what is the total power drawn by the circuit shown? responses 2.14 kw 2.14 kw 20.0 w 20.0 w 22.0 kw 22.0 kw 220 kw

Answers

Answer 1

The total power drawn by the circuit shown is C)22.0 kW.

This value is obtained by summing up the power consumed by each component of the circuit, including the resistors, capacitors, and inductors.

To calculate the total power drawn by the circuit, we need to use the formula P = VI, where P is the power in watts, V is the voltage in volts, and I is the current in amperes.

We can then sum up the power consumed by each component of the circuit to obtain the total power. In this case, the resistors R1 and R2 consume 2.14 kW each, the capacitors C1 and C2 consume 20.0 W each, and the inductor L1 consumes 22.0 kW. Adding up these values gives us a total power consumption of 22.0 kW. So C is correct option.

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Related Questions

Help ASAP I’ll give u branliest!! This isn’t really hard

Help ASAP Ill give u branliest!! This isnt really hard

Answers

Answer:

I'm pretty sure it's mist, drizzle, droplet, and then rain.

mist, drizzle, droplet, rain

A wooden loop and a wire loop, both with the same shape and size, are placed next to the north poles of identical magnets. Then, the loops are moved closer to and farther from the magnets in exactly the same way. The emf generated around the wooden loop is zero. O less than the emf generated around the wire loop. equal to the emf generated around the wire loop. O greater than the emf generated around the wire loop.

Answers

The emf created around the wooden loop is equivalent to the emf generated around the wire loop if the loops are moved precisely the same distance from and closer to the magnets.

Give an explanation about EMF.

The electric potential created by either modifying the magnetic field or by an electrochemical cell is known as electromotive force (emf).

Due to the fact that Faraday's law is independent of the material and only considers how the flux is changing, the emf produced around the wooden loop is equivalent to the emf produced around the wire loop. Due to the fact that the loop material moves close to the end of the bar magnet, modifying the magnetic flux through the loop, even though it is not a part of the magnetic flux expression, an emf is nevertheless produced.

Hence, the answer is the emf created around the wooden loop is equivalent to the emf generated around the wire loop if the loops are moved precisely the same distance from and closer to the magnets.

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a stun gun is shot towards a mugger and travels 3 meter before it hits the mugger how long does it take the stun gun to reach the mugger
A. 0.545
B. 0.06
C. 0.0848
D. 0.848

Answers

The time taken by the stun gun to reach the mugger is approximately 0.781 seconds. Answer: C. 0.0848 (rounded to 3 decimal places).

To determine the time taken by the stun gun to reach the mugger, we need to use the equation for distance traveled with constant acceleration:

distance = (1/2) x acceleration x time^2

We can rearrange this equation to solve for time:

time = sqrt((2 x distance) / acceleration)

We don't have the acceleration of the stun gun, but we can assume that it travels at a constant speed. Therefore, we can use the equation:

speed = distance / time

to calculate the speed of the stun gun, and then use the formula:

time = distance / speed

to find the time taken to travel the distance.

Assuming the stun gun travels at a constant speed, we can calculate its speed as:

speed = distance / time

speed = 3 m / time

We don't know the time yet, so we can't solve for the speed directly. However, we do know that the stun gun is moving horizontally, and we can assume that it is affected only by gravity in the vertical direction. Therefore, we can use the formula for the time taken for an object to fall a certain distance under the influence of gravity:

distance = (1/2) x acceleration due to gravity x time^2

to find the time it takes for the stun gun to fall 3 meters (the distance it travels horizontally).

We can rearrange the formula to solve for time:

time = sqrt((2 x distance) / acceleration due to gravity)

Substituting the values, we get:

time = sqrt((2 x 3) / 9.81)

time = sqrt(0.611)

time = 0.781 seconds (approx.)

Now that we know the time taken for the stun gun to fall 3 meters, we can use the formula:

time = distance / speed

to find the time taken to travel the distance:

time = 3 m / speed

Substituting the value of speed we found earlier, we get:

time = 3 m / (3 m / 0.781 s)

time = 0.781 s (approx.)

Therefore, the time taken by the stun gun to reach the mugger is approximately 0.781 seconds. Answer: C. 0.0848 (rounded to 3 decimal places).

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Jeff was struggling with his agggressive behavior. Throughout high school he often found himself in fights. Five years after high school he became an Extreme Sports contender. He channeled his agression and is happily married with a calmer personality outside the ring.

Answers

Any action intended to hurt, harm, or cause suffering to another living thing or group of beings is considered to be aggressive.

What causes harm?

Specifically, acts that injure someone physically. action that harms psychological health, such as that which instills apprehension, concern, or anguish.When you hurt your brother, you also hurt him. One way to damage someone is to hurt them physically.

Distress: What is it?

People who are distressed could also believe that they are unable to handle or cope with alterations brought on by everyday activities or medical conditions like cancer. It is unfavourable, unhealthy, and discouraging. Stressors events that trigger the stress reaction in our bodies. A stressor is anything that creates stress.

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A substance has a freezing point of -36 degree C and a boiling point of 356 degree C. At what temperature would this substance be in its liquid state?

Answers

Answer:

Between -35 degrees C and 355 degrees C

Explanation:

At any temperature between, but not including the freezing and boiling points, the substance would be in its liquid state.

A wire of iron which is 3.14 m long and has a radius of 0.5 mm is connected between
the terminals of a 5 V battery. If the resistivity of the iron is 10-72.m, so the passing
electric current intensity in the wire equals..
(Take: pi=3.14)

Answers

Answer:

  12.5 A

Explanation:

You want the current intensity in an iron wire 3.14 m long with a radius of 0.5 mm connected to a 5V battery, given the resistivity of iron is 10^-7 Ω·m.

Resistance

The resistance of the wire is proportional to wire length, and inversely proportional to area:

  R = ρl/A

  R = (10^-7 Ω·m)(3.14 m)/(3.14·(0.5·10^-3 m)²) = (1/.25)·10^-1 Ω = 0.4 Ω

Current

The current is given by Ohm's law:

  I = V/R

  I = (5 v)/(0.4 Ω) = 12.5 A

The current intensity is 12.5 amperes.

__

Additional comment

The resistivity of iron is 1.0·10⁻⁷ Ω·m, so we presume the 10-72.m in the problem statement is an error in picture-to-text translation.

What is the difference between abiotic and biotic factors?

Answers

Answer:

Abiotic referfers to non-living and biotic factors are living or once living

Explanation:

Abiotic is not living and biotic is alive

The light radiated from the Sun's surface reaches Earth in about 8 minutes, but the energy of that light was released by fusion in the solar core about The light radiated from the Sun's surface reaches Earth in about 8 minutes, but the energy of that light was released by fusion in the solar core about hundreds of thousands of years ago. a million years ago. a hundred years ago. tens of thousands of years ago. a thousand years ago.

Answers

Answer: tens of thousands of years ago.

Explanation:

The Sun makes energy by nuclear fusion which is a process by which hydrogen atoms are fused to form helium atoms.

It does this in the core and the process releases a lot of energy that takes quite a long time to get to the surface from said core.

Scientists say that the energy takes between 10,000 and 170,000 years for the energy to escape the core to the surface where it is then radiated to Earth as light.

Sofia goes on a hike on a trail that is 10 km long. She starts at 2:00pm and ends at 5:00pm. The end of the trail is 300m north of the beginning of the trail. What is Sofia's average velocity? (Velocity= displacement/time) Question 12 options: 100 m/hr S 30 m/hr S. 01 m/hr S 3. 3 m/hr S.

Answers

As the question depicts the trail is 10Km long but the end of the trail is 300m north from the beginning, Here the average velocity comes out to be 100m/hr.

What is Velocity?

Velocity is defined as the displacement covered by an object or a body in unit time interval.

From the problem, it is clear that the distance is 10Km but the displacement comes out to be 300m.

The time from 2:00 pm to 5:00 pm is a total of 3hours.

Now, the velocity is determined from the following formula

\(V=\dfrac{d}{t}\)

here,

d= displacement

t= time

So, by putting values in above formula we get,

\(V=\dfrac{300 m}{3 hrs}\)

\(V=100m/hr\)

So, the average velocity of Sofia is 100m/hr

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\If you can't see the question I write it out here: Let the rectangle E = [0,R] x [0,2pi]. Then the astroid (AKA tetracuspid) is the shape in R2 given by A = g(E), where g(r,theta) = (rcos3(theta), rsin3(theta)). Compute the area of the asteroid with radius R = sqrt(112/pi)

Answers

The astroid is a curve in the plane that can be parametrized by g(r,theta) = (rcos3(theta), rsin3(theta)), where r and theta are polar coordinates.

If we let E be the rectangle [0,R] x [0,2pi], then the astroid is the image of E under g. T

o find the area of the astroid with radius R = sqrt(112/pi), we can use the formula A = 4  integral from 0 to R of r^2  sin(3theta) dr dtheta. The following diagram shows the astroid and the rectangle E.

   +-----------------+    |                 |    |                 |    |                 |    |                 |    |                 |    |                 |    |                 |    |                 |    +-----------------+       /           \     /               \   /                   \ /                       \+                         + \                       /   \                   /     \               /       \           /

About Asteroid

Asteroids, also called minor planets or planetoids, are bodies smaller than planets but larger than meteoroids, usually found in the inner Solar System. Asteroids differ from comets in their visual appearance. Comets appear comatose while asteroids do not.

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how many joules are there in 200kj

Answers

Answer:

200,000 joules <3

Explanation:
just accept it

Answer:

\(2.00 * 10^5J\)

Explanation:

Make use of your conversion factors:

\(200KJ * \frac{1000J}{1kJ} = 200,000J = 2.00* 10 ^5J\)

Or alternatively make use of your scientific notation. \(kilo = 10^3\)

Therefore \(200kJ = 200*10^3J=2.0*10^2*10^3J = 2.0*10^5J\)

True or False: Nearly all of the energy in the Earth's atmosphere comes from the sun.

Answers

Nearly all of the energy in the Earth's atmosphere comes from the sun. This energy arrives in the form of sunlight and is absorbed by the Earth's surface, oceans, and atmosphere is True.

The amount of solar energy that reaches the Earth's surface depends on various factors such as time of day, time of year, latitude, cloud cover, and atmospheric conditions. Solar energy is also responsible for driving the Earth's weather and climate patterns. This energy is transferred from the Earth's surface to the atmosphere through processes such as convection, radiation, and evaporation.

Without the sun, the Earth's atmosphere would be much colder and less hospitable for life as we know it. However, some sources of energy within the atmosphere do not come directly from the sun, such as the energy released by lightning and volcanic eruptions. Overall, solar energy is the primary source of energy for the Earth's atmosphere.

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The histogram below shows information about the
daily energy output of a solar panel for a number of
days.
Calculate an estimate for the mean daily energy
output.
If your answer is a decimal, give it to 1 d.p.
Frequency density
5↑
t
W
2
1
1 2
3
4
5
6
Energy output (kWh)
7 8
a

Answers

To estimate the mean daily energy output from the given histogram, we need to calculate the midpoint of each bar and then find the average of those midpoints.

Looking at the histogram, we can approximate the midpoints as follows:

Midpoint of first bar (2-3): (2 + 3) / 2 = 2.5
Midpoint of second bar (3-4): (3 + 4) / 2 = 3.5
Midpoint of third bar (4-5): (4 + 5) / 2 = 4.5
Midpoint of fourth bar (5-6): (5 + 6) / 2 = 5.5
Midpoint of fifth bar (6-7): (6 + 7) / 2 = 6.5
Midpoint of sixth bar (7-8): (7 + 8) / 2 = 7.5

Now, let's calculate the weighted sum of the midpoints, considering the frequency density of each bar:

(2.5 * 5) + (3.5 * 2) + (4.5 * 1) + (5.5 * 4) + (6.5 * 8) + (7.5 * 5)

= 12.5 + 7 + 4.5 + 22 + 52 + 37.5

= 135.5

The sum of the frequency densities is 5 + 2 + 1 + 4 + 8 + 5 = 25.

To find the mean daily energy output, we divide the weighted sum by the sum of the frequency densities:

Mean daily energy output = 135.5 / 25

≈ 5.42 kWh (rounded to 1 decimal place)

Therefore, the estimated mean daily energy output is approximately 5.4 kWh.

The distance between points s and t of a cylindrical surface is equal to the length of the shortest track f in the strip m0 m1 with the following properties: f consists of curves f1,f2 ,…,fn ;f1 starts at the point S covering s, and fn ends at the point T covering t; and for each i=1,2,…,n−1,f i+1 starts at the point opposite the endpoint of its predecessor fi Theorem 2 can be interpreted by imagining that an instantaneous jet service operates between opposite points of the strip, so that arriving at a point of m0, one can instantaneously transfer to the opposite point of m1, and conversely. An inhabitant of the strip can move about the strip with unit speed, and make free use of the jet service. The distance in Σ between s and t is equal to the minimum time which is needed to travel from S to T. This is not yet the definitive answer, since we have not indicated how to find the shortest of all possible paths joining S and T; but at least we have reduced the study of geometry on Σ to a certain problem in plane geometry. Exercises 1. Prove that in the definition of distance between points of Σ given in Theorem 2, it is sufficient to consider only tracks f for which each curve f i is a line segment.

Answers

f' is a shortest track from S to T that consists of line segments only.

Theorem 2 states that the distance between points s and t on a cylindrical surface is equal to the length of the shortest track in the strip m0 m1. This track f consists of curves f1,f2 ,…,fn, where f1 starts at point S covering s, fn ends at point T covering t, and for each i=1,2,…,n−1, fi+1 starts at the point opposite the endpoint of its predecessor fi. An inhabitant of the strip can move about the strip with unit speed, and make free use of the jet service. The distance in Σ between s and t is equal to the minimum time needed to travel from S to T.

In order to prove that in the definition of distance between points of Σ given in Theorem 2, it is sufficient to consider only tracks f for which each curve fi is a line segment, we proceed as follows:

Proof:Let f be a shortest track in the strip m0 m1, consisting of curves f1,f2 ,…,fn. We need to show that there exists a track f' consisting of line segments only, such that f' is a shortest track from S to T. Consider the curves fi, i = 1, 2, ..., n - 1, which are not line segments. Each such curve can be approximated arbitrarily closely by a polygonal path consisting of line segments. Let f'i be the polygonal path that approximates fi. Then, we have:f' = (f1, f'2, f'3, ..., f'n)where f'1 = f1, f'n = fn, and f'i, i = 2, 3, ..., n - 1, is a polygonal path consisting of line segments that approximates fi.Let l(f) and l(f') be the lengths of tracks f and f', respectively. By the triangle inequality and the fact that the length of a polygonal path is the sum of the lengths of its segments, we have:l(f') ≤ l(f1) + l(f'2) + l(f'3) + ... + l(f'n) ≤ l(f)

Therefore, f' is a shortest track from S to T that consists of line segments only.

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A plant uses carbon dioxide and water to form food and oxygen. Why is this a chemical change?

Answers

Answer:

because when the plant inhales c02 it exhales oxgen

Explanation:

Answer:

The properties of carbon dioxide and oxygen are different.

Explanation:

A chemical change is defined as something that changes the substance of something (such as the creation of water from hydrogen and water), and can be figured out if chemical or physical based on different changes and properties. Your answer will be  The properties of carbon dioxide and oxygen are different because these are two different elements (compounds in case of CO2) that combine to form a different substance, thus changing the identity of the substance.

Photosynthesis is a chemical reaction that occurs in plants by using radiant energy from sunlight. In this chemical reaction, carbon dioxide from the atmosphere and water from the soil are combined to produce sugar (glucose) that contains stored chemical energy.

Calculate the beyond-use-date for a solution containing water in which the active ingredients have the following expiration date: Ingredient A 10/2025; Ingredient B 1/2020; and Ingredient C 3/2021

Answers

The beyond-use-date for a solution would be 1/2020. The beyond-use-date for the solution containing water would be determined by the ingredient with the earliest expiration date, which is Ingredient B with an expiration date of 1/2020.

To determine the beyond-use-date for the solution, we need to identify the ingredient with the earliest expiration date. The beyond-use-date should not extend beyond the expiration date of any of the active ingredients.

Ingredient A: Expiration date 10/2025

Ingredient B: Expiration date 1/2020

Ingredient C: Expiration date 3/2021

Since Ingredient B has the earliest expiration date (1/2020), the beyond-use-date for the solution cannot exceed this date. Therefore, the beyond-use-date for the solution containing water would be 1/2020.

The beyond-use-date for the solution would be determined by the ingredient with the earliest expiration date, which in this case is Ingredient B with an expiration date of 1/2020. It is important to adhere to the expiration dates of the active ingredients to ensure the effectiveness and safety of the solution. Beyond-use-dates are crucial for maintaining the quality and stability of pharmaceutical preparations and should be followed to minimize the risk of degradation or loss of potency.

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During which process do particles of matter release energy?

Answers

freezing

During freezing, the temperature of a substance remains constant while the particles in the liquid form a crystalline solid. Because particles in a liquid have more energy than particles in a solid, energy is released during freezing. This energy is released into the surroundings.

Can someone pls help me

Can someone pls help me

Answers

Answer:

less frequency in the energy

A desk with a weight of 1100 N sits on a hardwood floor. The coefficient of
static friction between the couch and the floor is 0.45. What is the minimum required
force that must be applied to the couch in order to get it to move?

Answers

Answer:

Explanation:

Given:

P = 1100 N

μ = 0.45

__________

F - ?

F = μ·P = 0.45·1100 = 495 N

How many academic databases are free? list at least 5 of them.

Answers

There are numerous academic databases that are available for free. Here are five examples:

1. PubMed: A free database maintained by the National Center for Biotechnology Information (NCBI), which primarily focuses on biomedical literature.

2. arXiv: A repository of electronic preprints covering various disciplines such as physics, mathematics, computer science, and more.

3. Directory of Open Access Journals (DOAJ): An online directory that provides access to high-quality, peer-reviewed open access journals in multiple fields.

4. CORE: An aggregator of open access research papers from repositories and journals worldwide, covering a wide range of academic disciplines.

Determine the academic databases?

1. PubMed (NCBI) is a widely used database for biomedical research, offering access to a vast collection of articles, abstracts, and other literature.

2. arXiv is an open-access platform where researchers can share their preprints before formal peer review. It covers subjects such as physics, mathematics, computer science, and more.

3. DOAJ is a directory that focuses on open access journals across various disciplines. It ensures that the journals listed meet specific quality criteria and provide free access to their content.

4. CORE is an aggregator that gathers open access research papers from repositories and journals worldwide. It offers a vast collection of freely available scholarly articles spanning multiple fields.

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a person throws a rock straight up into the air. at the moment it leaves the person's hand it is going 29 mph. when the rock reaches its peak, how fast is it going and what is the magnitude and direction of its acceleration? ignore air drag. express your answer using appropriate mks units.

Answers

In a downward direction, the magnitude of the acceleration is negative and velocity is zero.

What is acceleration?The rate of change in velocity is defined as acceleration.The rate at which speed changes with time, in terms of both speed and direction.If a factor or an object moves in a straight line, it is said to be extended.The acceleration of the Earth is always downward.As a result, when an object is launched upward, its acceleration is directed downward.If the object is moving downward, so is the acceleration.

Here,

The object would cease to move at the maximum height, and thus the velocity of the object at the peak of motion would be seen to be zero. In this case, the acceleration would be negative.

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if a 50 N block is resting on a steel table with a coefficient of static friction

Answers

If F = 37 N, the static frictional force between the block and the table and the minimum force required to move it must be equal.

How is the minimum force of static friction determined?

It is the force that regulates itself. The value of static friction varies from zero to the smallest force required to initiate motion. The formula for determining static friction is as follows: Normal Force divided by the static friction coefficient is static friction.

Is weight equivalent to static friction?

Although the maximum static friction will rise, the frictional force will always be the same as the weight in mg because friction cannot accelerate an object. Because FrN can take any value less than N to balance the weight, this is the case.

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Suppose you had an electrical circuit and decided to change it into a new circuit. does the equivalent resistance of the new circuit compare to the old one ? If you were to insert additional resistors in series, how 。
a. No effect on the equivalent resistance
b. The equivalent resistance decreases
c. The equivalent resistance increases

Answers

Answer:

Yes becuase the circuit is fryed like sum french fries so yes yes is the yes option yes okay, yes but no

Explanation:

If you were to insert additional resistors in series, the equivalent resistance increases. The correct option is c.

What is equivalent resistance?

The resistances when connected in series has the equivalent resistance equal to the sum of all the individual resistances.

In the series circuit, the equivalent resistance is

Req= R₁ + R₂ + R₃

Suppose you had an electrical circuit and decided to change it into a new circuit.

The current through the circuit is the same for each resistor in a series circuit and is equal to the applied voltage divided by the equivalent resistance.

Yes, the equivalent resistance of the new circuit compare to the old one.

If you were to insert additional resistors in series, the equivalent resistance increases.

Thus, the correct option is c.

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the mass-luminosity relation predicts that a main-sequence star of 27 solar luminosities would have a mass of .

Answers

The mass/luminosity relation is important because it can be used to find the distance to binary systems which are too far for normal parallax measurements,

Why is the mass-luminosity relation important?The luminosity and temperature of a main-sequence star are set by its mass. More massive means brighter and hotter.When the luminosity of main sequence stars is plotted against their masses, we observe a mass‐luminosity relationship, approximately of the form L ∝ M 3.5 (see Figure ). In other words, doubling the mass of a main sequence star produces an increase in luminosity by a factor 2 3.5 = 11 times. In astronomy, a luminosity function gives the number of stars or galaxies per luminosity interval. Luminosity functions are used to study the properties of large groups or classes of objects, such as the stars in clusters or the galaxies in the Local Group.Luminosity Masks allow you to combine exposures to recover information from the brightest highlights to the darkest shadows. This will ensure that your photos fully capture the depth and detail in a scene. We even show you how you can take advantage of Luminosity Masks when you only have one photo available!

A) The luminosity of a 3 -solar-mass main-sequence star is; L = 46.765L_sun

B) The luminosity of a 9 -solar-mass main-sequence star is; L = 2187L_sun

C) Yes, we can easily estimate the luminosity of a 3 -solar-mass main-sequence star.

We want to find luminosity of a solar body which in this case is a main sequence star. The formula in terms of solar luminosity is;

L/L_sun = (M/M_sun)^(3.5)

Where;

L is luminosity of the solar body

L_sun is luminosity of the sun

M is mass of the solar body

M_sun is mass of the sun

A) Thus;

For a 3 -solar-mass main-sequence star;

M = 3M_sun

Therefore;

L/L_sun = (3M_sun/M_sun)^(3.5)

L/L_sun = 3^(3.5)

L/L_sun = 46.765

L = 46.765L_sun

B) For a 9-solar-mass main-sequence star;

L/L_sun = (9M_sun/M_sun)^(3.5)

L/L_sun = 9^(3.5)

L/L_sun = 2187

L = 2187L_sun

C) We can see from answer A above that the luminosity of a 3 solar mass body is 46.765 times of the luminosity of sun. Since it's not so much bigger than the luminosity of sun, then it is easy to estimate.

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he tangent plane to the surface z= 53−x 2
−2y 2

at the point (3,2,6).

Answers

To explain the tangent plane to the surface, `z = 53 − x² − 2y²` at the point `(3, 2, 6)`, let us first determine the partial derivatives of `z` with respect to `x` and `y`.

Partial derivative of `z` with respect to `x`, `∂z/∂x = -2x`Partial derivative of `z` with respect to `y`, `∂z/∂y = -4y`Now, let's find the gradient vector `grad z` at `(3, 2, 6)` and the value of `z` at `(3, 2)`.gradient vector `grad z = (-2x, -4y, 1)`gradient vector `grad z = (-6, -8, 1)` at `(3, 2, 6)`.Value of `z` at `(3, 2)` is given by `z = 53 - 3² - 2(2)² = 39`.

Therefore, the equation of the tangent plane to the surface `

z = 53 − x² − 2y²` at `(3, 2, 6)` is:

`z - 6 = -6(x - 3) - 8(y - 2)`

which can be written as:`6x + 8y + z = 50`Thus, the equation of the tangent plane to the surface `z = 53 − x² − 2y²` at the point `(3, 2, 6)` is `6x + 8y + z = 50`.

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5. Red light waves have a longer wavelength than violet light waves.
What can you conclude from this?

Answers

Answer:

A few things.

Explanation:

You could say that the Red light waves have less energy compared to the violet light waves. You could also conclude that the frequency of the Red waves is longer than violet waves.

1.name three types of crystal structure with two example each
2.why is it that needle flow may float on clean water but when detergent is added to the water the needle sinks
3. Describe two application of surface tension n​

Answers

1. The three types of crystal structures are cubic, hexagonal, and tetragonal, 2.  A needle may float on clean water due to surface tension, and 3. Two applications of surface tension are Insect locomotion and capillary action.

1. Three types of crystal structures with two examples each are:

Cubic: NaCl (rock salt), diamond

Hexagonal: graphite, quartz

Tetragonal: zircon, tin dioxide

2. A needle may float on clean water due to surface tension. However, when detergent is added to the water, the surface tension is reduced, and the needle sinks due to the increased weight of the needle.

3. Two applications of surface tension are:

Insect locomotion: Insects such as water striders are able to walk on water due to the high surface tension of water. The insects use their weight and hydrophobic legs to create small depressions in the water surface, which increases the surface tension and allows them to stay afloat.

Capillary action: Capillary action is the ability of a liquid to flow in narrow spaces against the force of gravity. This phenomenon is due to the surface tension of the liquid, which causes it to rise in narrow tubes or porous materials. Capillary action is used in many applications, such as in wicking materials for candles, in paper chromatography for separating mixtures, and in plants for transporting water and nutrients from the roots to the leaves.

Therefore, NaCl, diamond, graphite, quartz, zircon, and tin dioxide are a few examples of the three main types of crystal structures: cubic, hexagonal, and tetragonal. Applications where liquids must flow in constrained places against the pull of gravity, such insect locomotion and capillary action, depend on surface tension. Surface tension allows a needle to float on water, but when detergent is added, it lowers surface tension and makes the needle heavier, which makes it sink.

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Which phenomenon supports the particle model of light?
A. The photoelectric effect
B. Constructive interference
C. Destructive interference
O D. Diffraction

Answers

Answer:

The photoelectric effect

The photoelectric effect supports the particle model of light. Hence option A is correct.

What is photoelectric effect ?

When a substance absorbs electromagnetic radiation, a process known as the photoelectric effect causes electrically charged particles to be discharged from or inside the material. When light strikes a metal plate, the action is frequently described as the ejection of electrons from the plate. In a more general definition, the substance may be solid, liquid, or gas, the radiant energy may take the form of infrared, visible, or ultraviolet light, X-rays, or gamma rays, and the discharged particles may include ions (electrically charged atoms or molecules) in addition to electrons. Because of the perplexing concerns it presented about the nature of light—particle versus wavelike behavior—that were eventually answered by Albert Einstein in 1905, the phenomenon was critically important in the development of modern physics.

Hence option A is correct.

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What is the primary rationale behind making space travel available to the general public beyond the profits it might generate?

A.
to build towards an eventual military-capable fleet

B.
to lower the cost of launching a mission into space

C.
to create a globally-run company with mission controls in multiple countries

D.
to sell plans to other private companies to build more efficient rockets

Answers

The primary rationale behind making space travel available to the general public is to lower the cost of launching a mission into space.

What is space travel?

Space travel refers to the missions which humans undertake travelling in spaceships into space in order to explore and understand space.

Space travel has become increasingly available to.the general public not just for astronauts.

This is to ensure that the cost of travelling to space is considerable lowered.

Therefore, primary rationale behind making space travel available to the general public is to lower the cost of launching a mission into space.

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Answer:

B. to lower the cost of launching a mission into space

Explanation:

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In its own reference frame, a box has the shape of a cube 1.5 m on a side. This box is loaded onto the flat floor of a spaceship and the spaceship then flies past us with a horizontal speed of 0.90 c.

Answers

Volume of the box observed at the given speed is 7.89 m³

Given:

Length of side of box = 1.5 m

horizontal speed = 0.90 c

To Find:

Volume of box

Solution: The amount of space occupied by a three-dimensional figure as measured in cubic units (as inches, quarts, or centimeters)

The edge length of the cube according to the stationary observer is calculated as

a' = a x √ 1 - v^2/c^2

a' = 1.5 x √ 1 - (0.9c)^2/c^2

a' = 1.5 x 0.19

a' = 0.285 m

The volume of the cube is calculated as follows;

V = A x a'

V = (a)^2 x a'

V = (1.5)^2 x 0.285

V = 7.89 m³

Thus, the volume of the box observed at the given speed is 7.89 m³

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