It will take 207.9 sec for the pendulum's swing to be reduced to half its initial amplitude.
given:
T= time period initial = 1 sec
time constant = 300 sec
The pendulum's oscillation will eventually be stopped due to the air resistance offered by air . Oscillations will die down in a manner such that it makes an exponential curve.
We want the time at which the pendulum will stop due to friction
We know the formula for damping
[tex]A = A[/tex]' [tex]e^{-(\frac{t}{300} )}[/tex]
A= initial amplitude
A' = final amplitude = A/2
so 't' at
[tex]A = \frac{A}{2} \ 300[/tex] ㏑ (2 )
t= 207.94 sec
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given that average speed is distance traveled divided by time, determine the values of \(m\) and \(n\) when the time it takes a beam of light to get from the sun to the earth (in \(\rm s\)) is written in scientific notation. note: the speed of light is approximately 3.0\(\times\)108 \(\rm m/s\). enter \(m\) and \(n\), separated by commas.
According to the solving the value of average speed m =5 and value of n =2.
What does a speed's average mean?The average speed is the total distance it travels in a predetermined amount of time. The typical speed is represented by a scalar value. It is characterised by the magnitude and lacks direction.
According to the given information:150 million kilometers separate the planet from the sun.
We are aware that a million
= 10^6 and 1 km= 10^3 m
Hence,
150 million km = 150× 10^6 ×10^3 metre=150×10^9 m
=1.5×10^11 m
The speed of light in a vacuum is 2.999... m/s, which is roughly equivalent to 3.0 108 m/s.
Calculating the time it takes for the light beam to travel from the sun to Earth is demanded of us.
we know that average velocity v = distance/time
Time ⇒ distance/velocity
Here distance=1.5×10^11 m and v=c= 3.0×10^8 m/s
hence time
=0.5×10^3 s
=5.0×10^2 s
m10n [where m is the magnitude and n is the power of 10] is the proper way to write a scientific notation.
Hence the value of m =5 and value of n =2
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s the open sharing of ideas in an atmosphere of respect (in order to achieve understanding between the speaker and listener(s). group of answer choices selective perception scriptwriting dialogic communication defensive listening
Dialogic communication is the open sharing of ideas in an atmosphere of respect (in order to achieve understanding between the speaker and listener(s).
What is Dialogic communication?Dialogic communication is a method of communication that promotes dialogue between a speaker and their audience. In presenting their ideas to an audience, dialogic communication encourages speakers to be assertive (calm, respectful, and open). The dialogic theory is founded on three guiding principles: Monologue is less natural than dialogue. Meaning is found in people, not words. Perceived meanings are influenced by contexts and social situations (Bakhtin, 2001a; Bakhtin, 2001b). Mutuality, propinquity, empathy, risk, and commitment are the five principles underlying dialogic theory (Kent & Taylor, 2002). Mutuality is defined by an orientation toward inclusion or collaboration, as well as a spirit of mutual equality. Mutuality has two characteristics: collaboration and a spirit of mutual equality.
Here,
Dialogic communication is the open exchange of ideas in a respectful environment (to achieve understanding between the speaker and listener) (s).
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which of the following best accounts for the pressure in teh vessel remaining constant as the volume decreaseds betlow 0.21l
The best option that accounts for the pressure remaining constant in the vessel as the volume decreases below 0.21L is the ideal gas law PV = nRT
Support your answer with an explanation.According to the ideal gas law, the ratio of a gas's pressure (P) and volume (V) to its moles (n) multiplied by its gas constant (R) multiplied by its temperature (T) is known as the ideal gas equation. The pressure and volume are inversely related when the number of moles and the temperature are held constant, which means that as the volume falls, the pressure increases and vice versa.
However, in this case, as the volume falls below 0.21L, the pressure inside the vessel stays constant. This could be explained by the use of outside forces, such a membrane or a piston, which can keep the gas under pressure even as it decreases.
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Suppose you wanted to reach Alpha Centauri (4.4 ly from the Solar system) in 70 years. How fast would you have to go, in km/hr? Express your answer using two significant figures. How many times faster is the speed you found in part A than the speeds of our fastest current spacecraft (around 50000 km/hr)? Express your answer using two significant figures.
Alpha Centauri (4.4 ly from the Solar system) in 70 years. The speed should be around 6.8×107 kph.
What is meant by speed ?
Speed is what it means. the speed at which an object's location changes in any direction.The distance traveled in relation to the time it took to travel that distance is how speed is defined.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.In other words, velocity is a vector, whereas speed is a scalar value.The pace at which a distance changes over time is referred to as speed. It has a dimension of time-distance.As a result, the fundamental unit of time and the basic unit of distance are combined to form the SI unit of speed. Thus, the metre per second (m/s) is the SI unit of speed.To learn more about speed refer to
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Which of the following is not a reason why short-circuit calculations are necessary for electrical systems?
a.They are needed to analyze OCPDs for selective coordination.
b.They are needed to determine the standard ampere rating of the OCPD.
c.They are needed to ensure that OCPDs and components/equipment of a distribution system have adequate interrupting ratings and short-circuit current ratings.
d.Service equipment is required to be marked with the available fault current.
Feedback
Your answer is correct.
The correct answer is: They are needed to determine the standard ampere rating of the OCPD.
The correct answer is b. They are required to establish the OCPD's typical ampere rating.
What are the benefits of performing short-circuit calculations in an electrical system?
Performing short circuit calculations in an electrical system can provide a number of benefits.
Short circuit calculations can help prevent potential safety hazards and maximize the efficiency of the electrical system.
By performing these calculations, the system can be designed to ensure that any overcurrent are limited to safe levels and that the equipment is not overloaded.
Additionally, the calculations can be used to determine the fault level of the system, allowing for the selection of components and the assignment of protective devices that can effectively manage any overcurrent that occur.
By having an understanding of the fault level, the system can be designed to prevent any outages that could occur due to overloading or short circuiting of the system.
Short circuit calculations also provide a way to verify the functionality and performance of the system, as well as identify any areas that require improvement.
Overall, short circuit calculations are an invaluable tool for designing and maintaining a safe and reliable electrical system.
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Block A weighs 12 N and has an apparent weight of 8 N when completely submerged in an ideal fluid. Block B weighs 20 N and has an apparent weight of 12 N when completely submerged in the same ideal fluid. 2. The ratio of the densities Pa/ pe equals: a) 6/5 b) 5/4 c) 4/3 d) 3/4 e) 7/4 3. The ratio of the volumes VA/Vequals: a) 1/3 b) 1/2 c) 3/5 d) 2/3 e) 1/1
1) The ratio of density of A to density of B is 3/2.
2) The ratio of volume of A to the volume of B is 1/3.
How closely a material is packed together is determined by its density. As the mass per unit volume, it is referred to. D or is the symbol for density. Formula for Density = m/V, where is the density, m is the object's mass, and V is its volume.
Given:
Weight of A block = 12 N
Apparent weight of A block = 8 N
Weight of B block = 20 N
Apparent weight of B block = 12 N
Given is a relationship between apparent weight and original weight.
W' = W -B --- (1)
B = W dis liq - ρ liq V obj ---(2)
For block-A :
From equations (1) and (2),
W' = W - ρt V
Substitute the given values,
8 = 12 - ρt V
ρt V = 4 ---(3)
For block-B :
From equations (1) and (2),
W' = W - ρt V
12 = 24 - ρt V
ρt V = 12 ---(4)
From equations (3) and (4)
ρt VA/ρt VB = 4/12
ρt VA/ρt VB = 1/3
As a result, the ratio of volume of A to the volume of B is 1/3.
From given weights of A block and B block,
[tex]W_A}[/tex]/[tex]W_{B}[/tex] = 12/24 ---(5)
weight of an object in terms of volume and density can be written as,
W = ρ Vg
So, equation (5) written as,
ρA [tex]V_{A}[/tex]g/ρB [tex]V_{B}[/tex]g = 12/24
ρA/ρB × [tex]V_{A}[/tex]/[tex]V_{B}[/tex] = 1/2
Substitute [tex]V_{A}[/tex]/[tex]V_{B}[/tex] = 1/3
ρA/ρB ×1/3 = 1/2
ρA/ρB = 3/2
So, the ratio of density of A to density of B is 3/2.
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the average distance from the sun to the earth defines a special unit in astrophysics, the astronomical unit (au). please express this distance in units of cm, m, and km.
1.496E+11 metres, 1.4960E+13 centimetres, and 1.4960E+8 kilometres are all equivalent to one astronomical unit (au). The average distance between the sun and the earth serves as the basis for this peculiar unit.
The distance between any two places in space is equal to the length of the straight line connecting them, which is also the shortest path. This is the usual conception of distance in classical physics, especially in Newtonian mechanics. The straight-line distance is mathematically known as the Euclidean distance in two- and three-dimensional space. The physical concept of distance is employed in physics to explain how far an object has moved. Distance is a scalar quantity. SI units for distance A metre is the unit of distance according to the International System of Units.
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Repe
For a linearly decreasing force, the best way to find the area under the curve ques
is
rectangular approximation
take a wild guess
basic geometry
multiply the force times the distance
calculus
Increasing the separation distance between objects decreases the force of attraction or repulsion between the objects.
What is linearly decreasing force?
The electric lines of force start from a positive charge and ends on a negative charge.The electric lines of force always enter or leave the charged surface normally.Electric lines of force can never intersect each other.Every electric line of force starts with a positive charge and ends with a negative charge. The electric lines of force resist each other in the same direction but In opposite directions, electricity.On Earth all bodies have a weight, or downward force of gravity, proportional to their mass, which Earth's mass exerts on them. Gravity is measured by the acceleration that it gives to freely falling objects.To learn more about force refers to:
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The value of q1 and q2 will be 3.0 x 10^-9 C respectively. Because to be at equilibrium, both of the charges must have equal but opposite charge in them is -6 x 10^-9 C. So we will divide this value into equal and opposite types
Answer:
Yes, you are correct. In order to be in equilibrium, two charges must have equal but opposite charges. So, if the total charge is -6 x 10^-9 C, dividing it into equal and opposite charges would give each charge a value of 3 x 10^-9 C. This is because (-6 x 10^-9 C) / 2 = 3 x 10^-9 C.
from watching the video, approximate the total time it took for kevin to cross his lawn on the zip line. if kevin has an initial velocity of 3 m/s and comes to a stop at the end of the zip line, calculate the distance he traveled.
The relationship between speed, distance, and time is described using the formula speed distance time. An object traveling 10 miles in 5 minutes averages 120 miles per hour.
What is speed divided by distance?10 miles were covered in total.
It took five minutes in total.
The formula can be used to determine the speed.
s = d/t
s being the speed
D stands for distance.
The amount of time used
Let's change the known variables in the equation above to get
s = 10/5
= 2 miles/minute
However, we must convert the speed to miles per hour in order to use it.
s=2 x 60 miles per hour
120 miles per hour.
An object traveling 10 miles in 5 minutes averages 120 miles per hour.
Consequently, the typical speed is 120 miles per hour.
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A 500 g squirrel with a surface area of 895 cm2 falls from a 5.6-m tree to the ground. Estimate its terminal velocity. (Use the drag coefficient for a horizontal skydiver. Assume that the squirrel can be
approximated as a rectanglar prism with cross-sectional area of width 11.3 cm and length 22.6 cm. Note, the squirrel may not reach terminal velocity by the time it hits the ground. Give the squirrel's
terminal velocity, not it's velocity as it hits the ground.)
x m/s
What will be the velocity of a 50.0 kg person hitting the ground, assuming no drag contribution in such a short distance?
x m/s
8.3 m/s is the terminal velocity of the squirrel can be calculated using the equation for terminal velocity and 10.8 m/s is the velocity of a 50.0 kg person hitting the ground.
What is velocity?
Velocity is a measure of the speed of an object's motion in a particular direction. It is a vector quantity, meaning it has both magnitude and direction. Velocity is usually measured in meters per second (m/s).
The terminal velocity of the squirrel can be calculated using the equation for terminal velocity of an object in a fluid, which is given by Vt = (2×m×g)/(ρ×Cd×A). Here, m is the mass of the object, g is the acceleration due to gravity, ρ is the density of the fluid, Cd is the drag coefficient, and A is the reference area of the object. The drag coefficient for a horizontal skydiver is 0.8, and the density of air is 1.225 kg/m^3. Therefore, the terminal velocity of the squirrel can be calculated as Vt = (2×500×9.8)/(1.225×0.8×895) = 8.3 m/s.
The velocity of a 50.0 kg person hitting the ground can be calculated using the equation for the velocity at the end of a fall, which is given by Vf = sqrt(2×g×h). Here, g is the acceleration due to gravity and h is the height of the fall. Therefore, the velocity of the person hitting the ground can be calculated as Vf = sqrt(2×9.8×5.6) = 10.8 m/s.
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you have two long wires separated by a distance x and oriented perpendicualr. in terms of x where would the charge have to be placed to remain stationary
When two long wires are separated by a distance x and oriented perpendicular to each other, a charge placed at certain points will remain stationary due to the balance of electric forces acting on it.
What location would the charge need to be in order to stay stationary?Here are some potential locations for the charge to remain stationary in terms of x:At the midpoint between the two wires: The charge will be equidistant from both wires, so the electric force on it from one wire will be equal and opposite to that of the other wire, resulting in a net force of zero.At a point along the line that bisects the angle between the two wires: This point is known as the "equipotential point" and is located at a distance of x/√2 from each wire. The electric forces from each wire will be equal in magnitude but opposite in direction, resulting in a net force of zero.At a point along the line that connects the two wires: This point is known as the "neutral point" and is located at a distance of x/2 from each wire. The electric forces from each wire will be equal in magnitude but opposite in direction, resulting in a net force of zero.It is important to note that the charge must be placed at these specific points in order to remain stationary, as any deviation from these points will result in the charge moving due to an unbalanced net force.
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since a short-circuit condition resulting in fault current is of relatively low current magnitude compared to an overload current, removal of the fault current within seconds or minutes will generally prevent damage to the conductor or equipment. True or false?
False. Removing fault current within seconds or minutes may not be enough to prevent damage to the conductor or equipment.
What is meant by a short circuit?
A short circuit is an unintended connection between two points in a circuit that allows current to flow in an unintended path.This usually results in an excessive current draw, which can cause damage to components, overheating, and even fire.Short circuits can be caused by a variety of factors, such as wire insulation failure, faulty wiring, incorrect installation, accidental bridging of two wires, or corrosion.Short circuits can cause serious damage to electronic components and must be avoided.To protect against short circuits, fuses and breakers are used to protect the circuit from an excessive current draw.In addition, wiring should be checked and inspected periodically to ensure that it is in good condition and properly installed.To learn more about short-circuit refer to:
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When joists do not completely span the distance from one wall to the other, you must offset the markings on the second wall by? A.2" B.3" C.1 1/4" D.1 1/2"
When joists do not completely span the distance from one wall to the other, you must offset the markings on the second wall by 1 1/2 inches. This is known as a "joist hanger offset."
What is Joist Hanger Offset Here are a few key points to consider when dealing with joist hanger offsets:The offset is necessary to ensure that the joists will be properly supported at both ends.Without the offset, the joists would be cantilevered, which can lead to structural problems over time.The offset is typically 1 1/2 inches, but it may vary depending on the specific requirements of the project.It is important to check the manufacturer's specifications for the joist hangers you are using to ensure that you are using the correct offset.Always consult a professional if you are unsure about how to properly offset joist hangers.It is important to note that the joist hanger offset can vary depending on the type of joist hanger you are using. So, always check the manufacturer's specifications for the correct offset. Also, it is always a good practice to consult a professional if you are unsure about how to properly offset joist hangers.To learn more about joist hanger refer:
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Which vector goes from (4, 0) to (1, -3)?
A. a
B. c
C. b
D. d
Answer:
B. Vector c
Explanation:
You have to look for these two points (4,0) and (1,-3) on your graph (x, y) , and then you have to find which vector connects them together and that must be vector c
How do you get part (c)?
Part (a) Which statement best describes the numbers of protons and electrons in the penny when it is charged as indicated?
Electrons were added, and the number of electrons exceeds the
number of protons. ✔ Correct!
Part (b) How many electrons were transferred in order to create the charge on the penny?
Ne = 6.88 * 109
Ne = 6.880×109electrons ✔ Correct!
Part (c) By what percentage do the transferred electrons change the mass of the penny? (Express your result as a positive percentage for an increase, negative for a decrease.)
The percentage at which the transferred electrons change the mass of the penny is [- (n x 9.1 x 10⁻³¹)/m] x 100 .
What is charge?The deficiency or excess of electrons in an atom leads to the development of charge.
The total mass of coin after loosing electrons is calculated as follows;
= m - (n x 9.1 × 10⁻³¹ ) Kg
where;
m is the mass of the penny when no electron is lostn is the number of electronsThere will be decrease in the mass of the penny. So the amount of decrease in mass will be;
= final mass - initial mass
= m - (n x 9.1 × 10⁻³¹ ) - m
= - (n x 9.1 ×10⁻³¹ )
This negative sign indicates that the mass has decreased.
The percentage decrease in the amount of mass transferring the electrons is calculated as;
[- (n x 9.1 x 10⁻³¹)/m] x 100
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a bead slides without friction around a loopthe-loop. the bead is released from a height of 23.8 m from the bottom of the loop-theloop which has a radius 8 m. the acceleration of gravity is 9.8 m/s 2 .
Now the force equation at point A is given as f (n)= 0.05N
What height must the bead be launched from in order for it to complete the loop, minimum height h?h < (1/2)R.This means that the ball must start at a height that is at least half a radius above the top of the loop, or 2.5 radii above the ground, in order to travel around the entire circle.
v = 12.45m/s
Part B)
F(n) = 0.05N
As we know that the point A lies on the top of the loop
so we will have by energy conservation
so the speed at point A is given as
mg (H-2R) = 1/2 mv ²
v = √2 g (H-2R)
V= 12.45 m/s
Now the force equation at point A is given as
F (n)= 0.05N
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in the town of centralburg (figure 1), which is laid out in a uniform block grid, the grocery store is three blocks east and four blocks north of the post office. which of the following is a correct equation for the quantities represented in this scenario?
A correct equation for the quantities represented in this scenario is
tan Θ=[tex]\frac{d_{n} }{d_{e} }[/tex].
Now, according to the question,
tanΘ=[tex]\frac{opp.\: side}{adj.\: side}[/tex]
Now, by the figure mention,
The side opposite to the angle Θ is [tex]d_{n}[/tex] and the adjacent sides is [tex]d_{e}[/tex].
The three primary trigonometric functions—Sine, Cosine, and Tangent—are based on a right-angled triangle.
Triangle with the opposite side, adjacent side, and hypotenuse can be declared by:
The terms "opposite" and "adjacent" refer to the angle's opposing and adjacent, respectively.
The long one is "Hypotenuse."
Now, put these values in the formula,
which gives the equation,
tanΘ=[tex]\frac{d_{n} }{d_{e} }[/tex]
Now, from the options given it is clearly seen that option-1 is correct.
Question: in the town of centralburg (figure 1), which is laid out in a uniform block grid, the grocery store is three blocks east and four blocks north of the post office. which of the following is a correct equation for the quantities represented in this scenario
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Scientists were surprised to discover that just like Saturn, all of the Jovian planets had __________ (Choose 3)1. Rings2. moons3. an inner core, mantle, and outer surface
Scientists were surprised to discover that just like Saturn, all of the Jovian planets had rings.
What are Jovian planets?Jovian planets include Jupiter, Saturn, Uranus, and Neptune and these planets have larger sizes and masses. Jovian planets do not have solid surfaces and they are sometimes called gas giants because they are large and made mostly of gases.
Jovian planets had rings but they were not as large or as well-known as Saturn's rings, but they were still present and visible under certain conditions. Unlike the terrestrial planets that make up our inner solar system, Jovian planets do not have solid surfaces.
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which statements correctly describe the effect of distance in determining the gravitational force and the electrical force? check all that apply.
Correct options are the gravitational force is inversely to proportional to the distance, and the electrical force is inversely proportional to the square o the distance.
What is relation between distance and force?Electrical force is the force that is exerted on charged particles due to the presence of other charged particles. It is a fundamental force of nature, and it is one of the four fundamental forces of physics, along with the strong nuclear force, the weak nuclear force, and the gravitational force. Electrical force is responsible for the behavior of charged particles in electric and magnetic fields, and it is the force that holds atoms and molecules together. The electrical force is mediated by the exchange of virtual photons.
Both gravitational and electric forces, according to Coulomb's law, decrease with the square of the distance between the objects, and both act along a line between them. However, in Coulomb's law, the magnitude and sign of an object's electric force are determined by its electric charge rather than its mass. Charge thus governs how electromagnetism influences the motion of charged objects.
[tex]$ F = k \frac{q_1q_2}{r^2}[/tex]
F = electric force
k = Coulomb constant
q₁, q₂= charges
r = distance of separation
And
[tex]$F=G{\frac{m_1m_2}{r^2}}[/tex]
F = force
G = gravitational constant
m₁ = mass of object 1
m₂ = mass of object 2
r = distance between centers of the masses
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The complete question is given below:
PLEASE ANSWER FAST
Select the statement(s) that accurately illustrate examples of energy transfer by radiation.
Heat emitted from a candle
Ocean waves on the surface of the sea Microwaves from a microwave oven
Radio waves transmitted between towers Sound waves from a car radio
Heat emitted from a candle, Microwaves from a microwave oven, Radio waves transmitted between towers, Sound waves from a car radio.
Illustrate examples of energy transfer by radiation?The examples of energy transfer by radiation mentioned above are heat, microwaves, radio waves, and sound waves. Heat is the transfer of thermal energy from one object to another, usually through the process of convection, conduction, or radiation. Heat emitted from a candle is an example of energy transfer by radiation.Microwaves are electromagnetic waves that are used to heat food in a microwave oven. The microwaves are generated by an oscillating electric current and then radiated into the oven, where they are absorbed by the food. This energy is then converted into heat, which cooks the food. Radio waves are used to transmit information between towers, such as those used for cellular phone communication. The towers emit radio waves, which travel through the air, and the information they contain is then picked up by the towers on the other end. Sound waves are also a form of energy transfer by radiation. When a car radio is playing, sound waves are emitted from the radio, which then travel through the air to your ears. The process of energy transfer by radiation is called electromagnetic radiation. This is the process by which energy is transferred from one place to another in the form of electromagnetic waves. Examples of electromagnetic radiation include visible light, infrared radiation, ultraviolet radiation, x-rays, and gamma rays.To learn more about the examples of energy transfer by radiation refer to:
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For a reaction for which the activation energies of forward and reverse reactions are equal:A.ΔH=0B.ΔS=0C.the order is zeroD.there is no catalyst
When the activation energies of the forward and backward processes are equal, the energy of the reactant and product becomes equal.
Therefore, E=EAEB=0. The reaction has reached equilibrium when the forward and reverse reaction rates are equal to one another. When the rate of the forward reaction equals the rate of the reverse reaction, a system is said to be in chemical equilibrium. The activation energy () of the reverse reaction is the SUM of the activation energy of the forward reaction AND the energy released from the forward reaction, according to the information provided.
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small fly of mass 0.28 g is caught in a spider's web. The web oscillates predominately with a frequency of 5.0 Hz Part A What is the value of the effective spring stiffness constant k for the web? Express your answer using two significant figures. VO AED k = N/m Request Answer Submit Part B At what frequency would you expect the web to oscillate if an insect of mass 0.56 g were trapped? Express your answer using two significant figures
The stiffness is 0.21 N/m and frequency is 2.84 Hz.
The effective spring constant k of the web can be determined as follows:
Stiffness is defined as the resistance to forces that bend a component. Firmness is very important to the end-use performance of many papers.
[tex]F= \frac{1}{2pi} \sqrt{\frac{k}{m} }[/tex]
k= 4 pi²f²m
= 0.21875 N/m
The frequency of the web's oscillations can be determined as follows: The frequency of a repeated event is its number of instances per unit of time. It differs from angular frequency and is sometimes referred to as temporal frequency for clarification. The unit of frequency is hertz (Hz), or one occurrence per second.
[tex]F= \frac{1}{2pi} \sqrt{\frac{0.21}{0.56 g} }[/tex]
= 2.84 Hz
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A rock is dropped off a cliff and strikes the ground with an impact velocity of 30 m/s. How high was the cliff? A. 20 m B. 30 m C. 45 m D. 60 m
The height of Cliff is 45 m
It is given that
Velocity with which rock dropped from cliff =
30 m/s
intial velocity = 0 m/s
acceleration due to gravity = 10 m/s^2
We have to find how high was the cliff
v^2 - u^2 = 2as
(30)^2 - 0 = 2 x (-10) x s
900 = -20s
s = 45 m
Hence, height of Cliff is 45 m
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determine the force in members be, ef, and cb, and state if the members are in tension or compression.
In this case, member be is in compression because force Fbe = -Fec - Fed is negative. Member ef is in tension because force Fef = -Fed - Fae is positive. Member cb is in compression because force Fcb = -Fae - Fec is negative.
What is equilibrium?Equilibrium is the condition of a system when neither its state of motion nor its internal energy state tends to change with the time.
For member be:
Fbe = Fce + Fde
Fbe = -Fec - Fed
And For member ef:
Fef = Fde + Fae
Fef = -Fed - Fae
For member cb:
Fcb = Fae + Fce
Fcb = -Fae - Fec
If the force is positive it is in tension, if it is negative it is in compression.
And, in this case, member be is in compression because force Fbe = -Fec - Fed is negative. Member ef is in tension because force Fef = -Fed - Fae is positive. Member cb is in compression because force Fcb = -Fae - Fec is negative.
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Instantaneous power output of a 3-phase 60 Hz generator will not be constant under following condition:
A. The load draws only real power. B. The load is unbalanced. C. None of the other choices D. The load draws only reactive power. E. The load draws both real and reactive power.
Instantaneous power output of a 3-phase 60 Hz generator will not be constant under following condition when the load is balanced.
Instantaneous power output of a single phase 60 hz generator will be constant under reactive power.
Responsive power is otherwise called: ghost power. One more method for making sense of this is that responsive power is the resultant power in watts of an air conditioner circuit when the ongoing waveform is out of stage with the waveform of the voltage, normally by 90 degrees assuming the heap is simply receptive and is the consequence of either capacitive or inductive burdens. A model is fueling a brilliant light, in a responsive burden energy stream toward the heap a fraction of the time, though in the other half power streams from it, which gives the deception that the heap isn't dispersing or consuming power. Receptive power is one of the three kinds of force present in stacked circuits.
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5. Brownian motion of smoke particles a) State and explain the observation. b) State and explain what will be observed if the temperature surrounding the smoke cell is increased: What is the function of Microscope,Lens and Smoke
(A) When an air particle bombards a smoke particles, the smoke particle moves to the same direction as the air particle that hit it. When another air particle hits the smoke particle, it changes its direction to that of the second air particle, and so on. This is called Brownian motion.
(B) If the temperature of the surroundings is increased the air particles would gain kinetic energy resulting in more frequent collisions with the smoke particles. Therefore, the smoke particles would be seen moving haphazardly.
(C) The microscope helps magnify the smoke particles for a much more better observation. The lens help in focusing. As the air particles are really small and cannot be observed; therefore, smoke particles are used as they are easy to see and observe; thus, ensuring a better experiment.
the two block in (figure 1) are at rest on frictionless surfaces. what must be the mass of the right block in order that the two blocks remain stationary? suppose that m
The right block must have a mass of 7.9 kg to balance the forces and remain stationary.
The two blocks remain stationary when the net force on the system is zero. In this case, the force of gravity on the two blocks is balanced by the tension in the rope connecting them. The tension in the rope can be determined using the sine of the angles and the masses of the blocks.
Tension = (mass1 × gravity) × sin(angle1) + (mass2 × gravity) × sin(angle2)
Substituting the known values:
Tension = (10 kg × 9.8 m/s²) × sin(23°) + (mass2 × 9.8 m/s²) × sin(40°)
Solving for mass2:
mass2 = (Tension - (10 kg × 9.8 m/s²) × sin(23°)) / (9.8 m/s² × sin(40°)).
The mass of the right block must be 7.9 kg for the two blocks to remain stationary.
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The question is -
Two blocks in the Figure below are at rest on frictionless surfaces What must be the mass of the right block so that the two blocks remain stationary? 4.9kg 6.1kg 7.9kg 9.8kg
in thermo i, the total energy of the system will include all of the following forms of energy except:
The sum of all the kinetic and potential energies of a system's constituent pieces is the total energy of the system.
What is a thermodynamic system's overall energy?4 Energy total, where e=E/m and u=U/m. The terms "specific total energy" and "specific internal energy," respectively, are used to describe the variables e and u. The potential and kinetic energy are frequently zero or so negligible in the study of thermodynamic systems that they can be disregarded.The sum of all the kinetic and potential energies of a system's constituent pieces is the total energy of the system.Potential energy is both stored energy and positional energy.Chemical energy is the energy held in atoms' and molecules' bonds.Mechanical energy is the energy held under tension inside things.Nuclear energy is the energy that an atom's nucleus stores and uses to maintain its structural integrity.To learn more about total energy refer to:
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a bar rotates horizontally about its centre, reaching a maximum angular velicity in 6 complete raotaions from rest. the bar has a constant angular acceleratino of .110 radians
A bar rotates horizontally about its center, reaching a maximum angular velocity in 6 complete rotations from rest and has a constant angular acceleration of 0.110 radians.
What is angular acceleration?
The angular acceleration is the rate at which the angular velocity of an object is changing.
Therefore, since the angular acceleration of the bar is constant, this means that the angular velocity of the bar is increasing at a constant rate.
To find the angular velocity at any given time, we can use the equation: angular velocity = angular acceleration x time.
To find the final angular velocity, we can use the equation: final angular velocity = initial angular velocity + angular acceleration x time.
Therefore, the final angular velocity of the bar after 6 complete rotations is: 0 + 0.110 radians/s x (6 x 2π) = 6.832 radians/s.
To find the angle that the bar has rotated through, we can use the equation: angle = angular velocity x time
Therefore, the angle that the bar has rotated through after 6 complete rotations is: 6.832 radians/s x (6 x 2π) = 42.5 radians.
It's worth noting that angular velocity is a vector quantity, it's magnitude is given in radians/s and its direction is given by the right hand rule.
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Complete question is:
A bar rotates horizontally about its center, reaching a maximum angular velocity in 6 complete rotations from rest and has a constant angular acceleration of 0.110 radians. The movement of the interia of the bar about the raxis of the rotation is about 0.0216kgm^.
a. Show the final angular velocity of the bar is 3 radians.
b. Draw the variation with time t of the angular displacement 0 of the bar during the acceleration .
c. Calculate the torque acting on the bar while it is accelerating.
d. The torque is removed. The bar comes to rest in 30 complete rotations with constant angular deceleration. Determine the time taken for the bar to come to rest.