Given that the weight of the person is W = 740 N.
The weight can be calculated by the formula,
\(\begin{gathered} W=mg \\ m\text{ =}\frac{W}{g} \end{gathered}\)Here, m is the mass of the person, g is the acceleration due to the gravity of the earth.
\(\begin{gathered} g\text{ = }\frac{GM}{R^2} \\ =\frac{9.81m}{s^2} \end{gathered}\)Here, G is the universal gravitational constant.
M is the mass of the earth and R is the radius of the earth.
The mass of the person will be
\(\begin{gathered} m\text{ = }\frac{740}{9.81} \\ =75.43\text{ kg} \end{gathered}\)Now, the new acceleration due to gravity is
\(\begin{gathered} g^{\prime}=\frac{2GM}{(4R)^2} \\ =\frac{2}{16}\times g \\ =1.226m/s^2 \end{gathered}\)Now the new weight will be
\(\begin{gathered} W^{\prime}\text{ = m}\times g^{\prime} \\ =\text{ 75.43}\times1.226 \\ =92.477\text{ N} \end{gathered}\)Thus, the new weight is 92.477 N.
What is the force between two protons that are separated by 1.0 mm? The
charge of a proton is 1.6 x 10-19 C
5.3 x 10^-50 N
2.3X10^-25 N
2.3 X 10^-22 N
1.4 X 10^-3 N
The charge of a proton is 2.3 X 10^-22 N. Option C.
The force between two protons is the electrostatic repulsion. The electrostatic force is the force that develops between electric charges. This is called the strong nuclear force. It is one of the basic strengths. The amount of strong nuclear force acting between two protons is the same as the amount of strong nuclear force acting between two neutrons.
The nuclear force is the force acting between the protons and neutrons of an atom. The nuclear force is the force that binds protons and neutrons within the nucleus. This force can exist between protons and protons neutrons and protons or neutrons and neutrons. This force holds the core together. nuclear power. Nuclear forces act between all particles in the nucleus between two neutrons between two protons and between neutrons and protons.
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g A velocity selector consists of crossed electric and magnetic fields. The electric field has a magnitude of 480 N/C and is in the negative z direction. What should the magnetic field (magnitude and direction) be to select a proton moving in the negative x direction with a velocity of 3.50 cross times 10 to the power of 5 m/s to go un-deflected
Answer:
B = 1.37 mT
Explanation:
Given that,
The magnitude of the electric field, E = 480 N/C
The speed of the proton, \(v=3.50 \times 10^5\ m/s\)
We need to find the magnitude of the magnetic field. In a velocity selector, the electric field is balanced by the magnetic field. So,
\(qE=qvB\)
Where
B is the magnetic field
\(B=\dfrac{E}{v}\\\\B=\dfrac{480}{3.5\times 10^5}\\\\B=1.37\times 10^{-3}\ T\\\\or\\\\B =1.37\ mT\)
So, the magnetic field is equal to 1.37 mT.
If there were no air resistance, how long would it take a free-falling skydiver to fall from a plane at 2500 m to an altitude of 440 m, where she will pull her ripcord?
Express your answer to two significant figures and include the appropriate units.
What would her speed be at 440 m? (In reality, the air resistance will restrict her speed to perhaps 150 km/h.)
Express your answer to two significant figures and include the appropriate units.
The time is taken by the skydiver to fall from a plane at 2500 m to an altitude of 440 m, where she will pull her ripcord is 20.5 sec.
What is resistance?Resistance is a measure of an electrical circuit's resistance to current flow. Resistance is measured in ohms, which is represented by the Greek letter omega (). Ohms are named after German scientist Georg Simon Ohm (1784-1854), who researched the link between voltage, current, and resistance.
Here,
Height of the plane, S = 2,500 m,
The altitude where she will pull her ripcord, s = 440m
We can solve the problem using the second equation of motion, according to the second equation of motion,
S=ut+1/2at*t
2500-440=1/2*9.8*t*t
t=2060*2/9.8
t*t=420.40
t=√420.40
t=20.5 seconds
Hence, the time is taken by the skydiver to fall from a plane at 2500 m to an altitude of 440 m, where she will pull her ripcord is 20.5 sec.
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If an object that floats on the surface displaces 10 cm³ of water, how much
does that object weigh? Explain how you know.
The weight of the body is 0.0979N
What do you mean by the weight of a body?
The force of gravity acting on an object is known as its weight, which may be computed using the formula
w = mg,
or mass times gravity acceleration.
The SI unit for weight is the newton since it is a force.
In order for an object to be buoyant, its weight must be equal to its own or, if it is floating, equal to water volume times a specific water weight equals W.
W=FB
W=γVd
where
γ = specific weight of the fluid [kN/m^3]
Vd = volume of displaced fluid
The specific weight of water at 20∘C is 9.79 kN/m^3
∴ W = 9.79 (kN/m^3) (10cm^3)(10^−6 m^3/cm^3)
= 97.9 x 10^−6 kN
W = 0.0979N
Hence, The weight of the body is 0.0979N
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what is magnetic filde ?
Answer:
A field having a magnet in it...
Explanation:
The reason that the field has a magnet in it makes it attractive to discuss with others...
Hahahaha, jk. Loooolllllllllllllzzzzz
The diagram below shows snapshots of an oscillator at different times. What is the period of the oscillation
The recurrent transition of something between two locations or states is referred to as oscillation.
Thus, A sine wave—a wave with everlasting motion like the side-to-side swing of a pendulum or the up-and-down action of a spring with a weight—is an example of an oscillation.
An oscillation is a periodic motion that repeats itself in a regular cycle. Around an equilibrium point or mean value, an oscillating movement takes place. Periodic motion is another name for it.
An oscillation is a continuous movement that occurs throughout time, whether it is going up and down or side to side.
Thus, The recurrent transition of something between two locations or states is referred to as oscillation.
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Can anyone please help me solve this question?
An electric dipole consists of two point charges, +3.0 µC and -3.0 µC, separated by a distance of 8.0 mm. The dipole is located along the x-axis, with the positive charge at the origin and the negative charge at x = 8.0 mm. Calculate the electric potential and electric field at a point on the y-axis, located 10.0 mm away from the origin.
The electric field at the y-axis position is -10.0 N/C and is oriented towards the negative charge and electric potential at the point on the y-axis is -0.5 V..
How to determine electric potential and electric field?To calculate the electric potential and electric field at the point on the y-axis, use equations for electric potential and electric field due to an electric dipole:
Electric potential V = kq/(r_+) - kq/(r_-)
Electric field E = kq/(r_+)² - kq/(r_-)²
where k = Coulomb constant,
q = charge of each point charge,
r_+ = distance from the positive charge to the point on the y-axis, and
r_- = distance from the negative charge to the same point on the y-axis.
Using the given values:
r_+ = √((0.01 m)² + (0.1 m)²) = 0.1005 m
r_- = √((0.008 m)² + (0.1 m)²) = 0.1002 m
q = 3.0 μC
Electric potential:
V = (9.0 x 10⁹ N·m²/C²)(3.0 x 10⁻⁶ C)/(0.1005 m) - (9.0 x 10⁹ N·m²/C²)(3.0 x 10⁻⁶ C)/(0.1002 m)
V = 215.6 V - 216.1 V
V = -0.5 V
The electric potential at the point on the y-axis is -0.5 V.
Electric field:
E = (9.0 x 10⁹ N·m²/C²)(3.0 x 10⁻⁶ C)/(0.1005 m)² - (9.0 x 10⁹ N·m²/C²)(3.0 x 10⁶ C)/(0.1002 m)²
E = 2705.6 N/C - 2715.6 N/C
E = -10.0 N/C
The electric field at the point on the y-axis is -10.0 N/C, directed towards the negative charge.
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Weight of a body becomes greater at the pole than that at the equator . why ?
Find the speed of a wave with a frequency of 18 Hz and a wavelength of 6 meters. Show work. WILL MARK BRAINLIEST IF CORRECT
Answer:
so i would say 11.4 i dont have work only this link
Explanation:
https://flexbooks.ck12.org/cbook/ck-12-physics-flexbook-2.0/section/11.4/primary/lesson/wave-speed-ms-ps
with an armature resistance of 0.03 2 and a field resistance of
41.67 2. The motor has compensating windings, so armature
reaction can be ignored. Mechanical and core losses may be
assumed to be negligible for the purposes of this problem. The
motor is assumed to be driving a load with a line current of 126 A
and an initial speed of 1103 r/min. To simplify the problem,
assume that the amount of armature current drawn by the motor
remains constant.
A. If the machine's magnetization curve is shown in Figure 8-9, what is the motor's
speed if the field resistance is raised to 50 ?
B. Calculate and plot the speed of this motor as a function of the field resistance RF
assuming a constant-current load.
R₁ = 0.03 2
EA
IA
IF
IL
RF + Radj
LF
+
250 V
A. The motor's speed is approximately 1086 r/min if the field resistance is raised to 50 Ω.
B. The speed of this motor as a function of the field resistance RF is approximately 1086 r/min
A. According to the magnetization curve shown in Figure 8-9, the motor's speed can be calculated by using the following equation:
EA = kϕN, where EA is the back EMF, k is a constant, ϕ is the magnetic flux, and N is the motor speed.
Since the amount of armature current remains constant, the back EMF is also constant.
Therefore, the magnetic flux must also be constant. The magnetic flux is proportional to the field current IF, which can be calculated using Ohm's law:
IF = (250 V - EA)/(RF + R₁)
At the initial field resistance of 41.67 Ω, the field current is IF = (250 V - EA)/(41.67 Ω + 0.03 Ω) = (250 V - EA)/41.70 Ω.
If the field resistance is raised to 50 Ω, then the new field current is IF = (250 V - EA)/(50 Ω + 0.03 Ω) = (250 V - EA)/50.03 Ω.
Since the magnetic flux is constant, we can set the two expressions for IF equal to each other and solve for N:
kϕN/IF1 = kϕN/IF2
N = (IF2/IF1)N1 = (250 V - EA)/(50.03 Ω + 0.03 Ω) * 1103 r/min ≈ 1086 r/min
Therefore, the motor's speed is approximately 1086 r/min if the field resistance is raised to 50 Ω.
B. The speed of the motor as a function of the field resistance RF can be plotted using the same equation used in part A:
N = (250 V - EA)/(RF + R₁ + Radj) * 1103 r/min
where Radj is the resistance of any additional resistance in the circuit. Since the load current is constant, the current through the motor is also constant, so EA is also constant.
Therefore, the speed is inversely proportional to the total resistance in the circuit, which includes the field resistance RF, armature resistance R₁, and any additional resistance Radj.
A plot of the speed as a function of the field resistance is shown in Figure 8-10. As the field resistance increases, the speed of the motor decreases due to the increased total resistance in the circuit. This relationship is linear for this type of constant-current load.
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The half-life of a radioactive isotope is 210 d. How many days would it take for the decay rate of a sample of this isotope to fall to 0.58 of its initial rate?
It would take approximately 546 days for the decay rate of the sample of this radioactive isotope to fall to 0.58 of its initial rate.
1. The decay rate of a radioactive isotope is proportional to the number of radioactive atoms present in the sample at any given time.
2. The decay rate can be expressed as a function of time using the formula: R(t) = R₀ * \(e^{(-\lambda t\)), where R(t) is the decay rate at time t, R₀ is the initial decay rate, λ is the decay constant, and e is the base of the natural logarithm.
3. The half-life of a radioactive isotope is the time it takes for half of the radioactive atoms in a sample to decay. In this case, the half-life is given as 210 days.
4. Using the half-life, we can find the decay constant (λ) using the formula: λ = ln(2) / T₁/₂, where ln(2) is the natural logarithm of 2 and T₁/₂ is the half-life.
5. Substituting the given half-life into the formula, we have: λ = ln(2) / 210.
6. Now, we need to find the time it takes for the decay rate to fall to 0.58 of its initial rate. Let's call this time "t".
7. Using the formula for the decay rate, we can write: 0.58 * R₀ = R₀ * e^(-λt).
8. Simplifying the equation, we get: 0.58 = \(e^{(-\lambda t\)).
9. Taking the natural logarithm of both sides, we have: ln(0.58) = -λt.
10. Substituting the value of λ from step 5, we get: ln(0.58) = -(ln(2) / 210) * t.
11. Solving for t, we have: t = (ln(0.58) * 210) / ln(2).
12. Evaluating the expression, we find: t ≈ 546.
13. Therefore, it would take approximately 546 days for the decay rate of the sample of this radioactive isotope to fall to 0.58 of its initial rate.
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MATERIAL SPECIFIC HEAT
water (pure) 4,184
aluminum 900
steel 470
silver 235
oil 1,900
concrete 880
glass 800
gold 129
wood 2,500
A 0.8-kilogram piece of aluminum increases its temperature 15°C when heat is added. How much heat energy produced this change in tempurature?
A) 12 Joules
B) 900 Joules
C) 5,600 Joules
D) 10,800 Joules
the speed of a boat in still water is 24 mph. if the boat travels 54 miles upstream in the same time it take to travel 90 miles downstream, find the speed of the current
Let's call the speed of the current "c". Then, the speed of the boat relative to the water when it is going upstream is 24 - c mph, and the speed of the boat relative to the water when it is going downstream is 24 + c mph.
Using the time it takes to travel the given distances, we can set up the following equation:
(54) / (24 - c) = (90) / (24 + c)
Expanding and solving for c, we find that:
c = 4 mph
So the speed of the current is 4 mph.
Answer: Upstream: 24 - 6 = 18 ---> 54 = 18 x? ---> ? = 54/18 = 3 hours
(24 - 6)x 3 = 18 x 3 = 54 miles
(24 + 6) x 3 = 30 x 3 = 90 miles
The speed of the current is 6 mph.
Time is 3 hours
the block is sitting at rest on teh floor . The normal force on the block is 3.00 N find the mass of the block
Answer:
m = 0.305 [kg]
Explanation:
When a body rests on a horizontal surface and is in balance we can say that normal force is the reaction of the weight of a body.
Weight is defined as the product of mass by gravitational acceleration.
\(N=W=m*g\)
where:
N = normal force = 3 [N]
g = gravity acceleration = 9.81 [m/s²]
m = mass [kg]
Now replacing:
\(3=m*9.81\\m=0.305[kg]\)
Two planets, Dean and Sam, orbit the Sun. They each have with circular orbits, but orbit at different distances from the Sun. Dean orbits at a greater average distance than Sam. According to Kepler's Third Law, which planet will have a longer orbital period? Group of answer choices Dean Sam Since they both have circular orbits, they will have the same orbital periods. There isn't enough information to tell.
Answer:
The correct answer is Dean has a period greater than San
Explanation:
Kepler's third law is an application of Newton's second law where the force is the universal force of attraction for circular orbits, where it is obtained.
T² = (4π² / G M) r³
When applying this equation to our case, the planet with a greater orbit must have a greater period.
Consequently Dean must have a period greater than San which has the smallest orbit
The correct answer is Dean has a period greater than San
Answer:
According to the law of universal gravitation, any two objects are attracted to each other. The strength of the gravitational force depends on the masses of the objects and their distance from each other.
Many stars have planets around them. If there were no gravity attracting a planet to its star, the planet's motion would carry it away from the star. However, when this motion is balanced by the gravitational attraction to the star, the planet orbits the star.
Two solar systems each have a planet the same distance from the star. The planets have the same mass, but Planet A orbits a more massive star than Planet B.
Which of the following statements is true about the planets?
A.
Planet B will keep orbiting its star longer than Planet A.
B.
Planet A has a longer year than Planet B.
C.
Planet A orbits its star faster than Planet B.
D.
Planet B is more attracted to its star than Planet A.
Explanation:
Artificial satellites in space can help you find locations on
Earth. True or false?
Group B[1] 12 State Huygens's Principle [2] b) In a Young's double slit experiment, the fringe width obtained is 0.6 cm. When light of wave length 4500 Aº is used if the distance between the screen and the slit is reduced in half, what should be the wavelength of light used to obtain fingers 0.0045 m wide? [3]
The wavelength of light that should be used to obtain fringes that are 0.0045 m wide after reducing the distance between the screen and the slit by half is 2.25 * 10^7 Å.
Huygens's Principle states that every point on a wavefront can be considered as a source of secondary spherical wavelets that spread out in all directions with the same speed as the original wave. The new wavefront is formed by the envelope of these secondary wavelets at a later time.
Now, let's consider a Young's double-slit experiment. In this experiment, when light passes through two narrow slits, it creates an interference pattern on a screen behind the slits. The fringe width is the distance between two consecutive bright or dark fringes in the pattern.
Given that the fringe width obtained is 0.6 cm and the wavelength of light used is 4500 Å (Angstroms), we can calculate the wavelength of light required to obtain fringes that are 0.0045 m wide.
We can use the formula for fringe width in Young's double-slit experiment:
w = (λ * D) / d
Where:
w is the fringe width,
λ is the wavelength of light,
D is the distance between the screen and the double slits, and
d is the distance between the two slits.
Let's calculate the value of D/d using the given information:
D/d = w / λ
= 0.006 m / 4500 Å (1 m = 10^10 Å)
= 0.006 * 10^10 / 4500 m^-1
Now, if the distance between the screen and the slit is reduced by half, the new value of D/d would be:
(D'/d) = (0.006/2) * 10^10 / 4500 m^-1
Now, we can rearrange the equation to solve for the new wavelength (λ'):
(λ' * D') / d = (D/d)
λ' = (D/d) * d / D
= [(0.006/2) * 10^10 / 4500] * (4500 / 0.006) Å
= 0.0045 m * 10^10 / 2 Å
= \(0.00225 * 10^{10\) Å
=\(2.25 * 10^7\)Å
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Are you able to help me with the following question?
We need to do a conversion using the following information:
\(1m=1000mm\)So:
\(5\frac{mm}{s}\times\frac{1m}{1000mm}=5\times10^{-3}\frac{m}{s}\)An especially violent lightning bolt has an average current of 1.16 x 103 A lasting 0.139 s. How much charge is delivered to the ground by the lightning bolt
Charge is current times time :
Q = I × t
Q = 1.16 × 10³ × 0.139
Q = 161.24 C
how far from the lens is the image of the house if the house is 16 ft from the thin convex lens with a focal length of 8 ft
This question involves the concepts of the thin lens formula, focal length, and image distance.
The image of the house is "16 ft" away from the lens.
According to the thin lens formula:
\(\frac{1}{f}=\frac{1}{p}+\frac{1}{q}\)
where,
f = focal length = 8 ft
p = object distance = 16 ft
q = image distance = ?
Therefore,
\(\frac{1}{8\ ft}=\frac{1}{16\ ft}+\frac{1}{q}\\\\\frac{1}{q}=\frac{1}{8\ ft}-\frac{1}{16\ ft}\\\\\frac{1}{q}=0.125\ ft^{-1}-0.0625\ ft^{-1}\\\\q=\frac{1}{0.0625\ ft^{-1}}\\\\\)
q = 16 ft
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A ramp is set at 32° to the ground. A briefcase of mass 3.2 kg is pushed to the top of the ramp, increasing its GPE by 37 J. How long is the ramp?
The table shows the commonly eaten foods of some groups of organisms.
Commonly Eaten Foods List
Group Commonly Eaten Foods
A squids, crabs, lobsters
B branches, barks, twigs, roots
C insects, leaves, nuts, bird eggs
D vegetables, fish, grains, fruits
Which groups contain both primary and secondary consumers
HELP ASAP
Answer:
c and d
Explanation:
I got your back bro ;)
Answer:
C and D
Explanation:
a certain ellipse has a semimajor axis with a length of 6.25 cm, and the
foci are 3 cms apart what is the eccentricity?
Answer:
1/2
Explanation:
Given
c=distance
a= length
e= c/a
3/6
e= 1/2 or 0.5
Water flows at a speed of 13 m/s through a pipe that has a diameter of 1.2 m. What is the
diameter of the smaller end of the pipe that the water comes out with a speed of 30 m/s?
The diameter of the smaller end of the pipe is approximately 0.78 meters.
To determine the diameter of the smaller end of the pipe, we can use the principle of conservation of mass. According to this principle, the mass flow rate of water should remain constant throughout the pipe.
The mass flow rate is given by the equation:
Mass flow rate = density of water * cross-sectional area * velocity
Since the density of the water remains constant, we can write:
Cross-sectional area1 * velocity1 = Cross-sectional area2 * velocity2
Given that the velocity1 is 13 m/s, the diameter1 is 1.2 m, and the velocity2 is 30 m/s, we can solve for the diameter2 using the equation:
(pi * (diameter1/2)^2) * velocity1 = (pi * (diameter2/2)^2) * velocity2
Simplifying the equation:
(1.2/2)^2 * 13 = (diameter2/2)^2 * 30
Calculating the equation:
(0.6)^2 * 13 = (diameter2/2)^2 * 30
0.36 * 13 = (diameter2/2)^2 * 30
4.68 = (diameter2/2)^2 * 30
Dividing both sides by 30:
0.156 = (diameter2/2)^2
Taking the square root of both sides:
0.39 = diameter2/2
Multiplying both sides by 2:
0.78 = diameter2
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Compare and contrast, in detail, at least two types of pluralism. Do you think the United States is becoming more pluralistic? Why or why not? How do ethnic enclaves relate to pluralism in the US?
a. There are two main types of pluralism: cultural and political
b. Yes, the United States is becoming more pluralistic
c. Ethnic enclaves can be both a positive and negative aspect of pluralism in the US.
a. Pluralism refers to the coexistence of multiple cultures, religions, and ethnicities within a society. There are two main types of pluralism: cultural and political. Cultural pluralism emphasizes the preservation of distinct cultural traditions, while political pluralism emphasizes the equal representation of different groups within the political system.
Cultural pluralism is often associated with the idea of multiculturalism, which recognizes and celebrates the diversity of different cultures. This type of pluralism acknowledges the importance of cultural differences and encourages individuals to maintain and express their cultural identities. In contrast, political pluralism emphasizes the importance of equal representation of different groups within the political system. This can take the form of proportional representation in government or equal access to political power for different groups.
b. The United States is becoming more pluralistic, as the population becomes more diverse and the importance of multiculturalism and political pluralism is increasingly recognized. The country is home to many different ethnic and cultural groups, and these groups are increasingly visible in politics and society. This is evident in the increasing number of ethnic and cultural enclaves, which are areas where different ethnic groups live in close proximity to one another.
c. Ethnic enclaves can be both a positive and negative aspect of pluralism in the US. On the one hand, they allow individuals to maintain their cultural traditions and create supportive communities. On the other hand, they can also lead to segregation and exclusion, as different groups may be reluctant to interact with one another. In order to promote a positive form of pluralism, it is important to encourage interaction and understanding between different groups, while also respecting and celebrating their distinct cultural identities.
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Which statement best suscribes what happens during chemical change?
Chemical change involves the rearrangement of atoms or molecules in a substance, resulting in the formation of new substances with different properties than the original substance.
A chemical change in a chemical reaction is a process where one or more substances undergo a chemical transformation, resulting in the formation of new substances with different chemical and physical properties than the original substances. During a chemical change, the atoms or molecules of the reacting substances are rearranged through chemical reactions, leading to the breaking and forming of chemical bonds and the release or absorption of energy.
Chemical changes occur when a material's chemical makeup is changed, creating one or more new compounds with qualities that are distinct from those of the original substance. Chemical reactions that result in the breaking and building of chemical bonds occur when the atoms or molecules of the substances involved are reorganized during a chemical shift. The release or absorption of energy in the form of heat, light, or sound is typically accompanied by this process.
Therefore, Rearranging atoms or molecules in a substance causes chemical change, which creates new compounds with differing properties from the original one.
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A proton in the nucleus of an atom has an electrical charge of:
neutral
-
+
zero
Answer:
proton is positively charged changechar
Explanation:
A bag contains 2 orange balls and 3 blue balls. Two balls are selected without putting the first one back. What is the probability they are both orange?.
Overall probability of this particular event happening are 2/5 and 1/4, respectively. You get 2/20 when you add them all together. Justify with 1/10.
What are examples and probability?The justification for probability serves as the basic foundation for density of a reference substance. For instance, this same theoretically chance of receiving a head while tossing a coin is 12.
The probability formula is what?The possibility is typically defined as the proportion of positive outcomes to all alternatives in the sample space. Probability and plausibility, as well as its homophones in these other language skills, are words that have their roots in medieval knowledge and Cicero. They are typically used to denote opinions that are plausible or widely accepted.
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Frequency= Wavelength = 502 km Speed= 100 m/s
Answer:
Explanation:
Wavelength = 100m. Speed = V. 2.) Frequency = 20 Hz. Wavelength = 200 m. Speed = ... 2=1.7m. F=Y/2 f=2×10. 5.) Wavelength = 502 km. Speed= 100 m/s.
A 5 kW, 230 V motor draws a current of 24 A from the supply. Determine the efficiency of this motor.
The efficiency of motor is 90.58%.To determine the efficiency of the motor, we need to calculate the input power and the output power, and then divide the output power by the input power
The input power can be calculated using the formula:
Input Power = Voltage × Current
Given that the voltage is 230 V and the current is 24 A, we have:
Input Power = 230 V × 24 A
Input Power = 5520 W (or 5.52 kW)
The output power of the motor is given as 5 kW (since it is a 5 kW motor).
Now, we can calculate the efficiency:
Efficiency = (Output Power / Input Power) × 100%
Efficiency = (5 kW / 5.52 kW) × 100%
Efficiency ≈ 90.58%
Therefore, the efficiency of this motor is approximately 90.58%.
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