An office heater puts out 2050 btus of energy in the form of heat per hour. given that 1 btus =1.055 kj, how many megajoules of energy in the form of heat can be produced per year (365 days) by a heater. (assume continuous operation)

Answers

Answer 1
Assuming continuous operation (24/7), we can say that

Energy produced : Energy per hour * 24 (number of hours in a day) - 365 (number of days in a year.

Energy per hour: 2050 * 1.055 = 2162.75 kg.

So, we proceed to calculate the results

E: 2162.75 * 24 * 365 = 18,945,690 kj per year.

Now, we transform kj to megajoule, remembering that kilo is 10*3 and mega is 1'*6, so we divide the result by 1,000 in order to get the results in megajoules, and the answer would be:

18,945.69 megajoules can be produced per year.
Answer 2

An office heater that outputs 2050 BTUs of energy per hour can produce approximately 18,943.32 megajoules of energy per year when operated continuously, due to the conversion from BTU to kilojoules and then to megajoules.

The student wants to know how many megajoules of energy in the form of heat can be produced per year by a heater that puts out 2050 BTUs per hour. Since 1 BTU is equivalent to 1.055 kilojoules (kJ), we first convert the hourly heat output to kJ.

To find the yearly output in kJ, we multiply the hourly output by the number of hours in a year (24 hours/day × 365 days/year).

2050 BTUs/h ×1.055 kJ/BTU = 2162.75 kJ/h2162.75 kJ/h  24 hours/day × 365 days/year = 18,943,320 kJ/yearTo convert kJ to megajoules (MJ), we divide by 1,000 because there are 1,000 kJ in a MJ.18,943,320 kJ/year / 1,000 = 18,943.32 MJ/year

Thus, the heater can produce approximately 18,943.32 megajoules of heat energy per year if operated continuously.


Related Questions

A protostar forms once the nebular cloud condenses and the core begins

Answers

A protostar forms once the nebular cloud condenses and the core begins nuclear fusion.

Answer:

Explanation:

A protostar forms once the nebular cloud condenses and the core begins HEAT.

A protostar is a very young star that is still gathering mass from its parent molecular cloud. The protostellar phase is the earliest one in the process of stellar evolution. A protostar is the earliest stage in star formation in the universe.  When the gas cloud begins to collapse on its own weight, the core begins to heat up. The heat is due to the force of compression of the dust and gas under its gravity. When the pressure and temperatures become high enough, the hydrogen in the core begins to fuse.

Does the sun always shine directly overhead at the equator at noon

Answers

The sun always shines directly overhead at noon. This is because the equator always gets the equivalent amount of sunlight. The area always get 12 hours of sunlight, because it's 0 degrees north and south and it's at the center of the Earth.

An airplane starts at rest and accelerates down the runway for 20 s. At the end of the runway, its velocity is 80 m/s north. What is its acceleration?

Answers

vi = vf + ( a.t)
 0 m/s (rest) = 80 m/s + (a.20s.-1)

a.20.-1= -80, we check if this is true; = 0 m/s= 80 + -80 = 0 ITS TRUE.

so a.20.-1= -80, a= 80/20 , Answers a= 4 m/s 

The acceleration of an airplane will be "4 m/s²".

According to the question,

The velocity is:

[tex]v_1 = 0[/tex][tex]v_2 = 80 \ m/s[/tex]

The time is:

[tex]t = 20 \ seconds[/tex]

As we know,

The formula of acceleration is:

→ [tex]A = \frac{Change \ in \ velocity}{Time}[/tex]

or,

→ [tex]A = \frac{v_2-v_1}{t}[/tex]

By substituting the values, we get

→     [tex]= \frac{80-0}{20}[/tex]

→     [tex]=\frac{80}{20}[/tex]

→     [tex]= 4 \ m/s^2[/tex]

So the above answer is right.

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Why does a gun recoil when a bullet is fired?

Answers

Momentum is transferred from the first object to the second object. In this case, if a gun exerts a force on a bullet when firing it forward then the bullet will exert an equal force in the opposite direction on the gun causing it to move backwards or recoil.
Question:

Why does a gun recoil when a bullet is fired?

Explanation:

When a bullet is fired, the gun exerts a force on the bullet through the trigger (this is action) in a particular direction. According to Newton's Third Law, we know to every action there is an equal and opposite reaction; action and reaction act on different bodies. So, the bullet will also exert an equal and opposite reaction on the gun in the opposite direction. That is why a gun recoils when a bullet is fired from it.

Hope it helps.

ray4918 here to help

A package was determined to have a mass of 5.7 kilograms. What's the force of gravity acting on the package on earth? A. 37.93 N B. 1.72 N C. 13.44 N D. 55.86 N

Answers

Force of gravity = Mass x Gravitational force
Fg=mg
Fg = (5.7)(9.8)
Fg= 55.86 N

Answer:

D.55.86 N

Explanation:

What combines to form bonds in compounds?

A.atoms of elements

B.molecules

C.types of minerals

D.valences

Answers

A chemical compound consists of 2 or more chemical elements. They can be separated into simpler substances. Atoms of elements can be combined to form compounds. Molecules are groups of 2 or more atoms held together by chemical bonds. Minerals are chemical compound that can be found in nature. Valence is a measure of the combining power of an element.Answer: A. Atoms of elements.

A fairgrounds ride spins its occupants inside a flying saucer-shaped container. if the horizontal circular path the riders follow has a 5.00 m radius, at how many revolutions per minute will the riders be subjected to a centripetal acceleration whose magnitude is 1.50 times that due to gravity?

Answers

The centripetal acceleration (a ) of an object moving in a circular path of radius  r at a constant speed and v is  = a = v²/r

The riders are subjected to a centripetal acceleration that is 1.50 times the acceleration due to gravity, a = 1.50 × g.

a = r  ×ω ²  

1.50 g = r  ×ω ²  

ω ²   = √1.50 g / r

rpm =  ω/2π  ×60

rpm=  √1.50⋅g/ r/2 π  ×60

rpm = 9.50

Therefore,  the riders will be subjected to approximately 9.50 revolutions per minute.

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The eye of a category 2 hurricane is 450 nautical miles away and forecast to come ashore at your coastal location. the tropical storm-force winds extend 150 nautical miles. if the hurricane's forward speed is 20 knots, how long before tropical storm-force winds begin to affect your community?

Answers

just get supplies and run man

Answer:

30 hours

Explanation:

Total distance from the coast to the storm = 450+150 = 600 Nmi

Speed of the hurricane = 20 knots = 20 Nmi/h

Time taken by the hurricane to reach the coast

[tex]\text{Time}=\frac{\text{distance}}{\text{Speed}}\\\Rightarrow \text{Time}=\frac{600}{20}=30 \\\Rightarrow \text{Time}=30 hours[/tex]

∴ Tropical storm-force winds begin to affect the community by 30 hours

Time taken by the eye to reach the coast

\text{Time}=\frac{450}{30}=15 hours[/tex]

Photovoltaic energy is the conversion of _________ into electricity through a photovoltaic cell. A) sunlight B) hydropower C) wind energy D) nuclear energy

Answers

The answer is A) sunlight

A runner makes one lap around a 200 m track in a time of 25.0 s. What was the runner's average speed?

Answers

the answer is 8 meters per second 8m/s because 200 divided by 25 is 8 
please mark brainliest please

Does knowing the distance between two objects give you enough information to locate the objects

Answers

Knowing the distance may only give you the relative locations between two points, but not the exact location. So, the answer to his question is no. Knowing the distance does not give enough information. If perhaps the coordinates of both points were given, then that would be considered enough information.

No, because a single distance could

correspond to a variety of different positions of the objects.

which of the following correctly describes a longitudinal wave

Answers

B is the right answer.

Diamond has a density of 3.26 g/cm3 . what is the mass of a diamond that has a volume of 0.247 cm3 ? answer in units of g.

Answers

Since the fourmula is mass/volume=density multiplying the density and volume yields the mass which is  0.80522 grams.

Why is force not on a scalar quantity??

Answers

Because force always has a direction, it always works towards or against something.


you might know that force,
is rate of change of momentum i.e

force = m (v-u)/t
= (mv - mu )/ t


as we know momentum is a vector quantity so, the rate of change of momentum i.e Force would also be a vector quantity.




momentum = mass × velocity

velocity has a direction so,
momentum has also got a direction.
so, momentum is also a vector quantity.

Answer:

Explanation:

Scalar quantity is described as such quantities measured which has only magnitude but not direction.

Force when applied on any object is always denoted and comes with direction. It is always necessary to represent force is acting on which direction.

Hence force is not a scalar quantity. It is a vector quantity as it has magnitude as well as direction.

Two friends, barbara and neil, are out rollerblading. with respect to the ground, barbara is skating due south at a speed of 5.9 m/s. neil is in front of her. with respect to the ground, neil is skating due west at a speed of 1.4 m/s. find neil's velocity (a) magnitude and (b) direction relative to due west, as seen by barbara.

Answers

As seen by Barbara, Neil is traveling at a velocity of 6.1 m/s at and angle of 76.7 degrees north from due west. Let's assume that both Barbara and Neil start out at coordinate (0,0) and skate for exactly 1 second. Where do they end up? Barbara is going due south at 5.9 m/s, so she's at (0,-5.9) Neil is going due west at 1.4 m/s, so he's at (-1.4,0) Now to see Neil's relative motion to Barbara, compute a translation that will place Barbara back at (0,0) and apply that same translation to Neil. Adding (0,5.9) to their coordinates will do this. So the translated coordinates for Neil is now (-1.4, 5.9) and Barbara is at (0,0). The magnitude of Neil's velocity as seen by Barbara is sqrt((-1.4)^2 + 5.9^2) = sqrt(1.96 + 34.81) = sqrt(36.77) = 6.1 m/s The angle of his vector relative to due west will be atan(5.9/1.4) = atan(4.214285714) = 76.7 degrees So as seen by Barbara, Neil is traveling at a velocity of 6.1 m/s at and angle of 76.7 degrees north from due west.

It is given that,

Speed of Barbara w.r.t ground, [tex]v_b=-5.9\ m/s[/tex] ( in south)

Speed of neil w.r.t ground, [tex]v_n=-1.4\ m/s[/tex] ( in west)

So, Neil's velocity as seen by Barbara is :

[tex]v^2=\sqrt{(1.4\ m/s)^2+(5.9\ m/s)^2}[/tex]

[tex]v=6.06\ m/s[/tex]

Direction relative to due wet is :

[tex]tan\theta=\dfrac{5.9\ m}{1.4\ m}[/tex]

[tex]\theta=tan^{-1} (4.21)[/tex]

[tex]\theta=76.6\ ^0[/tex]

So, with respect to barbara, Neil is travelling with velocity of 6.06 m/s making an angle of [tex]76.6^0[/tex] due west.

Hence, this is the required solution.

Astronauts on our moon must function with an acceleration due to gravity of 0.170 g. If an astronaut can throw a certain wrench 12.0 m vertically upward on earth, how high could he throw it on our moon if he gives it same starting speed in both places?

Answers

The formula that will be applied here is:

2as = v² - u²;

where a is the acceleration, s is the distance, v is the final velocity and u is the initial velocity. The acceleration and initial velocity will be in the opposite direction, so we will take acceleration to be negative. Moreover, the final velocity of any object thrown upwards at the top of its throw is 0. So we get:

2(-a)s = -u²
2as = u²
s = u²/2a

Now, for earth:

s(E) = u²/2g

For the moon:
s(M) = u²/2*0.17g

Taking the ratio s(E)/s(M)

s(E)/s(M) = 0.17

Rearranging,

s(M) = s(E) / 0.17

The distance thrown on the earth is 12 meters, so:

s(M) = 12/0.17

The astronaut will be able to throw the wrench 70.6 meters on the moon.

Final answer:

An astronaut could theoretically throw a wrench approximately 73.5 meters high on the Moon, which is about 6 times higher than on Earth, due to the lower gravitational acceleration.

Explanation:

The question is about how high an astronaut could throw a wrench on the Moon compared to the Earth given the same starting speed. The gravitational acceleration on the Moon is 0.170 g, or approximately 1.6 m/s², which is about 1/6 of that on Earth (9.8 m/s²). Therefore, if an astronaut can throw a wrench 12.0 meters high on Earth, we can calculate how high it would go on the Moon using the ratios of the accelerations due to gravity.

First, we recognize that the maximum height reached by an object thrown vertically is inversely proportional to the local gravitational acceleration. Mathematically:

Height on Earth / Height on Moon = Acceleration due to gravity on Moon / Acceleration due to gravity on Earth

Substituting the given values:

12.0 m / Height on Moon = 1.6 m/s² / 9.8 m/s²

Solving for the height on the Moon gives:

Height on Moon = 12.0 m * (9.8 m/s² / 1.6 m/s²) = 12.0 m * 6.125 = 73.5 m

Therefore, the astronaut could throw the wrench approximately 73.5 meters high on the Moon, assuming no air resistance and the same initial throwing speed.

What does newtons first law of motion state about objects on which forces are balanced?

Answers

Hi Donedeal7074

Newton's first law of motion states that an object at rest stays at rest until an unbalanced force comes up on it.

What happens to the gas pressure within a sealed gallon can when it is heated? when it is cooled?

Answers

The pressure within the can would increase upon heating and decrease upon cooling.

The wavelength of red light is 650 nanometers. how much bigger is the wavelength of a water wave that measures 2 meters?

Answers

we know that

[tex] 1 [/tex] nanometer is equal to [tex] 10^{-9} [/tex] meters

so

[tex] 650\ nm [/tex]------> convert to meters

by proportion

[tex] \frac{1}{10^{-9}}\frac{nm}{m} = \frac{650}{x} \frac{nm}{m} \\ \\ x=650*10^{-9} \ nm\\ \\ x=6.5*10^{-7} \ m [/tex]

[tex] Wave\ length\ of\ red\ light = 6.5*10^{-7}\ m [/tex]

[tex] Wave\ length\ of\ a\ water = 2\ m [/tex]

To calculate how much bigger is the wavelength of a water

Divide [tex] 2\ m [/tex] by [tex] 6.5*10^{-7}\ m [/tex]

so

[tex] \frac{2}{6.5*10^{-7}} =3.08*10^{6} [/tex]

therefore

the answer is

[tex] 3.08*10^{6}\ times\ bigger [/tex]

The wavelength of the water wave is 3 x 10⁶ times bigger than that of the red light.

The wavelength of a waveform signal that is propagating in space or over a wire is measured by the separation between identical points, adjacent crests in the adjacent cycles.

Given that the wavelength of red light is 650 nanometers.

We know that 1 nanometer = 10⁻⁹meter

In order to convert 1 nanometer into meter, it should be multiplied by 10⁻⁹.

So, 650 nm = 650 x 10⁻⁹

650 nm = 0.65 x 10⁻⁶

The wavelength of the given water wave = 2 m

So, comparing the wavelength of the red light with that of the water wave,

2/ 0.65 x 10⁻⁶ = 3 x 10⁶

Therefore, the wavelength of the water wave is 3 x 10⁶ times bigger than that of the red light.

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three strategies which local municipality is implementing in addressing the issue

Answers

Having and drinking hygienic water is human right and is vital to life. The water should be tested, treated and filtered to remove any contaminants that can lead do sickness. Some of the strategies in which local municipality is implementing in addressing the topic of lack of clean water are:
1. Good monitoring of the water supplies
2. Desalination – this is removal of mineral components from saline water especially salt. The procedure is more expensive but is a way to reuse water 
3. Campaign for more proficient and more wisely usage of the water in order to make the people conscious of the fact how important the natural resource water is.

larry lightweight stands on a pair of bathroom scales each scale reads 300 N what is larry's mass

Answers

Answer:

Mass = 30.6 kg

Explanation:

Given

Weight scale reading W = 300 N

Solution

Weight W = Mass (m) x Acceleration due to gravity (g)

W = mg

m = W/g

m = 300 / 9.81

m = 30.6 Kg

Final answer:

A bathroom scale measures weight which is a force in newtons or pounds. It is calibrated to provide information about mass by dividing the weight measurement by 9.80 in most countries. In this case, if each scale reads 300 N, Larry's mass would be approximately 30.61 kg.

Explanation:

A bathroom scale measures weight, which is a force in newtons or pounds. When you stand on a bathroom scale, the springs inside the scale compress in proportion to your weight, similar to rubber bands expanding when pulled. This compression provides a measure of your weight.

However, the scale is calibrated to provide information about mass, so the weight measurement is divided by 9.80 in most countries to give a reading in mass units of kilograms.

In this case, if each scale reads 300 N, we can use the formula F = mg, where F is the force (300 N), m is the mass (unknown), and g is the acceleration due to gravity (approximately 9.80 m/s²). Rearranging the formula, we have m = F/g. Substituting the given values, we get m = 300 N / 9.80 m/s² = 30.61 kg.

Bonnie and clyde are sliding a 300 kg bank safe across the floor to their getaway car. the safe slides with a constant speed if clyde pushes from behind with 445 n of force while bonnie pulls forward on a rope with 350 n of force. what is the safe's coefficient of kinetic friction on the bank floor?

Answers

We can draw a free body diagram for the safe to show all the horizontal forces acting on the safe. The three horizontal forces are Clyde's force, Bonnie's force, and friction. Since the safe slides at a constant speed (no acceleration), the net force must be zero. 0 = Clyde's force + Bonnie's force - friction friction = Clyde's force + Bonnie's force mg mu = Clyde's force + Bonnie's force mu = (Clyde's force + Bonnie's force) / (mg) mu = (445 N + 350 N) / (300 kg x 9.80~m/s^2) mu = 0.27 The coefficient of friction is 0.27
Final answer:

The total force to slide the bank safe is 795 N. The normal force exerted by the safe on the floor is 2943 N. Hence, the coefficient of kinetic friction on the bank floor is 0.27.

Explanation:Solution:

To find the coefficient of kinetic friction, we first need to determine the total force used to move the safe. Bonnie and Clyde are both applying their forces to move the safe in the same direction. So, we add Clyde’s force to Bonnie's force. This gives us a total force of 795 N (445 N + 350 N).

Since the safe slides at a constant speed, it means the applied force is equal to the friction force. Therefore, the friction force is also 795 N. We calculate the normal force which is the weight of the safe, that is mass times the gravity. The mass of the safe is 300 kg and the gravity is approximately 9.81 m/s². Therefore, the normal force is 2943 N (300 kg×9.81 m/s²).

Now, we use the formula of kinetic friction, which is the friction force divided by the normal force, to find the coefficient of kinetic friction. Therefore, the coefficient of kinetic friction on the bank floor is 0.27 (795 N / 2943 N).

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what is the density of a salt solution if 50.0 ml has a mass of 57.0 g?

Answers

density = mass / volume, so 5.70 g divided by 50.0 ml should make the density 1.036 g/ml

Density of given salt solution is 1.14 gram / milliliter

Given:

Mass of salt solution = 57 gram

Volume of salt solution = 50 milliliter

Find:

Density of a salt solution

Computation:

⇒ Density = Mass / Volume

Density of a salt solution = Mass of salt solution / Volume of salt solution

⇒ Density of a salt solution = 57 / 50

⇒ Density of a salt solution = 1.14 gram / milliliter

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Without friction, what force is needed to maintain a 1,000 kg car in uniform motion for 30 minutes?

Answers

The answer is none. According to the first law of Newton, an object stays at the same speed in the same direction if there are not forces unbalancing the object. Without friction, the car would be moving forever, unless there is another force accelerating or stopping the car.

The sun was created at the center of the accretionary disk when the temperature became high enough for _________ to occur. fusion fission combustion radiation

Answers

Fusion

The process of nuclear fusion is what drives the sun. During this process, smaller nuclei are combined at extremely high temperatures to form heavier nuclei. The primary collisions occur between hydrogen nuclei which combine to form helium nuclei, making hydrogen the fuel for stars and the most abundant element in the universe. The process of fusion requires a lot of energy to be started but also releases huge amounts of energy.

A scale model of a race car is 18.2 centimeters long and 6.9 centimeters long. each centimeter on the model represents 0.3 meters on the actual car. how long is the actual car

Answers

The actual car is 5.46 meters long.

To determine the length of the actual car based on its scale model, first note the given details:

The model car is 18.2 centimeters long.Each centimeter on the model represents 0.3 meters on the actual car.

We can calculate the length of the actual car using the formula:

Length of actual car = (Length of model car in cm) × (Scale factor in meters/cm)

Substituting the given values:

Length of actual car = 18.2 cm × 0.3 meters/cm = 5.46 meters

Thus, the actual car is 5.46 meters long.

A car is rounding a curve that is the arc of a circle with a radius of r . if the car has a constant speed of 10 m/s, and its acceleration is 5 m/s2 , what is the radius of the curve?

Answers

The formula to find the radius is R=V^2/A or Radius=Velocity^2/Acceleration so that means
R=V^2/A
10^2/5=R
100/5=R
R=20m

Final answer:

The radius of curvature for a car rounding a curve with a constant speed of 10 m/s and a centripetal acceleration of 5 m/s2 is calculated to be 20 meters.

Explanation:

The problem requires us to find the radius of curvature when a car is rounding a curve with a centripetal acceleration. Centripetal acceleration (a) is given by the formula a = v² / r, where v is the constant speed of the car and r is the radius of curvature. Knowing that the car has a constant speed (10 m/s) and a centripetal acceleration (5 m/), we can rearrange this formula to solve for the radius r as follows:

r = v² / a

Substituting the given values:

r = (10 m/s)² / (5 m/s²)

r = 100 m²/s² / 5 m/s²

r = 20 m

Therefore, the radius of curvature of the curve is 20 meters.

A long jumper jumps at a 20-degree angle and attains a maximum altitude of 0.6 m. What is her initial speed? [10m/s] How far is her jump? [6.59m]

I need someone to explain to me how to get the answers listed above my showing a detailed step to step process.

Answers

Refer to the diagram shown below.

Assume g = 9.8 m/s² and ignore air resistance.

Let V = the initial speed
Let d = the distance raveled (how far she jumps).

The horizontal velocity is
Vx = V cos(20°) = 0.9397V m/s
The vertical launch velocity is
Vy = V sin(20°) = 0.342V m/s

At maximum height of 0.6 m, the vertical velocity is zero. Therefore
Vy² - 2*(9.8 m/s²)*(0.6 m) = 0
(0.342V m/s)² = 11.76 (m/s)²
0.342V = 3.4293
V = 10.027 m/s

Therefore
Vy = 0.342*10.027  = 3.4239 m/s
Vx = 0.9397*10.027 = 9.4226 m/s

The time to attain maximum height is a half of the total time of travel. This time is given by
Vy - gt = 0
3.4239 = 9.8*t
t = 3.4239/9.8 = 0.3494 s
The total travel time is 2*0.3494 = 0.6988 s

The length of the jump is
Vx*(2t) = (9.4226 m/s)*(0.6988 s) = 6.5845 m

Answer:
The initial speed is 10.0 m/s (nearest tenth)
The length of the jump is 6.58 m (nearest hundredth)
Final answer:

The initial speed of the long jumper is calculated by finding the upward component of her velocity caused by her jumping at a 20-degree angle and achieving a maximum height of 0.6 m, then determining the total velocity by dividing this by the sine of the launch angle. The distance of her jump is found by applying these values in the formula for the range of a projectile. Both calculations assume no air resistance.

Explanation:

In this problem, the initial speed of the jumper is determined using the physics concepts of projectile motion.

To find the initial speed, first, we compute the upward component of the velocity using the formula ਙ = √(2*g*h), where g is the acceleration due to gravity (approximately 9.81 m/s²), and h is the maximum height (in this case, 0.6 m). The upward component of the velocity comes out to be approximately 3.443 m/s.

Second, we determine the initial speed by dividing the upward component of the velocity by the sine of the angle, which in this case is 20 degrees. This gives us an initial speed of approximately 10 m/s.

The distance of the jump (or the range of the projectile) can be calculated using the formula R = (vₒ²/g) * sin(2θ), where R is the range, vₒ is the initial velocity, g is the acceleration due to gravity, and θ is the launch angle. Substituting the values, the range comes out to be approximately 6.59 m.

These answers are based on ignoring any effects of air resistance.

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A baseball player uses a pitching machine to help him improve his batting average. he places the 54.6 kg machine on a frozen pond. the machine fires a 0.149 kg baseball horizontally at a speed of 42.6 m/s. what is the magnitude of the recoil velocity of the machine? answer in units of m/s.

Answers

The recoil velocity of the machine is 0.11 m/s in opposite direction.

What is law of conservation of momentum?

According to the law of conservation of momentum, when two or more bodies are operating upon one another in an isolated system, their combined momentum stays constant unless an external force is added. Because of this, momentum cannot be created or destroyed.

The mass of the pitching machine is : M = 54.6 kg

The mass of the baseball is: m = 0.149 kg.

The velocity of the baseball is: v = 42.6 m/s.

The velocity of the machine is: V = ?

From law of conservation of momentum;

Momentum of the machine = - momentum of the ball

MV = - mv

V = -mv/M

= - (0.149×42.6)/54.6 m/s

= - 0.11 m/s.

Hence, the recoil velocity of the machine is 0.11 m/s in opposite direction.

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An inattentive driver is traveling 15.0 m/s when he notices a red light ahead. his car is capable of decelerating at a rate of 3.35 m/s2 . part a if it takes him 0.210 s to get the brakes on and he is 66.0 m from the intersection when he sees the light, will he be able to stop in time

Answers

We know that v = u + at



He stops when the speed is zero; therefore



0 = 15 - 3.35 t

t = 4.48 


It takes 4.48 seconds after the driver turns on the brake for him to stop.


We know
s = ut + (1/2)at² 



s = 15*4.48 - *(1/2)(3.25)(4.48)² 

s = 33.4 meters

The distance he travels before applying the brakes is:

s = 0.21 * 15
s = 3.15 m

The total distance he travels is:
3.15 + 33.4 = 36.55 meters

He will be able to stop in time.
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