Why is HIV difficult to treat? Check all that apply.

Answers

Answer 1

On top of this, HIV can even kill uninfected immune system cells, a phenomenon we are just beginning to understand. This is why HIV is named the “human immunodeficiency virus”. When the immune system is damaged, it is treacherously difficult for your body to fight against HIV or other opportunistic infections.

I HOPE IT HELPS 

Answer 2
Well there is not any answer choices so i'ma just tell you what i know about it.

Well the answer is:

A HIV uses the humans immune system to spread and multiply. The immune system is what tackles and kills viruses. With the HIV{ Which is a virus } using the virus killing system, its immune to what the immune system does to kill the HIV virus.

I hope this helps :D 
    

Related Questions

The speed of a wave is 65 m/sec ifthe wavelength of the wave is 0.8 meters what is the frequency of yhe wave

Answers

The basic relationship between frequency, wavelength and speed of a wave is given by
[tex]v=\lambda f[/tex]
where
v is the wave speed
f is its frequency
[tex]\lambda[/tex] is its wavelength

Re-arranging the equation and using the data of the problem, we find the frequency of the wave:
[tex]f= \frac{v}{\lambda}= \frac{65 m/s}{0.8 m}=81.3 Hz [/tex]

Which term is defined as the ratio of the speed of light in a vacuum to the speed of light in the material it is passing through?

A. index of refraction
B.index of reflection
C.angle of reflection
D.angle of incidence

Answers

The ratio of the speed of light in a vacuum to the
speed of light in the material it is passing through
is the index of refraction of that material. (A)

An object is attached to a vertical spring and bobs up and down between points a and
b. where is the object located when its kinetic energy is a minimum?

Answers

 it would be at either A or B. 

A cube shaped pool is half full of water. if the water is 3 feet deep, what is the volume when the water is all the way to the top?

Answers

When the pool is half full of water, the height of the water is 3 feet. This means that when the pool is completely full of water, the height of the water is 6 feet, and this corresponds to the length of the side of the cube-shaped pool. Therefore, the volume of the pool is the volume of a cube with side of 6 feet:
[tex]V=L^3 = (6 ft)^3 = 216 ft^3[/tex]

The volume of the cube-shaped pool when filled to the top is 27 cubic feet, as the cube has a side length of 3 feet.

To determine the volume of a cube-shaped pool when it is filled to the top, given that the water is currently 3 feet deep and at half capacity, we can apply the formula for the volume of a cube: Volume = length times width times height. Since the pool is half full, and given that the height of the water is 3 feet, it means that the length of a side of the cube is also 3 feet, as it is a cube shaped pool.

Therefore, the volume of the pool when full would be:
Volume = 3 feet times 3 feet times 3 feet = 27 cubic feet.

This calculated volume represents the pool's total capacity, assuming it's filled all the way to the top.

What happens to the efficiency of a ramp if friction is reduced?

Answers

it's efficiency will increase

a 4.0 kg object is acted upon by a 20 n force to the right and a 25 n force to the left. what is the magnitude of the objects accerlation

Answers

Netwon's second law states that the resultant of the forces acting on an object is equal to the product between the object mass and its acceleration:
[tex]\sum F = ma[/tex]

In this problem, the resultant of the forces is
[tex]\sum F = 25 N - 20 N = 5 N[/tex] (to the left)
so if we use the previous equation, we find the acceleration of the object:
[tex]a= \frac{\sum F}{m}= \frac{5 N}{4.0 kg}=1.25 m/s^2 [/tex]
and the acceleration is to the left, since the resultant of the forces is to the left.

What is planck's constant? choose 2 answers. a when the energy e of a photon is multiplied by its frequency f b 6.623 x 10-34 j.s c when the energy e of a photon is divided by its frequency f d 6.022 x 1023?

Answers

give me some answer choices and i will be happy to help

What kind of circuit is the one shown below?

Answers

Answer:

The given circuit diagram shows parallel circuit.

Explanation:

In this circuit diagram two bulbs are connected in parallel combination because current flows from the battery gets bifurcated at the junction. Thus, two bulbs are connected in parallel combination.

This parallel combinations of bulbs then connected to the battery given in the diagram. So, the combinations of bulbs are connected in parallel combinations with the battery.

Hence, both bulbs and battery are connected in parallel combinations with each other.

The circuit diagram shown in figure is parallel.


Answer:

The given circuit is in

Series circuit is the one in which there is more than one resistor.

Combination circuit is the one in which gates are used to form the circuit.

Open circuit is the one in which there is no battery.

Parallel circuit is one in which current is divided in different paths.

Here, we can see that we have a battery in the circuit that means it is closed circuit.

And Current is divided that means it is parallel combination.

Therefore, Option D is correct that is parallel.

What are the relative positions of the sun moon and earth during a full moon?

Answers

They are relatively straight or as straight as they are going to get during a given month that is when a full moon occurs.

The first artificial satellite to be launched into space was called _____________.

Answers

The first artificial Satallite to be lunch into space was called Sputnik I
The first artificial satellite to be launched was called Sputnik I

True or false canvassing is an approach used to justify leads!!!hurry

Answers

Yes that is true
Good luck! :)

Saturn's moon Mimas has an orbital period of 82,800 s at a distance of 1.87x10^8m from Saturn. Using m central m= (4n^2d^3/GT^2) 1 determine Saturn's mass.

Determine Saturn's mass by rearranging Newton's version of Kepler's Third Law.

Answers

5.65×10^26kg here you go

Answer:

[tex]5.65\times 10^{26} kg[/tex]

Explanation:

From Kepler's third law: Mass of the planet is given by:

[tex] M = \frac{4\pi ^2d^3}{GT^2}[/tex]

where, T is the time period of satellite revolving about the planet at a distance d. G is the gravitational constant = 6.67 × 10⁻¹¹ Nm²/kg²

Given, d = 1.87 × 10⁸ m

T = 82800 s

⇒[tex] M = \frac{4\pi ^2 (1.87\times 10^8)^3}{(6.67\times 10^{-11})(82800)^2}=5.65\times 10^{26} kg[/tex]

I would love to stretch a wire from our house to the Shop so I can 'call' my husband in for meals. The wire could be tightened to have a tension of 240N and a m/L 'weight' of 0.05kg/L. How long would it take for my pulse wave to travel to the Shop (24m) to ring a bell to indicate dinner time.

Answers

Note: I'm not sure what do you mean by "weight 0.05 kg/L". I assume it means the mass per unit of length, so it should be "0.05 kg/m".

Solution:
The fundamental frequency in a standing wave is given by
[tex]f= \frac{1}{2L} \sqrt{ \frac{T}{m/L} } [/tex]
where L is the length of the string, T the tension and m its mass. If  we plug the data of the problem into the equation, we find
[tex]f= \frac{1}{2 \cdot 24 m} \sqrt{ \frac{240 N}{0.05 kg/m} }=1.44 Hz [/tex]

The wavelength of the standing wave is instead twice the length of the string:
[tex]\lambda=2 L= 2 \cdot 24 m=48 m[/tex]

So the speed of the wave is
[tex]v=\lambda f = (48 m)(1.44 Hz)=69.1 m/s[/tex]

And the time the pulse takes to reach the shop is the distance covered divided by the speed:
[tex]t= \frac{L}{v}= \frac{24 m}{69.1 m/s}=0.35 s [/tex]

that which travels in waves that are not the same length is called

Answers

electromagnetic radiation

Difference between duracell and interstate golf cart batteries

Answers

Duracell batteries are an example of an electrochemical cell that is powered between the reaction of Magnesium and Zinc, occurring in basic conditions (alkaline battery). This type of reaction has a precise output of 1.5 volts, and looks like this:

Zn + 2MnO2 ➡️ ZnO + Mn2O3

It’s not rechargeable.


Golf Cart Batteries are an example of an electrochemical cell that is powered by the reaction between Lead and Sulfuric Acid (Lead-Acid battery). This type of reaction occurs on larger scales than an alkaline battery, and thus can generate a variety of powers depending on how many instruments are present within the battery. The reaction looks like this:

PbO2 + Pb + 2H2SO4 ➡️ 2PbSO4 + H2O

This is a rechargeable cell, but is rather prone to discharging by the environment and surroundings of the battery.

Final answer:

The Duracell and Interstate brands offer golf cart batteries with differences in performance, battery life, and maintenance needs. While Duracell is known for reliable and long-lasting power, Interstate emphasizes build quality and has a strong support network. The choice depends on user preferences and cart compatibility.

Explanation:

The Duracell and Interstate brands offer golf cart batteries, with distinctions that can influence a consumer's choice. Duracell batteries are known for their long-standing reputation in battery reliability and performance. They typically provide a range of batteries for various applications, including golf carts, with attention to long-lasting power and durability. On the other hand, Interstate batteries boast top-quality construction and are also very reliable, with a strong presence in the automotive battery market. Consumers may find differences in the specifications such as battery life, maintenance requirements, performance under varying conditions, and price between the two brands.

When choosing between Duracell and Interstate golf cart batteries, one should consider factors such as the type of battery (flooded lead-acid vs. AGM), capacity, cycle life, maintenance needs, and warranty offered by the manufacturer. Duracell generally offers a reliable and consistent performance, while Interstate emphasizes build quality and has a strong distribution network for customer support. Ultimately, the decision should be based on the specific needs and preferences of the user, as well as the compatibility with their golf cart model.

The four terrestrial planets are so called because they ?

Answers

Well, you need no look further than the word "terrestrial" If you notice the beginning of the word you notice that it consists mostly of the word "terra" Terra by definition is just land. Due to the solid land of these 4 planets, they're called terrestrial planets, the other 4 aren't made of land but of gas which is why they aren't classified as terrestrial planets.
Are similar to earth.

A person starts walking at a constant speed of 2.3 m/s in a straight line from point A to point B . At point B, she turns around and walks back to point A at a speed of 1.1 m/S. What was her average speed for the entire trip in m/s?

Answers

Final answer:

To calculate the average speed of the person's entire trip, you would use the formula of total distance divided by total time. In this scenario, the total distance is twice the distance from point A and B, and the total time is the sum of the times taken to walk from A to B and back.

Explanation:

The question is asking about the concept of average speed, which in physics is defined as the total distance travelled divided by the total time taken. In this case, the subject walks from point A to B and then retraces her steps back to A.

Since she's retracing her exact path, the total distance travelled is essentially twice the distance from A to B. The total time taken is the time taken to walk from A to B plus the time taken to walk back.

Firstly, we would determine the time taken for each leg of the journey by dividing the distance, say 'd', by her speed. However, since we don't have a specific distance given, we can use variables.

Let's say the time taken to travel from A to B is 't1' (d/2.3) and from B to A is 't2' (d/1.1).

Her total journey time 'T' is the sum of 't1' and 't2'. To get the average speed, we divide the total distance travelled (which is '2d') by 'T'. This would give us an equation that represents her average speed for the entire trip.

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A person starts walking at a constant speed of 2.3 m/s in a straight line from point A to point B. At point B she turns around and walks back to point A at a speed of 1.1 m/s

Let distance between A and B be s.

When she goes from A to B,

Time taken = Distance travelled/ Speed

= s/ 2.3

When she goes from B to A,

Time taken= Distance travelled/ Speed

= s/1.1

Total distance travelled= s+s= 2s

Total time taken:

= s/2.3+s/1.1

=1.1s+2.3s/1.1*2.3

=3.4s/2.53

Average speed= Total distance/ Total time

= 2s / (3.4s/2.53)

= 1.48 m/s

Therefore, the average speed of the whole journey is 1.48 m/s.

Many dogs have ticks and fleas in their fur. Ticks and fleas feed upon the blood of dogs to get nutrients is that competition, parasitism, mutualism or commensalism

Answers

paristism one animal benefits while harming the other

parasitism.

Understanding the Relationship Between Dogs, Ticks, and Fleas

The interaction of ticks and fleas feeding on the blood of dogs is an example of parasitism. In this relationship, the ticks and fleas are considered parasites, benefiting by consuming nutrients from the host, which in this case are the dogs. The host, the dogs, are harmed by this interaction because the parasites can cause discomfort and diseases, such as Lyme disease, which is transmitted by deer ticks. Unlike commensalism, where one organism benefits and the other is unaffected, parasitism negatively impacts the host. Moreover, this is different from mutualism, where both species benefit, and competition, where different species compete for the same resource.

In electromagnetic induction, does the direction of the magnet’s motion influence the direction of the induced current?

Answers

Yes, it does.

In fact, Faraday-Neumann-Lenz law can be written as
[tex]\epsilon = - \frac{\Delta \Phi}{\Delta t} [/tex]
where
[tex]\epsilon[/tex] is the induced emf
[tex]\Delta \Phi[/tex] is the magnetic flux variation
[tex]\Delta t[/tex] is the time interval

The negative sign in front of the formula gives the direction of the induced emf. In fact, the direction of the induced emf is such that it opposes to the change of magnetic flux. In other words, if the magnetic flux is increasing (for instance, when a magnet is moving toward a coil), the direction of the induced emf is such that it produces a magnetic field opposite to the original magnetic field; viceversa, when the magnetic flux is decreasing (for instance, when the magnet is moved away from the coil), the direction of the induced emf is such that it produces a magnetic field in the same direction of the original magnetic field.

what can you tell about the hydrogen/hydroxide ion concentration of the unknown liquid

Answers

The answer is  H+ low and OH- high.  The hydrogen/hydroxide ion concentration of the unknown liquid becomes  H+ low and OH- high.  

Practicing good human relations skills and having a positive attitude will

Answers

Have a positive effect on you as a human being. Your attitude will improve, your charisma will spread, and you will a better, more well rounded person.

If you practice good human relation skills then you will be more happy, be open, talk more, you will think more positive and a lot more. (these are just some examples)


Hope this will help someone! ;)

If one light bulb burns out in a string of lights, and the rest stay lit, it is reasonable to assume that the lights are wired in

Answers

The lights are wired in PARALLEL.

In fact, when the lights are connected in parallel, they are connected on separate branches to the source of voltage, so if one light bulb burns out, the other lights continue to work because the current continues to flow in the other branches of the circuit.

Vice-versa, if the light bulbs are connected in series, they are on the same branch This means that if one of them burns out, the circuit is open in that point, so the current cannot flow anymore and the other light bulbs turn off as well.

Answer:

Series

Explanation:

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1) Back on the beach the following day, Clay notices that the waves propelling towards the beach have a period of 6 s. If the wave crests are 15 m apart what is the speed at which they are traveling?

2) Barry Manilow is playing a concert. Having purchased your ticket so late you are sitting in the back row 184 m from the stage. If Barry hits a note on his keyboard that has a frequency of 400 Hz, how many full sound wavelengths are there between you and Barry? How much is the time delay between the time the note is played and the time you hear the note?

3) find the frequency of the ultrasonic wave emitted by a bat if it has a wavelength of 0.0085 m

4) A "wave" in a football stadium has a period of 2 seconds. If the crests between these " waves" measure 20 m, what is the speed at which the "wave" is traveling?

Answers

1) The speed of a wave is given by
[tex]v=\lambda f[/tex]
where
[tex]\lambda[/tex] is the wavelength
f is the frequency of the wave

For the wave in this problem, the distance between two successive crests is 15 m, this means its wavelength is [tex]\lambda=15 m[/tex] (because the wavelength is the distance between two successive crests). The period of the wave is 6 s, and the frequency is the reciprocal of the period:
[tex]f= \frac{1}{T}= \frac{1}{6 s}=0.167 Hz [/tex]

Therefore, the speed of the waves is
[tex]v= \lambda f=(15 m)(0.167 Hz)=2.51 m/s[/tex]


2) The speed of sound in air is [tex]v=343 m/s[/tex]. The frequency of the note is f=400 Hz, so we can find its wavelength by using the same relationship we used at point 1)
[tex]\lambda = \frac{v}{f}= \frac{343 m/s}{400 Hz}=0.86 m [/tex]

Since you are sitting at a distance of d=184 m from the source of the sound wave, the number of wavelengths between you and Barry is
[tex]N= \frac{d}{\lambda}= \frac{184 m}{0.86 m}=213.9 \sim 214 [/tex]
So, there are approximately 214 fully wavelengths between you and Barry.

2b) The time delay between the time the note is played and the time you hear it corresponds to the time the sound takes to arrive to your ear, therefore the distance divided by the speed of sound:
[tex]t= \frac{d}{v}= \frac{184 m}{343 m/s}=0.54 s [/tex]


3) The wavelength of the ultrasound wave is [tex]\lambda=0.0085 m[/tex] while its speed is the speed of sound: [tex]v=343 m/s[/tex], therefore its frequency is
[tex]f= \frac{v}{\lambda}= \frac{343 m/s}{0.0085 m}= 4.04 \cdot 10^4 Hz=40.4 kHz[/tex]

4) The period of the wave is T=2 s, so the frequency is
[tex]f= \frac{1}{2 s}=0.5 Hz [/tex]
and the spacing between the crests, which corresponds to the wavelength, is
[tex]\lambda=20 m[/tex]
Therefore, the speed of the wave is
[tex]v=\lambda f=(20 m)(0.5 Hz)=10 m/s[/tex]

If the concentration of sn2+ in the cathode compartment is 1.50 m and the cell generates an emf of 0.24 v , what is the concentration of pb2+ in the anode compartment?

Answers

Answer:

4.8*10^-8M

Explanation:

Final answer:

To determine the concentration of Pb2+ in the anode compartment, we can use the Nernst equation. By rearranging the Nernst equation and plugging in the given values, we can calculate the concentration of Pb2+ in the anode compartment.

Explanation:

To determine the concentration of Pb2+ in the anode compartment, we need to use the Nernst equation. The Nernst equation relates the cell potential to the concentration of ions in each compartment of the cell. It is given by: Ecell = E°cell - (0.0592/n) × log([Pb2+]/[Sn2+]), where Ecell is the cell potential, E°cell is the standard cell potential, [Pb2+] is the concentration of Pb2+ in the anode compartment, [Sn2+] is the concentration of Sn2+ in the cathode compartment, and n is the number of electrons transferred in the balanced redox reaction.

In this case, the cell potential is 0.24 V, [Sn2+] is 1.50 M, and n is 2 (since it is a Sn2+/Pb2+ redox reaction). Therefore, the equation becomes: 0.24 = E°cell - (0.0592/2) × log([Pb2+]/1.50). We can rearrange this equation to solve for [Pb2+]: [Pb2+] = (10^((E°cell - 0.24) × 2 / 0.0592)) × 1.50.

Building up electric charges on a Van de Graaff generator is an example of static

Answers

Static electricity is shown by building up electric charges on a Van de Graaff generator. Given statement is correct.

What is static electricity?

The imbalance of electric charges within or on the surface of a substance, or between materials, is known as static electricity.

Static electricity is generated by Van de Graaff generators. Static does not include acceleration, implying that it is stationary, which pertains to the formation of electric charges.

Static electricity is shown by building up electric charges on a Van de Graaff generator.

Hence,given statement is correct.

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You must raise the weight to a height of 10 meters. You cannot do it! Thinking back to what you have learned in science class, you set up the pulley you see here. How does using this pulley reduce the force needed to lift the weight 10 meters?

Answers

A single pulley has no advantage in reducing force. A single pulley only helps by changing direction of effort, pulling something from up to down feels easier then vice versa due to our muscles arrangement. However, the force needed is the same.
Meanwhile multiple pullies divide the tension. The lower pulley itself reduces the force into half so as to you feel a part of the tension while rest is suspended by the ceiling in the case in the diagram below.

Answer:

C.The amount of force stays the same; the direction changes. You pull down to move something up.

Explanation:

i got it right so trust me. if you dont ur loss

What is not a similarity between symbolic and analogical representations

Answers

Answer:

(1) Physical characteristics different.

(2) Difference in direct relation of mental picture with the real object.

Explanation:

There are the points which describe the non similarities between symbolic and analogical representation:

Analogical representation is the representation that can share some of its physical characteristics with an object whereas symbolic representation is the representation which does not corresponds to physical characteristics of an object.In analogical representation, mental picture have direct relation to the actual object whereas in symbolic representation, mental picture does not have direct relation with an object.

What is the power generated by a 45 kg person who walks up a flight of 12 stairs, each 30 cm high, in 12 s?
A.13.5 W
B.132.3 W
C.1,350 W
D.13,230 W

Answers

The total distance covered by the person is 12 times the height of each stair:
[tex]\Delta h=12 \cdot 30 cm=360 cm=3.60 m[/tex]

The work done by the person to climb the stairs is equal to the increase in his gravitational potential energy:
[tex]W= \Delta U=mg \Delta h=(45 kg)(9.81 m/s^2)(3.60 m)=1589.2 J[/tex]

And therefore, the power generated by the person in 12 s is the work done divided by the time taken:
[tex]P= \frac{W}{t}= \frac{1589.2 J}{12 s}=132.3 W [/tex]

So, the correct answer is B.

Which statement best compares conduction, convection, and radiation?

Convection and radiation transfer thermal energy through matter only, and conduction transfers thermal energy through both matter and empty space.

Radiation and conduction transfer thermal energy through matter only, and convection transfers thermal energy through both matter and empty space.

Convection and conduction transfer thermal energy through matter only, and radiation transfers thermal energy through both matter and empty space.

Conduction, convection, and radiation transfer thermal energy through both matter and empty space.

Answers

In conduction mode of heat transfer energy is transferred through medium molecules by their vibration about their own position. SO here medium particles remain at their own position while energy is transferred from one point to other

In convection mode of heat transfer the heat is carried by the medium molecules from one place to other. So here medium moles itself transfer with the energy.

In radiation mode heat energy is transferred through electromagnetic waves so there is no medium required for this.

So correct answer is

Convection and conduction transfer thermal energy through matter only, and radiation transfers thermal energy through both matter and empty space.

Convection and conduction transfer thermal energy through matter only, and radiation transfers thermal energy through both matter and empty space.

An electron is projected vertically upward with a speed of 1.70 ✕ 106 m/s into a uniform magnetic field of 0.320 t that is directed horizontally away from the observer. describe the electron's path in this field when viewed from above.

Answers

The path of the electron is 30.2μm

Data;

speed = 1.70x10^6 m/smagnetic field = 0.320TCharge of an electron = 1.60x10^-19 Cmass of an electron = 9.1x10^-31 kg

The radius or path of the electron

The path of the electron is circular and the radius can be calculated with the help of centripetal force.

[tex]qvB = \frac{mv^2}{r} \\qB = \frac{mv}{r}\\ r = \frac{mv}{qB} \\[/tex]

Let's substitute the value and solve.

[tex]r = \frac{mv}{qB}\\r = \frac{9.10*10^-^3^ * 1.70* 10^6}{(1.60*10^-^1^9 * 0.320}\\r = 3.02*10^-5\\r = 30.2 \mu m[/tex]

The path of the electron is 30.2μm

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Final answer:

The path of an electron projected upward into a horizontal magnetic field, when viewed from above, forms a circular motion due to the magnetic force acting as a centripetal force. The electron will circulate clockwise because of its negative charge.

Explanation:

An electron is projected vertically upward with a speed of 1.70 × 106 m/s into a uniform magnetic field of 0.320 T that is directed horizontally away from the observer. When an electron moves through a magnetic field perpendicular to the direction of the field lines, it experiences a magnetic force perpendicular to both the field and its velocity. This force acts as a centripetal force and causes the electron to move in a circular path.

Since the magnetic field is horizontal and the electron is projected upward, the magnetic force will cause the electron to circulate in a plane perpendicular to the magnetic field. When viewed from above, the path of the electron will be a circle.

It's important to note that the direction of the force and thus the direction of the circular motion depends on the fact that the electron has a negative charge. According to the right-hand rule, as the electron is projected upward, the force will be directed to the observer's left, causing the electron to circulate clockwise when viewed from above.

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