voltage levels, depending on their design and purpose.
Transformers play a critical role in the safe and efficient distribution of electricity, by enabling power to be transmitted over long distances and used in a variety of applications with different voltage requirements.
In the case of the power grid, large power transformers are used to step up the voltage of the electricity generated at power plants, to reduce losses during long-distance transmission. However, before the electricity can be used in homes and businesses, the voltage must be stepped down to a safe and usable level.
In the United States, the standard voltage for household electrical systems is 120 volts (or 240 volts for larger appliances), so transformers are used to step down the voltage from higher levels, such as the 765 volts mentioned in the question.
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What is the conversion of 17 c to f ?
The conversion of 17 degrees The conversion of 17 degrees Celsius to Fahrenheit is 62.6 degrees Fahrenheit.
The equation F = 9/5C + 32 relates temperature measured in degrees Celsius (C) to degrees Fahrenheit (F). The formula is used to convert temperatures from Celsius to Fahrenheit , and vice versa. To use the formula, you simply plug in the known temperature in Celsius (or Fahrenheit), and then solve for the unknown temperature in Fahrenheit (or Celsius).
To convert Celsius to Fahrenheit, you would use the formula F = 9/5C + 32, where C is the temperature in Celsius and F is the temperature in Fahrenheit. Thus, for 17 degrees Celsius, the formula would be F = 9/5(17) + 32 = 62.6 F.
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firemen are shooting a stream of water at a burning building using a high-pressure hose that shoots out the water with a speed of 25.0 m/s as it leaves the end of the hose. once it leaves the hose, the water moves in projectile motion. the firemen adjust the angle of elevation α of the hose until the water takes 3.00 s to reach a building 45.0 m away. you can ignore air resistance; assume that the end of the hose is at ground level.
The firemen should adjust the angle of elevation of the hose to 41.1 degrees in order to hit the building 45.0 m away in 3.00 s.
We can use the equations of motion to solve this problem. We know that the initial velocity of the water stream is 25.0 m/s and that it moves in projectile motion. We need to find the angle of elevation α that will allow the water to reach a building 45.0 m away in 3.00 s.
Let's define the x-axis to be horizontal and the y-axis to be vertical. The initial velocity of the water stream can be broken down into its x and y components:
vx = v cosα = 25.0 cosα
vy = v sinα = 25.0 sinα
where v is the magnitude of the initial velocity.
Using the equation of motion for the x-direction, we can find the time it takes for the water to reach the building:
x = vx t
45.0 = 25.0 cosα t
t = 45.0 / (25.0 cosα)
Using the equation of motion for the y-direction, we can find the angle of elevation:
y = vy t - 1/2 g t^2
0 = 25.0 sinα (45.0 / (25.0 cosα)) - 1/2 (9.81) (45.0 / (25.0 cosα))^2
0 = 45.0 tanα - 1/2 (9.81) (45.0 / 25.0)^2
tanα = (1/2) (9.81) (45.0 / 25.0)^2 / 45.0
α = tan^-1((1/2) (9.81) (45.0 / 25.0)^2 / 45.0) = 41.1 degrees
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If Alex wishes to rotate his skateboard, then he must apply a. A) torque. B) rotational maneuver. C) pause before bearing down on the board.
If Alex wishes to rotate his skateboard, he must apply a torque.
Torque is the twisting or rotational force that is required to cause an object to rotate around an axis or pivot point. In the case of a skateboard, if Alex wants to rotate the board, he needs to apply a torque by pushing on one end of the board while keeping the other end stationary or pushing in the opposite direction. This will cause the board to rotate around its center of mass.
A rotational maneuver is a general term that could refer to any type of rotational movement or action, whereas a pause before bearing down on the board is not directly related to the act of rotating the skateboard.
Therefore, option A) torque is correct option. If Alex wishes to rotate his skateboard, he must apply a torque
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do the downward force in part a and the upward force in part b constitute a 3rd law pair?
The requried solutions,
(a) weight of book
(b) Normal force of 5 N, by the table
(f) Yes, the downward force in part a and the upward force in part b constitute a 3rd law pair
Newton's 3rd law of motion, also known as the law of action and reaction, states that "For every action, there is an equal and opposite reaction." This means that when an object exerts a force on another object, the second object exerts an equal and opposite force back on the first object.
Here,
As mentioned in the question, A book weighing 5 N rests on top of a table So,
Part A,
A downward force of magnitude 5 N is exerted on the book by the force of its own weight.
Part B
An upward force of magnitude 5 N is exerted on the book by the table.
So, Newton's laws 3rd law could have been used to predict that the forces in Parts A and B are equal and opposite.
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Two identical parallel plate capacitors are given the same charge Q, after which they are disconnected from the battery. after C2 has been charged and disconnected, it is filled with a dielectric.
1) Compare the voltages of two capacitors.
a. V1>V2
b. V1=V2
c. V1
When two identical parallel plate capacitors are given the same charge Q, after which they are disconnected from the battery. after C2 has been charged and disconnected, it is filled with a dielectric. Comparing the voltages of two capacitors will result to
a. V1 > V2How to compare the voltagesThe voltage V of a capacitor is given by the formula
V = Q/C,
where
Q is the charge on the capacitor and
C is the capacitance of the capacitor.
Since the two capacitors are identical and have the same charge Q, their voltages V1 and V2 before disconnection from the battery would be equal
V1 = V2.
After C2 has been charged and disconnected, and a dielectric is inserted, the capacitance of C2 increases, which in turn reduces the voltage across it. This is because the charge on the capacitor remains the same, but the capacitance increases, leading to a decrease in the voltage.
Therefore, the voltage V2 across C2 decreases, and the voltage V1 across C1 remains the same. Hence, the correct option is (a) V1 > V2.
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what is 3rd law of motion?
The third law of motion, also known as the law of action-reaction, states that for every action, there is an equal and opposite reaction.
This implies that there are always two forces acting on the two interacting objects. The first object is subject to a force of similar magnitude to the second object. Force pairs—equal and opposing action-reaction force pairs—always exist in pairs.
For example, when a person jumps up into the air, the ground exerts an equal force in the opposite direction, pushing the person back up into the air. This law can also be applied to a rocket engine, where the exhaust gases being expelled out of the engine cause a reaction force that propels the rocket forward.
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If the temperature is constant, what change in volume would cause the pressure of an enclosed gas to be reduced to one quarter of its original value?
Answer:
Explanation:
From ideal gas equation PV=nRT
n is the number of moles, R is the gas constant = 0.0821 atm•L/mol•K
Since temperature is constant, P1V1=P2V2
P1V1=P1/4*V2
V2=4V1
Volume of the gas must be increased 4 times