A person behind a moving siren will interpret the frequency of the siren as being

Answers

Answer 1

A person that is standing behind a moving siren will interpret the frequency to be lower compared to the person that would be standing in front of it. This is because the sound is now moving away from the person behind the siren and at this point the sound is juts lingering but, still very low.

Answer 2

Answer: Smaller than it actually is.

Explanation:

The person is behind the moving siren, and in this case, we assume that the siren is moving away from the man. By the Doppler effect, we know that a wave that comes from a source that is moving away will suffer a "redshift", which means that the wavelength increases a little bit, now, as you may know, the relation between the wavelength and the frequency comes by the equation:

velocity = wavelength/frequency.

If we keep the velocity constant (the velocity of the sound is the same independent of the frequency) then, if we have an increase in the wavelength, we must have a decrease in the frequency to maintain the velocity constant. From this, we can see that a redshift is also associated with a decrease in the frequency of the wave.

Then, the person behind the moving siren will interpret the frequency as being smaller than it actually is.


Related Questions

Which sound characteristic is not affected by the relative motion of an object

Answers

Answer: Quality is one of the characteristic of the sound which is not affected by the relative motion of an object.

Explanation: There are three characteristics of the sound which are pitch, loudness and quality.

Pitch depends on the frequency of the sound. The frequency varies in the case of the relative motion of the object.

Loudness depends on the amplitudes of the vibration. The amplitude also varies in the case of the relative motion of the object.

Quality is described by the word timber. The different sounds are produced by different sources. Therefore, It is not affected by the relative motion of the object.

Answer:

the answer is intensity on gradpoint

Explanation:

PLEASE HELP!!!!

1. A motorcycle with a mass of 200 kg can accelerate from 0 to 30 m/s in 3 seconds.

A. Assuming all of the force generated by the engine goes into acceleration of the motorcycle, how much force is the engine producing? Show your work.

B. What would happen if the coefficient of friction between the tire and the pavement increased greatly? Explain what would happen, including whether the acceleration of the motorcycle would stay the same, increase, or decrease, and tell why you think this is.

Answers

Use the equation, F= m(mass)x a (acceleration) to find the net force.

Answer:

a. 2000 N

b. acceleration of the motorcycle would decrease

Explanation:

a. acceleration = (final speed - initial speed)/time

a = (30 - 0)/3 = 10 m/(s^2)

Force = mass * acceleration

F = 200 * 10 = 2000 N

b. If the the coefficient of friction between the tire and the pavement increased greatly, part of the force generated by the engine would go to overcome this friction, then the force that goes into acceleration of the motorcycle would be less than case a, as a consequence, its acceleration would decrease (mass remains the same).

What is the acceleration of the 698 kg car that experiences a force of 2410 N?
A.) 0.290 m/s^2
B.) 3.92 m/s^2
C.) 3.45 m/s^2
D.) 0.360 m/s^2

Answers

Hey there!

If you're working with Newton's  Laws / Acceleration, the formula would mostly like look like this

[tex]F= MA[/tex] or you could say → [tex]A = \frac{F}{M}[/tex]

While the [tex]F[/tex] variable represents [tex]net[/tex]    [tex]forces[/tex] of your car  and the [tex]m[/tex] represents the mass of the car [tex]mass[/tex]

Denominator: [tex]2,410[/tex]

Numerator: [tex]698[/tex]

Your equation: [tex]\frac{2410}{698}[/tex] ( if you simplify that ←) then you have found your result!

[tex]Answer: \boxed{C) 3.45 m/s^2}[/tex]

Good luck on your assignment and enjoy your day!

~[tex]LoveYourselfFirst:)[/tex]


Which scenario best illustrates the principle of popular sovereignty?


A. The president is impeached and removed from office after he breaks the law.

B. Congress overrides a presidential veto of a law passing a new tax.

C. A senator holds town hall meetings to find out how citizens think she should vote on gun control legislation.

D. A Supreme Court justice is appointed by the president but is not approved by Congress.

Answers

C. A senator holds town hall meetings to find out how citizens think she should vote on gun control legislation.
Final answer:

The principle of popular sovereignty, which states that all political power comes from the people, is best represented by the scenario where a senator holds town hall meetings to decide on their vote for gun control legislation. This shows direct influence of people's will on government decisions.

Explanation:

The principle of popular sovereignty, which holds that all powers of

government are directly or indirectly derived from the people, is best illustrated by the scenario where 'A senator holds town hall meetings to find out how citizens think she should vote on gun control legislation' (Option C). This scenario illustrates popular sovereignty as it exemplifies how the people's will is directly influencing governmental decisions. The senator is seeking the opinion of the citizens she represents before making a decision, thereby extending the power to the people. In the other options, the actions are either reactions to misconduct or a decision made by office holders rather than a direct involvement or representation of the citizens who form the true sovereign base of the government.

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Describe the relationship between a compass and a magnet. Explain a demonstration you could do to show this relationship.

Answers

Magnet

In general the magnet is a special kind of metal (alloy), it attracts other metals or or magnet closer to it.

The earth is a magnet, because it attracts everything towards it.

compass:

A compass is needle, which is magnetized and mounted in measuring devices (like, pressure gauge, voltmeter, watt meter, etc.) such that it rotates freely. In the measuring devices the needle turns until one end points north and other south.

Demonstration:

Let us consider an ordinary bar magnet and a regular compass, Now move  the regular compass around the bar magnet (circling) , and observe it, what happen?

Yes, you will notice the needle rotates in the regular compass. When you  bring the compass  near the bar magnet, the needle of the compass points to the south and when the compass away from a bar magnet, the needle moves to the  north pole. So we conclude that the north end of the compass attracted to the south end of the magnet.  

Physics student is dropped. If they reach the floor at a speed of 3.2 m/s, from what height did they fall?

Answers

Answer:

0.52 m

Explanation:

The motion of the studnet is an accelerated motion, with constant acceleration [tex]g=9.8 m/s^2[/tex] (acceleration of gravity) toward the ground. We can find the distance covered by the student (which is equal to the height from which he falls) by using the SUVAT equation:

[tex]v^2 -u^2 = 2ad[/tex]

where

v = 3.2 m/s is the final speed

u = 0 is the initial speed

a = 9.8 m/s^2 is the acceleration

d is the distance covered

By re-arranging the equation, we find:

[tex]d=\frac{v^2-u^2}{2a}=\frac{(3.2 m/s)^2-0}{2(9.8 m/s^2)}=0.52 m[/tex]

Final answer:

The student fell from a height of 0.52 meters.

Explanation:

To calculate the height from which the physics student fell, we can use the formula for free fall. The initial velocity is 0 m/s as the student is dropped. The final velocity is given as 3.2 m/s. We can use the equation v² = u² + 2as, where v is the final velocity, u is the initial velocity, a is the acceleration due to gravity (approximately 9.8 m/s²), and s is the height. Rearranging the equation to solve for s, we get s = (v² - u²) / (2a). Plugging in the values, s = (3.2² - 0) / (2 * 9.8) = 0.52 meters. Therefore, the student fell from a height of 0.52 meters.

The motion of an orbiting satellite can be described by the same motion characteristic of any object in uniform circular motion. The centripetal force acting toward the center of the circle, in this case, is supplied by

Answers

The force exerted by Earth plays the role of centripetal force.


Answer:

A- GRAVITY

Explanation:

IF IS ON USATestprep

Which of the following describes an object in static equilibrium?
A.A platypus lies motionless on the sand.
B.A tuna speeds up from 2 m/s to 3 m/s
C.A dolphin jumps out of the water
D.A zebra shark swims at a constant speed of 8 m/s

Answers

A is the answer. If an object is at rest and is in a state of equilibrium, then we would say that the object is at static equilibrium. Static means stationary or at rest. A common physics lab is to hang an object by two or more strings and to measure the forces that are exerted at angles upon the object to support its weight.

Answer:

A).  A platypus lies motionless on the sand.

Explanation:

As we know that equilibrium is defined as the system in the state of ZERO net force or zero acceleration condition.

So equilibrium is of two types

1) Static equilibrium : Here object will remain at rest and do not have any type of motion.

2) Dynamic equilibrium : Here object may move with constant speed in same direction so it will not have any acceleration.

So here

B.A tuna speeds up from 2 m/s to 3 m/s

C.A dolphin jumps out of the water

Not in equilibrium as speed is changing so acceleration is not zero

D.A zebra shark swims at a constant speed of 8 m/s

It is in dynamic equilibrium case where speed is constant

so correct answer will be

A.A platypus lies motionless on the sand.

The students in a class had the following scores on a test:

76, 79, 81, 83, 85, 86, 89, 91, 93

The teacher wants to make a box-and-whisker plot of these data. Which value should he use for Q3?

A. 90
B. 93
C. 91
D. 85

Answers

Answer:

He should use 90 for Q3 ⇒ answer A

Explanation:

Lets explain the meaning of Q3

Q1 is the "middle" value in the first half of the data set

Q2 is the median value in the set

Q3 is the "middle" value in the second half of the data set

The data are

76 , 79 , 81 , 83 , 85 , 86 , 89 , 91 , 93

The set has nine numbers, then Q2 is the fifth one

Q2 = 85

The first half of the data are:

76 , 79 , 81 , 83

The second half of the data are:

86 , 89 , 91 , 93

They are four numbers, then the middle one is the average of the

second and the third numbers

Q3 = [tex]\frac{89+91}{2}=90[/tex]

He should use 90 for Q3

Answer: The answer to this question is A

Explanation:

The motion of an orbiting satellite can be described by the same motion characteristic of any object in uniform circular motion. The centripetal force acting toward the center of the circle, in this case, is supplied by

Answers

Gravity.  That's the only force between the two objects.

The potential difference across a resistor is 4.4 × 10 V. If the resistance of the resistor is 1.8 k?, how much current flows through the resistor?

Answers

Final answer:

The current flowing through the resistor is 2.44 x 10^-3 A.

Explanation:

To find the current flowing through the resistor, you can use Ohm's Law which states that the current (I) is equal to the potential difference (V) across the resistor divided by the resistance (R). In this case, the potential difference across the resistor is 4.4 × 10 V and the resistance is 1.8 kΩ (which can be converted to 1.8 x 10^3 Ω). Using Ohm's Law:

I = V / R = (4.4 x 10) / (1.8 x 10^3) = 2.44 x 10^-3 A

Therefore, the current flowing through the resistor is 2.44 x 10^-3 A.

A student is performing a double-slit experiment to determine the wavelength of a light source. She has measured the distance between dark bands and the distance between the slits and the screen. She still needs to measure:
Question 10 options:

A)

the speed of the light

B)

the width of each slit

C)

the distance between the slits

D)

the angle between the right bisector and the first minima

E)

the distance between the centre of the slits and the first minima

Answers

Answer:

lights need elewctricity

Explanation:

She still needs to measure the distance between the slits.

To determine the correct option among all the options, we need to know about fringe width in young's double slits experiment.

What is fringe width in young's double slits experiment?In young's double slits experiment, a fringe pattern is found on the screen. The separation between the consecutive bright and dark spot is known as the fringe width.How can we calculate fringe width?Fringe width can be found from the formula

(Wavelength × separation between screen and slits)/separation between the slits.

The above formula also gives a relation between the wavelength and fringe width. I.e. if we know the fringe width, separation between the screen and slits and the separation between the slits, we can determine the wavelength.

Thus, we can conclude that she needs the distance between the slits to determine the wavelength of light.

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Which experimental result led to the inference that atoms contained electrons?

A. Most alpha particles passed straight through a thing sheet of gold foil.

B. Th beam is a cathode ray tube was moved by an electric force.

C. Electrons were found to have higher energy the farther they are from the nucleus.

D. A few alpha particles bounced off a thin sheet of gold foil.

Answers

B. The beam in a cathode ray tube was moved by an electric force.

AtomsAn atom is the smallest unit of ordinary matter that forms a chemical element.The electron is a subatomic particle whose electric charge is negative one elementary charge. B. The beam in a cathode ray tube was moved by an electric force. This experimental result led to the inference that atoms contained electrons

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A crane uses a block and tackle to lift a 2200N flagstone to a height of 25m

a. How much work is done on the flagstone? I calculated this to be 55000J
c. What is the potential energy of the flagstone when it is 25m above the ground?

The second question I did not get. I need help on the formula and how to solve.

Answers

Remember the headline:  ENERGY IS NEVER CREATED OR DESTROYED

The amount of energy before and after are always equal.  All we ever do with energy is move it around from one place to another.

a). A crane can't create energy.  Lifting the same rock in 20 different ways always takes the same amount of work.  It doesn't matter whether one person picks the rock straight up, or 50 people get around it and lift it, or roll it up a ramp, or lift it with 16 pulleys and a mile of rope, or use a giant steam crane.

You want to lift a 2200N weight up 25m, you're going to have to supply

(2200N) x (25m) = 55,000 Joules of work.

c). YOU put out 55,000 Joules of energy.  It had to GO someplace. Where is it now ? ===>  It's the potential energy the rock has now, from being 25m higher than it was before.  That 55,000 Joules is NOW the potential energy  of the rock.

No energy was created or destroyed.  It just got moved around.  

55,000 Joules of energy began as nuclear energy in the core of the sun. Solar radiation carried it to the Earth. Plants absorbed it, and stored it as chemical energy.  You ... or a cow that you ate later ... ate the plants and took the chemical energy.  One way or the other, the chemical energy got stored in your blood and fat.  When you needed to put it out somewhere, you moved it into your muscles, and they converted it into mechanical energy.  Then you used the mechanical energy to exert forces.  Today, you used the original 55,000 joules to lift the flagstone, and NOW that energy is in the flagstone, 25 meters up off the ground !

The potential energy of the flagstone when it is 25m above the ground is  55000J.

The question concerns two aspects of physics: calculating the work done on an object and understanding the concept of potential energy. First, you correctly calculated the work done on the flagstone as 55000J. Now, for the potential energy of the flagstone when it is 25m above the ground, we use the formula for gravitational potential energy, which is P.E = mgh, where m is the mass in kilograms, g is the acceleration due to gravity (9.8 m/s2 on the surface of the Earth), and h is the height in meters.

To find the mass (m) of the flagstone, we use the relationship F = ma where F is the force (weight in this case, which is 2200N) and a is the acceleration due to gravity. This gives m = F/g. Substituting the values, we get the mass of the flagstone which allows us to calculate its potential energy at a height of 25m, using P.E = mgh.

It's important to understand that the potential energy of an object is directly related to its height above the ground and represents the energy stored within the object due to its position. In this case, assuming the flagstone is lifted vertically and no energy is lost, the potential energy at 25 meters would be equal to the work done to lift it, which is 55000J.

One of the factors that determines the ? of a capacitor is the frequency measured in hertz.

Answers

Answer:

Reactance

Explanation:

In an AC circuit, the capacitive reactance of a capacitor is given by:

[tex]X_C = \frac{1}{2 \pi f C}[/tex]

where

f is the frequency of the AC current

C is the capacitance of the capacitor

The reactance of the capacitor tells somehow the "resistance" of the capacitor to the passage of current through it. In fact:

- When the frequency of the AC current is zero (this means, we are in regime of DC current), the reactance becomes infinite, and this is true because the capacitor does not let the current pass through it)

- When the frequency of the AC current tends to infinite, the reactance becomes zero, and this is true because in this case the current changes direction so fast that the capacitor has not enough time to "block" the current, so the current almost no feels the presence of the capacitor.

A skydiver has reached the point where the force of air resistance equals the force of gravity. Until she opens her parachute, her acceleration will
A) remain at 0 m/s2.
B) continue increasing.
C) continue decreasing.
D) remain at 9.8 m/s2.

Answers

He answer is c because

Answer:

A) remain at 0 m/s2.

Explanation:

A skydiver has reached the point where the force of air resistance equals the force of gravity. Until she opens her parachute, her acceleration will

A) remain at 0 m/s2.

B) continue increasing.

C) continue decreasing.

D) remain at 9.8 m/s2.

resistive force is the force exerted by air on an object passing through it.

at the point point where the force of air resistance equals the force of gravity.we say the sky driver has reached the terminal speed

Terminal speed is the speed at which the force from the weight of the skydriver equals the force of air resistance, so the acceleration is zero. when the change in velocity is zero, then the acceleration becomes zero.

Which statement best describes how today’s scientific community views light?
Light behaves only like waves.
Light behaves only like particles
Light behaves like both waves and particles.

Answers

Light behaves like both waves and particles.

The correct answer is C) Light behaves like both waves and particles.

The statement that best describes how today’s scientific community views light is "Light behaves like both waves and particles."

Light comes from the Sun. Light travels at 186 miles per second. The distance between the Sun and the Earth is 93 million miles. So energy travels in waves of light scientists called electromagnetic energy, that is vibrating patterns of electricity and magnetism. It was Isaac Newton that said that light was a particle, but Christian Huygens said that it was a wave. But today’s scientific community views light is that light behaves like both waves and particles.

Which statement describes the vector plotted below?

A. The vector goes from (4,0) to (3-2)
B. The vector goes from (0,4) to (-2, 3)
C. The vector goes from (4,0) to (3,2)
D. The vector goes from (0,4) to (2,3)

Answers

A. The vector goes from (4,0) to (3-2)

(x,y)

Why isnt the atmosphere a closed system?

Answers

Gasses from the earth escape from higher realms of the atmosphere.

I would think it is the same as the other person

the atomic number is consider a unique atom and element identifier. Describe the associated subatomic particle, and how it can be used to identify the atom.

Answers

The associated subatomic particle is the proton. The proton is a subatomic particle located in the nucleus with a +1 charge and weight of 1amu. The number of protons is always consistent within an element. Ie Hydrogen will always have one proton and oxygen will always have 8 protons.

The atomic number is unique to each element and represents the number of protons in the nucleus of that atom. Therefore, it can be used to identify which element an atom belongs to.

The atomic number of an atom signifies the number of protons in the nucleus of that atom.

This number is unique to each element, making it a reliable identifier.

For example, Hydrogen has an atomic number of 1, which means it has 1 proton, while Helium has an atomic number of 2, indicating it has 2 protons.

No two elements share the same atomic number, hence, the atomic number can be used to identify an atom and determine which element it belongs to.

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A long distance running is running the 10000 m race. He runs the first 2000 m in 5 minutes, the next 5000 m in 14 minutes and the final 3000 meters in 7 minutes. What was the runner’s average speed?

Answers

This kind of problems are solved by dividing total distance with the total time necessary for him to get from the start to the finish line. In this case, total distance is 10000m and the total time is the sum of the times that were given (which is 26 minutes, or 1560 seconds). Dividing these two numbers, the average speed is:
[tex] \frac{1000m}{1560s} = 6.41 \frac{m}{s} [/tex]

A long distance runner is running the 10000 m race. He runs the first 2000 m in 5 minutes, the next 5000 m in 14 minutes and the final 3000 meters in 7 minutes so the runner’s average speed is 6.41 m/sec.

What is  average speed?

The average speed is the total distance travelled by the object in a particular time interval. The average speed is a scalar quantity. It is represented by the magnitude and does not have direction.

Divide the whole distance by the total time required for him to go from the starting point to the finishing point to solve this type of problem. The entire distance in this instance is ten thousand meters, and the total time is the sum of the timings that were stated (which is 26 minutes, or 1560 seconds). By dividing these two figures, the following is the average speed,

average speed = 1000÷1560

average speed =  6.41 m/sec

The runner’s average speed is 6.41 m/sec.

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A forensic odontologist examines the teeth of a skull and finds no baby teeth, no wisdom teeth, deep roots in the maxillary cupsids, and substantial tooth degeneration. Which skull fits that data?


A) male, age 50
B) male, age 15
C) female, age 30
D) female, age 20

Answers

Answer:A Male,age 50

Explanation:

From forensic odontology description of a Male at age 50 to have a skull characteristic of no milk teeth, deep rooted maxillary due to change in structure of the canine teeth and no wisdom tooth.

The skull fits that data, if the data is A forensic deontologist examines the teeth of a skull and finds no baby teeth, no wisdom teeth, deep roots in the maxillary cuspids, and substantial tooth degeneration to a male of age 50, so option A is correct.

What is a skull?

The skull's supporting bones. The skull is made up of facial bones and cranial bones, which surround and protect the brain (bones that form the eye sockets, nose, cheeks, jaw, and other parts of the face). The spinal cord and brain are joined by a gap at the base of the skull. Similar to the cranium.

According to forensic ontology, a male with a skull characteristic of age 50 had no milk teeth, a deep-rooted maxilla due to a change in the structure of the canines, and no wisdom teeth.

Therefore, the skull fits that data, if the data is A forensic deontologist examines the teeth of a skull and finds no baby teeth, no wisdom teeth, deep roots in the maxillary cuspids, and substantial tooth degeneration to a male of age 50.

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A plane has a cruising speed of 250 miles per hour when there is no wind. at this speed, the plane flew 300 miles with the wind in the same amount of time it flew 200 miles against the wind. find the speed of the wind.

Answers

V = speed of the plane with no wind = 250 mph

v = speed of wind  

consider the motion of the plane while traveling with the wind :

V' = speed of plane travelling in the direction of wind = V + v = 250 + v

d' = distance traveled = 300 miles  

t' = time taken to travel the distance  

time taken to travel the distance is given as  

t' = d'/V'

t' = 300/(250 + v)                                           eq-1

 

consider the motion of the plane while traveling against the wind :

V'' = speed of plane travelling against the direction of wind = V - v = 250 - v

d'' = distance traveled = 200 miles  

t'' = time taken to travel the distance  

time taken to travel the distance is given as  

t'' = d''/V''

t'' = 200/(250 - v)                                           eq-2

Given that :

time taken to travel 300 miles = time taken to travel 200 miles  

t' = t''

using eq-1  and eq-2

300/(250 + v)  = 200/(250 - v)

3/(250 + v)  = 2/(250 - v)

750 - 3 v = 500 + 2 v  

5 v = 250

v = 50 mph

Final answer:

By setting up an equation based on the given information and the concept of relative velocity, the speed of the wind can be found to be 50 mph.

Explanation:

You're looking for the speed of the wind, a classic problem that involves the concept of relative velocity. Here, the airplane's speed is impacted by the wind, either aiding its motion when it's flying with the wind, or hindering its motion when it's flying against the wind.

To calculate this, let's denote the speed of the wind as 'w'. When the plane is flying with the wind, its effective speed is (250 + w) mph, and when it's flying against the wind, its effective speed is (250 - w) mph.

Given the equation of speed which is the distance divided by time, we know that the time it takes to travel with the wind and the time it takes against the wind are the same from the question. Thus, distance over speed for both situations can be equated, i.e.:

300 / (250 + w) = 200 / (250 - w)

Solving that equation gives w = 50 mph.

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A 10-N force is applied horizontally on a box to move it 10 m across a frictionless surface. How much work was done to move the box?

Answers

You just multiply these two numbers, it's 100J

Work done to move the box is 100Joules.

What is work done?

The work done by any object is equal to the product of force applied and the distance moved by the object.

W =F.s

Given is the Force F =10N and distance moved s =10m

Then , the work done will be

W =10N x 10m

W =100J

Thus, the work done is 100J

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5. A truck left a diner at 1:00 p.M. And drove 360 km to Jersey City. The truck arrived at 2:00 p.M. And drove to Jersey City at an average 7:00 p.M. A car left the same dinner speed of 80 km/h. A. How fast did the truck travel?

Answers

Answer:

360 km/h

Explanation:

The truck left the diner at 1.00 pm and arrived at Jersey City at 2.00 pm - This means that the total time of the trip was 1 hour:

[tex]t = 1 h[/tex]

The distance covered between the diner and Jersey City was 360 km:

[tex]S=360 km[/tex]

So, the average speed of the truck is given by the distance covered divided by the time taken:

[tex]v=\frac{S}{t}=\frac{360 km}{1 h}=360 km/h[/tex]

Answer:

average speed of the truck will be 60 km/h

Explanation:

Truck started his Journey from diner at 1:00 PM

It reached to the Jersey City at 7:00 PM

so here we have total time interval of journey for the truck motion is given as

[tex]t = 7 - 1 = 6 hour[/tex]

total distance = 360 km

so here we know that average speed is defined as

[tex]v_{avg} = \frac{distance}{time}[/tex]

[tex]v_{avg} = \frac{360 km}{6 h}[/tex]

[tex]v_{avg} = 60 km/h[/tex]

so average speed of the truck will be 60 km/h

A student measured the specific heat of water to be 4.89 J/g · °C. The literature value of the specific heat of water is 4.18 J/g · °C. What was the student's percent error? %

Answers

4.89-4.18/4.18x100 = 0.71/4.18x100~1/6x100~16.7%

Answer:

16.98%

Explanation:

Given:

True value of specific heat of water = 4.18 J/g°C

Measured value of specific heat of water = 4.89 J/g°C

Percentage error can be calculated as follows:

[tex]error\% = \frac{|\text{True value-measured value}|}{\text{True value}}\times 100\% \\ e = \frac{|4.18-4.89|}{4.18}\times 100\% = 16.98\%[/tex]

You are 15.0m from the source of a sound. At that distance, you hear it at a sound level of 20.0dB. How close must you move to the sound to increase the sound level to 60dB?
I think its 45.0cm?

15.0cm
45.0cm
55.0cm
60.0cm
85.0cm

Answers

The answer is 45.0cm

Answer:

Explanation:

its 85 cm because it just is in meters it would be .8m  which would be decent distance to hear it

If an atom has two electrons outside of its nucleus, what number of protons and neutrons must be contained in the nucleus to result in a neutral atom

Answers

Final answer:

A neutral atom must contain an equal number of protons and electrons. To have a neutral charge with two electrons, an atom would need two protons — as such, it is likely a helium atom. The number of neutrons doesn't affect the charge and can vary.

Explanation:

Your question involves understanding the structure of an atom, particularly relating to its protons, neutrons, and electrons. An atom is made up of two sections: the nucleus, which consists of protons and neutrons, and a surrounding region that contains electrons. The number of both protons and electrons in an atom determines its atomic number, and this in turn identifies the element.

For an atom to be neutral, it should have an equal number of protons (positively charged particles) and electrons (negatively charged particles). So if an atom has two electrons outside its nucleus, it must contain two protons in its nucleus to be neutral. This corresponds with the element helium. The number of neutrons can vary without affecting the charge, so while the most common isotope of helium contains two neutrons, alternatives with one or no neutrons exist.

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you slide across home plate during baseball game. If you have a mass of 82 kg, and the coefficient of kinetic friction between you and the ground is 0.45, what is the force of friction acting on you?

Answers

m = mass of the person = 82 kg

g = acceleration due to gravity acting on the person = 9.8 m/s²

F = normal force by the surface on the person

f = kinetic frictional force acting on the person by the surface

μ = Coefficient of kinetic friction = 0.45

The normal force by the surface in upward direction balances the weight of the person in down direction , hence

F = mg                                          eq-1

kinetic frictional force on the person acting is given as

f = μ F

using eq-1

f = μ mg

inserting the values

f = (0.45) (82) (9.8)

f = 361.6 N

Answer:

362 rounded, a p e x users

Explanation:

Blaine steps onto a ski slope with an angle of 25°. There is a coefficient of kinetic friction of 0.15 between him and the ground. He has a mass of 65 kg.
Draw the free-body diagram showing the forces acting on Blaine.

Answers

θ = angle of the incline surface from the horizontal surface = 25⁰

μ = Coefficient of friction = 0.15

m = mass of the person = 65 kg

[tex]f_{k}[/tex] = kinetic frictional force acting on the person as he slides down

mg = weight of the person acting in down direction

[tex]F_{n}[/tex] = normal force by the incline surface on the person

the free body diagram showing the forces acting on the person is given as


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