FILL IN THE BLANK pigment names are often derived from their source. for example the pigment that we call umber is named after________ question 1 options: a zinc extraction process the stone lapis lazuli the brown soil of umbria, italy the red soil of afghanistan none of the other answers

Answers

Answer 1

The correct option is c. Umbria, Italy. Pigment names are often derived from their source. For example the pigment that we call umber is named after Umbria, Italy.

A coloured substance that is entirely or almost entirely insoluble in water is called a pigment. Contrarily, dyes are usually soluble, at least initially, during their use. In general, pigments are frequently inorganic substances while dyes are frequently organic molecules. Umbers, ochres, and siennas are examples of naturally occurring inorganic pigments since they are extracted from the earth. The same names of pigments are also made synthetically. Titanium white, cobalt blue, and cadmium yellow/orange/red are more examples of manufactured inorganic pigments. Materials are given colour by adding pigments, which are chemicals. Through art, fashion, computer displays, and even health, this seemingly straightforward application has influenced how we see the world. Paints, inks, plastics, textiles, cosmetics, and food all include pigments.

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Pigment names are often derived from their source. For example the pigment that we call umber is named after ______.

a. a zinc extraction process

b. the stone lapis lazuli

c. Umbria, Italy

d. Afghanistan

e. none of these


Related Questions

If your accelerator is stuck while driving what do you do first

Answers

If your accelerator gets stuck down, do the following:

Shift to neutral.

Apply the brakes.

Keep your eyes on the road and look for a way out.

Warn other drivers by blinking and flashing your hazard lights.

Try to drive the car safely off the road.

Turn off the ignition when you no longer need to change direction.

Answer:Kick the accelerator to dislodge it

Explanation:

Never reach down with your hand while driving, it's not safe.

A horizontal poly crystalline solar panel module has to be investigated by natural cooling. For crystal silicon, the thermal coefficient approximately 0.0045/K is used. Investigate the effect of air velocity on the cooling performance of PV panels at 0-5 m/s air velocities, 25-40 ºC ambient temperatures, and 400-1000 W/ m2 solar radiation

Answers

Solution :

It is given that :

Thermal coefficient = 0.0045/K

Ambient temperature, \($T_a = 25 - 40^\circ$\)

air velocity, v = 0-5 m/s

Solar radiation, \($G= 400-100 \ W/m^2$\)

\($P=50 \ W$\)

Model calculations :

Cell temperature (\($T_c$\))

\($T_c = T_a + \left(\frac{0.25}{5.7+3.8 \ v_w}\right) G$\)

where \($ v_w - v_a = $\) wind speed / air speed

∴ \($T_c = 2 \pi + \left(\frac{0.25}{5.7+3.8 \times 1}\right) \times 400$\)

   \($T_c = 35.526 ^\circ$\)

\($\Delta T = T_c -25$\)

      = 35.526 - 25

      = 10.526 K

Thermal coefficient = 0.0045 x 10.526

                                = 0.04737

Pv power = \($(1 -C_T) \times P \times \frac{G}{1000}$\)

                \($=(1 -0.04737) \times 50 \times \frac{400}{1000}$\)

                = 17.0526 W

1. Plot the normal and shear components of stress on the fictitious element relative to (1) Cartesian coordinator system, (2) a cylindrical coordinator system, and (3) a spherical coordinate system. Note: Your drawing should be by hand and in a 3D manner. Write the stress notation in matrix form for three coordinator systems. Explain the biological motivations for using the above three coordinator systems.

Answers

Answer:

d

Explanation:

Sketch the possible display (ignoring all amplitudes that may be viewed on a spectrum analyzer when viewing a 40 kHz square waveform). Use a Frequency range of 0 - 400 kHz. (3) 3.2 Sketch the possible display (ignoring all amplitudes that may be viewed on a spectrum analyzer when viewing a 40 kHz sine waveform). Use a Frequency range of 0 - 400 kHz. (3) 3.3 The input frequencies to a mixer are 900 kHz and 150 kHz. Calculate the two possible IF frequencies (in MHz) for the next stage. (4) 3.4 Sketch the basic spectrum analyzer diagram based on the swept-receiver design. (6)

Answers

3.1 Sketch the possible display (ignoring all amplitudes that may be viewed on a spectrum analyzer when viewing a 40 kHz square waveform). Use a Frequency range of 0 - 400 kHz. A square wave is a waveform with sharp corners, whereas a sine wave is a waveform with no sharp corners.

A square wave of frequency f has odd-numbered harmonics with amplitude proportional to 1/n. The higher the order of the harmonics, the lower the amplitude, but the number of harmonics is infinite. The frequency range of the possible display when viewing a 40 kHz square waveform on a spectrum analyzer is 0 to 400 kHz. A rectangular waveform, a square wave is composed of sine wave components of decreasing amplitudes and increasing frequencies. Hence, the spectrum analyzer display for this waveform has peaks at odd multiples of the fundamental frequency.

3.2 Sketch the possible display (ignoring all amplitudes that may be viewed on a spectrum analyzer when viewing a 40 kHz sine waveform). Use a Frequency range of 0 - 400 kHz.A sine wave is a waveform that oscillates in a simple harmonic motion over time. A sinusoidal waveform is another name for it. When viewing a 40 kHz sine waveform on a spectrum analyzer, the possible display will only show a single peak at the frequency of 40 kHz since the sine waveform does not have any harmonics like a square wave. The frequency range of the possible display when viewing a 40 kHz sine waveform on a spectrum analyzer is 0 to 400 kHz.

3.3 The input frequencies to a mixer are 900 kHz and 150 kHz. Calculate the two possible IF frequencies (in MHz) for the next stage.The Intermediate Frequency (IF) frequency is the output frequency of a mixer stage. When two signals with input frequencies f1 and f2 are mixed, the IF frequency can be calculated as IF = f1 - f2 or IF = f2 - f1. In this scenario, the two possible IF frequencies are (900 - 150) = 750 kHz and (150 - 900) = -750 kHz or 0.75 MHz and -0.75 MHz.

3.4 Sketch the basic spectrum analyzer diagram based on the swept-receiver design.A swept-receiver spectrum analyzer uses a local oscillator to mix with the input signal in a mixer. The resultant signal is fed to a band-pass filter (BPF) that selects a particular frequency band from the mixed signal. The output of the filter is passed through a detector that converts the signal to an amplitude that is proportional to the original signal's power. The detector's output is then fed to a vertical amplifier that amplifies the signal and drives a CRT display, which shows the frequency spectrum. The horizontal amplifier on the CRT display is connected to the local oscillator, resulting in a frequency scale on the display. The basic spectrum analyzer diagram based on the swept-receiver design can be sketched by taking into consideration all of the above components.

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The two structural members, one of which is in tension and the other in compression, exert the indicated forces on joint o. determine the magnitude r of the resultant r of the two forces and the angle θ which r makes with the positive x axis (measured counterclockwise from the x axis).

Answers

X axis is y axis and x
We're going to remedy it with the parallelogram law.
\alpha = one hundred eighty - 30 - 70 = eighty degrees
R = sqrt(2^2 + 3^2 - 2(2)(three) cos(80)
R = three.30 kN, we can conclude now that the value of the ensuing of R is 3.30 kN

sin \beta /3 = sin(eighty)/three.304 = 63.4 stages

3.3 kN
180 + 33.4 = 213.4 degrees
63.4 - 30 = 33.4

A Si p-n junction with cross-sectional area A = 0. 001 cm2 is formed with Na-10^15 cm-3 and Nd= 10^20 cm-3. Calculate: (a) contact potential Vo. + (b) Space-charge width at equilibrium (zero bias) (c) Current with forward bias of 0. 7 V. Assume that the current is diffusion dominated AssumeHa-1500 cm2/Vs, bp- 200 cm2/V·s, andTg = τrho = 2. 5 ms. Which carries most of the current, electrons or holes, and why? If you wanted to double the electron current, what should you do?

Answers

At 0.7V forward bias, I ≈ 3.3 mA. Holes carry most of the current due to higher doping in the n-side.

How to solve

(a) The contact potential Vo can be determined using the formula Vo = (kT/q) * ln(Na * Nd / ni^2), where k is the Boltzmann constant, T is the temperature, q is the elementary charge, and ni is the intrinsic carrier concentration.

Assuming room temperature (T = 300K), Vo ≈ 0.86V.

(b) The space-charge width W can be calculated using W = sqrt((2 * ε * Vo) / q * (Na + Nd) / (Na * Nd)), where ε is the permittivity of silicon. W ≈ 6.67 x 10^-6 cm.

(c) For forward bias, use the diode equation: I = A * q * (Dp / Lp) * ni^2 / Na * (exp(qV / kT) - 1), where Dp and Lp are hole diffusivity and diffusion length.

At 0.7V forward bias, I ≈ 3.3 mA. Holes carry most of the current due to higher doping in the n-side.

To double the electron current, you can increase the doping concentration of the p-side (Na).

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A 32-byte, 2-way set-associative cache (using write-back with write allocation and LRU replacement policies) with 8-byte blocks receives requests for the following 8-bit addresses (represented in binary): 0000 0100, 0000 0101, 0110 1000, 1100 1000, 0110 1000, 1101 1101, 0100 0101, 0000 0100, 1100 1000 (a) Draw the detailed cache block diagram. Specify which parts of the 8-bit physical address are used for tag, set index, and byte offset. (6) In your cache, what will be the tags at the end of the sequence? Assume that cache is initially empty. Determine hit ratio and show the final states of the cache (including tag bits and valid bit etc.). Show all your work to get full credit (6) Determine the total size of the cache in bits including the tag and other bits (valid, dirty, LRU).

Answers

As soon as you step foot on our campus in lovely Columbia, South Carolina, you'll understand what it means to be surrounded by kind and enthusiastic academics and an engaging and encouraging community culture.

How does LRU function?

When the available space is full, the Least Recently Used (LRU) algorithm updates the cache. By deleting the least recently used values, it enables us to obtain the values more quickly. LRU cache is a frequently asked question that is typically asked directly but may occasionally be asked in a different way.

Why does LRU outperform FIFO?

The most recently used items are retained by LRU. FIFO only stores items that have just been added. Because there are typically items put to memory only once and never used again, as well as those introduced and utilized frequently, LRU is normally more efficient.

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What major financial flop led to the end of the Sega Dreamcast and ultimately caused Sega to stop making game consoles altogether?

1: The founder and CEO of Sega was found to be secretly skimming money off of the top of profits, leading to widespread distrust by the public and a sharp decline in sales until they ultimately had to shut down due to making no profit.

2: A small group of employees found a way to drain all of the Sega Corporation funding accounts and flee the country with all of the money, never to be heard from again.

3: A game called Shenmue, that cost more than $70 million to make, meant that everyone who owned a Dreamcast needed to buy two copies of the game just for Sega to make back the money they had spent to develop it-which didn't happen.

4: A game called Katamari Damacy that carried a virus that would infect any console that it was played on forced Sega to spend millions of dollars in refunds and bankrupted the company.​

Answers

Answer:

The major financial flop that led to the end of the Sega Dreamcast and ultimately caused Sega to stop making game consoles altogether is:

3: A game called Shenmue, that cost more than $70 million to make, meant that everyone who owned a Dreamcast needed to buy two copies of the game just for Sega to make back the money they had spent to develop it-which didn't happen.

Explanation:

Shenmue, released on December 29, 1999, was created for Dreamcast by Suzuki.  It was widely described as the most expensive video game ever produced.  It had an estimated production and marketing cost of between US$47 and $70 million, according to the latest available data.

fraternity house with 40 occupants is considered a Group pancy. a. R-1 c. R-3 Reference b. R-2 d.

Answers

A fraternity house with 40 occupants is considered a Group A fraternity house with 40 occupants is considered a Group R-2 occupancy. The correct option is B.

What is a fraternity house?

Fraternity and sorority housing in North America primarily refers to the residences or communities where members of these organizations live and socialize. Fraternity and sorority housing can serve as a place to live as well as a place to host social events, meetings, and community-oriented activities.

When there are 40 residents living in a fraternity house, it is referred to as a Group R-2 occupancy. Therefore, based on the information, the correct option is B.

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A single phase, 50-KVA, 2400-240-volt, 60 Hz distribution transformer has the following parameters: •
Resistance of the 2400-volt winding Ri=0.75 ohm
Resistance of the 240-volt winding R=0.0075 ohm
Leakage reactance of the 2400-volt winding X:=1 ohm
Leakage reactance of the 240-volt winding X2=0.01 ohm
Core loss resistance on the 2400 side Rc=733.5 ohms
Magnetizing reactance on the 2400 side X=4890 ohms
a. Draw the equivalent circuit referred to the high voltage side and referred to the low- voltage side. Label the impedances numerically.
b. The transformer is used as a step-down transformer at the load end of a feeder having impedance of (0.5+j2.0) ohms. Determine the voltage V. at the ending end of the feeder when the transformer delivers rated load at rated secondary voltage and 0.8 laggin power factor. Neglect the "exciting current" l. of the transformer (this is the current into the parallel Rc/jXm combination), which is another way of saying that you should use what we called in class the "approximate circuit #2).

Answers

Answer:

B) voltage at the sending end of the feeder = 2483.66 v

Explanation:

attached below is the the equivalent circuits and the remaining solution  for option A

B) voltage = 2400 v

   I  = \(\frac{50*10^3}{2400}\)  =  20.83 A

calculate voltage at sending end ( Vs )

Vs = 2400 +  20.83 ∠ -cos^-1 (0.8) ( 0.75*2 + 0.5 + j 2 + j2 )

hence Vs = 2483.66 ∠ 0.961

therefore voltage at the sending end = 2483.66 v

A single phase, 50-KVA, 2400-240-volt, 60 Hz distribution transformer has the following parameters: Resistance
A single phase, 50-KVA, 2400-240-volt, 60 Hz distribution transformer has the following parameters: Resistance

Answer every question of this quiz
Please note: you can answer each question only once.
Which number shows the intake valve?
OK

Answer every question of this quizPlease note: you can answer each question only once.Which number shows

Answers

I'd say number 4, number 3 looks like an exhaust valve

Which Finance jobs can someone pursue with only a high school diploma? Check all that apply.
PLS HURRY IM TIMED
Tax Preparer
Treasurer
Actuary
Teller
Loan Officer
Quantitative Analyst

Answers

Bank tellers, bookkeepers, tax examiners, auditing clerks, cashiers, and bill collectors are among the occupations that demand a high school graduation or prior job experience. Thus option A,D is correct.

What Finance jobs pursue with only a high school diploma?

Depending on your field of study, degree type, and experience, you can obtain a number of entry-level positions with a finance degree. Some entry-level options include junior tax accountant, stockbroker, financial analyst, personal finance advisor, and banking assistant.

For entry-level positions in many financial careers, a bachelor's degree is necessary, and for management-level positions, a master's degree.

Therefore, Tax Preparer and Teller are included in Finance jobs can someone pursue with only a high school diploma.

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Musk is working on developing reusable rockets in order to further us as a space-faring civilization. Given his life dedication to energy production, conservation, and efficiency, can you think of any other reasons that Musk may want to expand our ability to exist on other planets and in space?

Answers

Answer:

exploration

Explanation:

Other than the scientific reasons listed in the question, one of the main reasons why people all over the world are pursuing this endeavor is exploration. As human beings, we love to imagine new worlds and life-forms that we have never seen before. This fuels our need for exploration. Scientists throughout generations have dedicated their entire lives to learning and creating newer and better technology in order for humans to take that next step in exploring and learning the secrets of the universe.

A series resistive circuit has two resistors. R1 is 570 ohms and R2 is 560 ohms.
The total circuit current is 17.9 milliamps.
Find the voltage drop across R1 in volts.

Answers

Answer:

10.203 Volts

Explanation:

For this problem, we need to understand that a series resistive circuit is simply a circuit with some type of voltage source and some resistors, in this case, R1 and R2.

First, we need to find the voltage in the circuit.  To do this, we need to find the total resistance of the circuit.  When two resistors are in series, you sum the resistance.  So we can say the following:

R_Total = R1 + R2

R_Total = 570 Ω + 560 Ω

R_Total = 1130 Ω

Now that we have R_Total for the circuit, we can find the voltage of the circuit by using Ohm's law, V = IR.

V_Total = I_Total * R_Total

V_Total = 17.9 mA * 1130 Ω

V_Total = 20.227 V

Now that we have V_Total, we can find the voltage drop across each resistor by using Ohm's law once more.  Note, that since our circuit is series, both resistors will have the same current (I.e., I_Total = I_1 = I_2).

V_Total = V_1 + V_2

V_Total = V_1 + I_2*R2

V_Total - I_2*R2 = V_1

20.227 V - (17.9 mA * 560 Ω) = V_1

20.227 V - (10.024 V) = V_1

10.203 V = V_1

Hence, the voltage drop across R1 is 10.203 Volts.

Cheers.

The Collatz algorithm is defined as follows. Input: n (a positive integer) while n 6= 1 do if n is even then n = n/2 else n = 3n + 1 It is not known whether there are any n’s for which the Collatz algorithm does not halt. Let L = {nb | nb is the binary representation of a positive integer n for which the Collatz algorithm does not halt}. Answer with "yes", "no", or "unknown". (a) Is L regular? (b) Is L Turing recognizable? (c) Is L¯ (the complement of L) Turing recognizable?

Answers

The Collatz algorithm is defined as follows: Input: n (a positive integer) while n 6= 1 do if n is even then n = n/2 else n = 3n + 1 It is not known whether there are any n’s for which the Collatz algorithm does not halt. Let L = {nb | nb be the binary representation of a positive integer n for which the Collatz algorithm does not halt}.


(a) Is L regular?
Answer: Unknown
The regularity of L (the set of binary representations of positive integers for which the Collatz algorithm does not halt) is unknown. This is because it is not known whether there are any numbers for which the Collatz algorithm does not halt.

(b) Is L Turing recognizable?
Answer: Yes
L is Turing recognizable because, given a positive integer n, you can design a Turing machine that simulates the Collatz algorithm. If the algorithm does not halt, the Turing machine will keep running indefinitely, and if the algorithm halts, the Turing machine will also halt, recognizing the input as a member of L.

(c) Is L¯ (the complement of L) Turing recognizable?
Answer: Yes
L¯ (the complement of L) is also Turing recognizable. You can design a Turing machine that simulates the Collatz algorithm for a given positive integer n. If the algorithm halts, the Turing machine will also halt, recognizing the input as a member of L¯. If the algorithm does not halt, the Turing machine will keep running indefinitely, not recognizing the input as a member of L¯.

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Explain the concept quality

Answers

Answer:

Hey there!

Explanation:

This is your answer....

The standard of something as measured against other things of a similar kind; the degree of excellence of something.

OR

Quality engineering is the discipline of engineering concerned with the principles and practice of product and service quality assurance and control. In software development, it is the management, development, operation and maintenance of IT systems and enterprise architectures with a high quality standard.

Hope it helps!

Brainliest pls!

Have a good day!^^

1) Metals are good conductors of both heat and electricity due toA) similar thermal and electrical conductive properties.B) looseness of outer electrons in metal atoms.C) relatively high densities of metals.D) high elasticity of metals.E) both transferring energy easily.

Answers

Metals are good conductors of both heat and electricity due to: Option B - looseness of outer electrons in metal atoms. Option B is the correct answer.

Metals have the ability to conduct heat and electricity effectively because of the looseness of their outer electrons. In metallic bonding, the valence electrons of metal atoms are not strongly bound to individual atoms but are free to move within the metal lattice. These delocalized electrons can easily transfer thermal energy (heat) and electrical energy (electricity) throughout the metal structure. The mobility of the electrons allows for efficient conduction of both forms of energy.

Therefore, option B is the correct answer. Options A, C, D, and E do not accurately explain the primary reason for the good conductivity of metals.

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One Of The National Academy Of Engineering Grand Challenges For Engineering Is Manage The Nitrogen Cycle. It Is

Answers

One of the National Academy of Engineering's Grand Challenges for Engineering is to manage the nitrogen cycle.

This challenge aims to develop sustainable methods for efficiently using nitrogen in agricultural and industrial processes, while minimizing negative environmental impacts.

The nitrogen cycle is a natural process that involves the conversion of nitrogen between different forms in the environment. However, human activities, such as the excessive use of nitrogen-based fertilizers and the burning of fossil fuels, have disrupted this cycle and led to environmental problems.

Managing the nitrogen cycle requires finding solutions to reduce nitrogen pollution, improve nitrogen use efficiency in agriculture, develop sustainable practices for wastewater treatment, and minimize nitrogen emissions from industrial processes.

By addressing this grand challenge, engineers aim to develop innovative technologies, policies, and practices that can help restore balance to the nitrogen cycle, protect ecosystems, and ensure the sustainable use of nitrogen resources.

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what letter of the hcpcs level ii codes set represents durable medical equipment?

Answers

The letter of the HCPCS Level II codes set that represents durable medical equipment is the letter "E".

HCPCS Level II codes are used to identify products, supplies, and services not covered by CPT codes, such as durable medical equipment, prosthetics, orthotics, and supplies. The codes in the E series of HCPCS Level II codes specifically relate to durable medical equipment, including items such as wheelchairs, oxygen equipment, hospital beds, and walkers.

Durable medical equipment is defined as equipment that is primarily used for a medical purpose, can withstand repeated use, and is appropriate for use in the home. The E codes in the HCPCS Level II codes set are used by healthcare providers and suppliers to bill Medicare and other insurance programs for durable medical equipment and related services.

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An airplane is flying at a standard altitude of 5 km. A pitot tube mounted at the nose measures a stagnation pressure of 0. 957 bar. Assume the airplane is flying at high subsonic speed and flow is compressible.


Required:

Calculate the velocity of airplane

Answers

The velocity of airplane will be 317.4 m/s.

The velocity of an airplane flying at a standard altitude of 5 km can be calculated using the stagnation pressure of the pitot tube mounted at the nose.

The stagnation pressure of the pitot tube was measured at 0.957 bar. Assuming the airplane is flying at high subsonic speed and flow is compressible, the velocity of the airplane can be calculated using the equation:

Velocity (v) = sqrt[2*(pstag-pamb)/ρ]

Where pstag is the stagnation pressure (0.957 bar), pamb is the ambient pressure (0.1013 bar at 5 km altitude), and ρ is the air density (1.225 kg/m3).

Plugging in the given values, the velocity of the airplane is 317.4 m/s.

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What is the hardest part of thermodynamics?

Answers

Answer:

I would say that the hardest part about learning Thermodynamics is the generality and abstractness of it all.

Explanation:

Calculate the buoyancy force acting on a partially immersed boat (V=5.0 m³). The density of water is 1000 kg/m³. Express your answer in both SI and U.S. Customary units.

Answers

CALCULATION :

SI units:
Buoyancy force = (Volume of water displaced) x (Density of water) x (Acceleration due to gravity)
Buoyancy force = (5.0 m³) x (1000 kg/m³) x (9.81 m/s²)
Buoyancy force = 49,050 N

U.S. Customary units:
Buoyancy force = (Volume of water displaced) x (Density of water) x (Acceleration due to gravity)
Buoyancy Force = (5.0 m³) x (62.4 lb/ft³) x (32.17 ft/s²)
Buoyancy Force = 11,230 lb

What is force ?

A force is anything that pushes or it pulls an object. The objects' interactions with one another are also what causes push and pull. Pressure can also be represented using terms like extend and compress.

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What is wrong with the following code?
6
print (what is your name?)

Answers

Answer:

pakipic na lang po question nyo para masagot po

Explanation:

please po di ko masyado gets po e

it is simple the title name after all it is just asking your name

a low-pass filter has a cutoff frequency of 1.23 khz. determine the bandwidth of the filter. 644 hz 2.46 khz 1.23 khz not enough information is given.

Answers

The range of frequencies that can pass through a low-pass filter is known as its bandwidth.

What is bandwidth ?The range of frequencies that can pass through a low-pass filter is known as its bandwidth. The cutoff frequency and the kind of filter play a role in determining this range.The cutoff frequency for a low-pass filter is the frequency at which the filter starts to weaken the signal.The distance between the cutoff frequency and the lowest frequency that is permitted to pass is hence the filter's bandwidth. Since the cutoff frequency in this situation is 1.23 kHz, the filter's bandwidth would be the distance between that frequency and the lowest frequency that can pass.However, it is impossible to calculate the filter's bandwidth because the lowest frequency is not specified.

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In passenger vehicles the battery is almost alway found _____

Answers

In passenger vehicles, the battery is almost always found in the engine compartment.

What are car batteries?

A rechargeable battery used to start an automobile is known as an automotive battery or car battery. The alternate plates of a lead alloy grid filled with sponge lead (cathode plates) or coated with lead dioxide make up each cell of a lead storage battery (anode).

Under the hood of a car is often where the batteries are. The starting battery can, however, also be put in other locations in contemporary automobiles.

Therefore, the battery is nearly always located in the engine compartment of passenger cars.

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The duplex receptacle outlets in the Drugstore basement storage area are to be connected to which branch circuit(s)

Answers

The duplex receptacle outlets in the Drugstore basement storage area should be connected to the general-purpose branch circuit(s).

Explanation: The general-purpose branch circuit is commonly used for outlets in residential or commercial areas where standard electrical appliances and devices are connected. The duplex receptacle outlets in the Drugstore basement storage area are likely intended for general-purpose use, such as powering various electrical devices or providing power for storage-related equipment. Therefore, they should be connected to the general-purpose branch circuit(s) designated for that area.

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If the block D weighs 1.5 kN and block B weighs 1.375 kN, determine the required weight of block C and the angle o for equilibrium. 130 A B C D​

If the block D weighs 1.5 kN and block B weighs 1.375 kN, determine the required weight of block C and

Answers

Answer:

the right answer is d and b

Breaking on may cause a loss of control

Answers

Answer:

Is there supposed to be a picture...try asking question again

Brainiest 4 Brainiest? (b4b)

Answers

huhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhhh

Answer:

?

Explanation:

what do you mean

3 4/5÷2/5 as a fraction

Answers

Answer:

9 1/2

Explanation:

3 4/5 is 3.8

2/5 is 0.4

divide 3.8 by 0.4 you get 9.5 which is 9 1/2 in a fraction

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