Was the cannonball able to hit its target of 50 meters when the initial velocity was 20 m/s? Why?/Why Not?

(was not able to hit the target, but I don't know the reason)

Answers

Answer 1

Answer:

The cannon ball was not able to hit the target because the target is located at a height of 50 m whereas the cannon ball was only above to get to a height of 20 m.

Explanation:

From the question given above, the following data were obtained:

Height to which the target is located = 50 m

Initial velocity (u) = 20 m/s

To know whether or not the cannon ball is able to hit the target, we shall determine the maximum height to which the cannon ball attained. This can be obtained as follow:

Initial velocity (u) = 20 m/s

Final velocity (v) = 0 (at maximum height)

Acceleration due to gravity (g) = 10 m/s²

Maximum height (h) =?

v² = u² – 2gh (since the ball is going against gravity)

0² = 20² – (2 × 10 × h)

0 = 400 – 20h

Collect like terms

0 – 400 = – 20h

– 400 = – 20h

Divide both side by – 20

h = – 400 / – 20

h = 20 m

Thus, the the maximum height to which the cannon ball attained is 20 m.

From the calculations made above, we can conclude that the cannon ball was not able to hit the target because the target is located at a height of 50 m whereas the cannon ball was only above to get to a height of 20 m.


Related Questions

In a convection current, why does cool air take the place of warmer air?

1.Cool air is denser than warm air, so it sinks to take the place of rising warm air.

2.Cool air is less dense than warm air, so it sinks to take the place of rising warm air.

3.Cool air is denser than warm air, so it rises to take the place of sinking warm air.

Answers

Answer:

1.  Cool air is more dense than warm air so it sinks to take the place of the warm rising/buoyant air.

Explanation:

This is why heating a room with cold outside walls or glass windows (if budget can afford), we use warm radiant heaters at the floor level to break up the convection current/cold draft.  

As opposed to just diffusing air at the ceiling level, which is good in summer as cool air falls (air conditioning is in range of 55 to 65 degf out of the diffuser), mixing with warmer room air.

Calculate the total energy transferred when 200 g of ice cubes at 0°C are changed to steam at 100°C.

Specific heat capacity of water = 4200 J/kg °C
Specific latent heat of fusion = 340 kJ/kg
Specific latent heat of vaporisation = 2260 kJ/kg

Answers

Answer:

[tex]604000\ \text{J}[/tex]

Explanation:

m = Mass of ice = 200 g

[tex]\Delta T[/tex] = Temperature change of water = [tex](100-0)^{\circ}\text{C}[/tex]

c = Specific heat capacity of water = 4200 J/kg °C

[tex]L_f[/tex] = Specific latent heat of fusion = 340 kJ/kg

[tex]L_v[/tex] = Specific latent heat of vaporisation = 2260 kJ/kg

Heat required to convert ice to water = [tex]mL_f[/tex]

Heat required to raise the temperature of water to boiling point = [tex]mc\Delta T[/tex]

Heat required to convert water to steam = [tex]mL_v[/tex]

Total heat required

[tex]q=mL_f+mc\Delta T+mL_v\\\Rightarrow q=m(L_f+c\Delta T+L_v)\\\Rightarrow q=0.2(340\times 10^3+4200(100-0)+2260\times 10^3)\\\Rightarrow q=604000\ \text{J}[/tex]

Heat required to convert the given amount of ice to steam at the required temperature is [tex]604000\ \text{J}[/tex].

PLEASE HELP ASAP ILL GIVE U BRAINLIEST

An object is pulled to the left by a force of 100 N and to the right by a force of
80N. What is the net force acting on the object?

Answers

Answer: 20 N

Explanation: Net force is the sum of all forces acting on an object. For example, in a tag of war, when one team is pulling the tag with a force of 100 N and the other with 80 N, the net force would be 20 N at the direction of the first team (100 N - 80 N = 20 N).

How can you distinguish
between a reliable and
non-reliable source of
information?

Answers

Answer:

The answer to this question is given below in this explanation sections.

Explanation:

Reliable sources:

When researching you always need to be sure that you are getting your information from reliable sources.Some sources are considered to be" reliable" because they have been written by people who are experts in the field.These are the sources you can

un reliable sources:

on the other hand some sources are not reliable because may not have a through knowledge or full understanding a topic.anyone you can  post information on the internet we need to be critical reader to order determined.

(physical science) could someone please help me out with this lab? if i’m being honest i did the lab but i lost all of my work :( if anyone could help at all that would be great . i am in a bind right now

Answers

Explanation:

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A 15.0-kg block is dragged over a rough, horizontal surface by a 70.0-N force acting at 20.0° above the horizontal. The block is displaced 5.00 m, and the coefficient of kinetic friction is 0.300. Find the work done on the block by a) The 70-N force, b) The normal force, and c) The gravitational force. D) What is the increase in internal energy of the block-surface system due to friction? E) Find the total change in the block's kinetic energy.

Answers

Answer:

Explanation:

from the question we are told that

Load [tex]L=15kg[/tex]

Force[tex]F=70N[/tex]

Angle of inclination [tex]=20.0 degres[/tex]

Displacement [tex]m=5 meters[/tex]

coefficient of kinetic friction [tex]\alpha =0.300[/tex]

18)
Swimmers speed along the river (downstream) is 20km/hr

and can swim Cupstream) at 8km lhr. calculate the
velocity of the stream and the swimmer's possible
speed in still water,​

Answers

Answer:

The speed of the stream is 6 km/h and the speed of the swimmers in still water is 14 Km/h

Explanation:

Relative Speeds

When swimming downstream, the velocity (speed, really) of the stream (Vs) and the speed of the swimmers (Vm) are collaborative. When swimming upstream the speed of the stream subtracts to the speed of the swimmers, thus:

Vm + Vs = 20

Vm - Vs = 8

Adding both equations:

2Vm = 28

Vm = 28/2 = 14

From the first equation:

Vs = 20 - Vm = 20 - 14 = 6

The speed of the stream is 6 km/h and the speed of the swimmers in still water is 14 Km/h

A football kicked in front of a goal post at an angle of 45 degree to the ground just clear the top by of the post 3m high. Calculate the velocity of projection and the time taken to hit the ground again from the instant it was kicked.​

Answers

Answer:

A. 10.84 m/s

B. 1.56 s

Explanation:

From the question given above, the following data were obtained:

Angle of projection (θ) = 45°

Maximum height (H) = 3 m

Acceleration due to gravity (g) = 9.8 m/s²

Velocity of projection (u) =?

Time (T) taken to hit the ground again =?

A. Determination of the velocity of projection.

Angle of projection (θ) = 45°

Maximum height (H) = 3 m

Acceleration due to gravity (g) = 9.8 m/s²

Velocity of projection (u) =?

H = u²Sine²θ / 2g

3 = u²(Sine 45)² / 2 × 9.8

3 = u²(0.7071)² / 19.6

Cross multiply

3 × 19.6 = u²(0.7071)²

58.8 = u²(0.7071)²

Divide both side by (0.7071)²

u² = 58.8 / (0.7071)²

u² = 117.60

Take the square root of both side

u = √117.60

u = 10.84 m/s

Therefore, the velocity of projection is 10.84 m/s.

B. Determination of the time taken to hit the ground again.

Angle of projection (θ) = 45°

Velocity of projection (u) = 10.84 m/s

Time (T) taken to hit the ground again =?

T = 2uSine θ /g

T = 2 × 10.84 × Sine 45 / 9.8

T = 21.68 × 0.7071 / 9.8

T = 1.56 s

Therefore, the time taken to hit the ground again is 1.56 s.

If a 5 n force is pushing upward on an object what force would need to be applied to create a net force of zero?

Answers

Answer:

the foce aplied to make the net force be 0 is 5n force pushing downward on the object becasue it will cancel it out

Explanation:

Nuclear fusion is more reliable and sustainable source of energy than nuclear fission chain reaction justify this statement with plausible arguments

Answers

Answer:

1. Nuclear fusion does not generate radioactive nuclear wastes as nuclear fission does.

2. Nuclear fusion cannot lead to disastrous powerplant explosions as nuclear fission does.

3. More energy is generated during nuclear fusion than in nuclear fission.

Explanation:

Nuclear fusion involves the combination of lighter atoms such as hydrogen to form a heavier nucleus, in the process producing a tremendous amount of energy.

Nuclear fission on the other hand involves splitting a heavy nucleus into two lighter nuclei, releasing energy in the process.

Nuclear fusion can be more reliable than nuclear fission in energy generation due to the following reasons:There are no radioactive waste products obtained as a result of nuclear fusion, unlike nuclear fission. This is because the elements involved in Nuclear fusion are relatively radioactively stable elements.The risk of nuclear powerplant explosion due to out of control chain reactions is reduced in nuclear fusion because the reaction can only occur in perfect conditions under high pressure and temperatures (e.g the sun). When any of these conditions is removed due to a fault, the reaction automatically stops.More energy is generated during nuclear fusion than in nuclear fission.

Nuclear fusion and fission release a tremendous amount of energy using radioactive material as a fuel.

What are Fusion and fission?

Nuclear fusion is a reaction that occurs when two nuclei merge to form a larger nucleus and release a massive quantity of energy.

The breaking of two nuclei into smaller nuclei is known as nuclear fission. Nuclear fission also releases a significant amount of energy.

The key is how tightly the nucleons in a nucleus are bound together. The surplus energy will be released if a nuclear reaction produces nuclei that are more closely bonded than the originals. The most securely bound atomic nuclei are found to be around the size of iron-56. Thus,

When a nucleus significantly larger than iron is broken into tiny bits, energy is released since the smaller fragments have lower energy.

To know more about fusion and fission follow https://brainly.com/question/114533

Question 7 of 10
Which three statements describe electromagnetic waves?
A. They can transfer energy through a vacuum.
I B. They vibrate parallel to the direction in which the wave travels.
O C. They vibrate in two directions that are perpendicular to each
other.
D. They radiate outward in all directions.

Answers

Answer:

A. They can transfer energy through a vacuum

C. They vibrate in two directions that are perpendicular to each other

D. They radiate outward in all directions

Explanation:

A statement (A), a statement (C), and a statement (D) are correct because electromagnetic waves can only transfer energy through the vacuum.

What is an electromagnetic wave?

The waves that are related to both electricity and magnetism are known as electromagnetic (EM) waves. These waves are made up of time-varying electric and magnetic fields that travel over space.

The correct statements are:

They can transfer energy through a vacuum.They vibrate in two directions that are perpendicular to each other.They radiate outward in all directions.

Thus, a statement (A), a statement (C), and a statement (D) are correct because electromagnetic waves can only transfer energy through the vacuum.

Learn more about the electromagnetic wave here:

https://brainly.com/question/8553652

#SPJ2

C. A rock falls for 4 seconds. How far did it fall

Answers

Answer:

Calculates the free fall distance and velocity without air resistance from the ... for 24 seconds so i asumed that he fell for twelve seconds and this did the rest of it.

Explanation:

If a rock falls for 4 seconds assuming its initial velocity is zero and its falls only under the influence of gravity it would fall  122.625 m

What are the three equations of motion?

Newton provided three equations of motion.

The first equation is given as follows

v = u + at

the second equation is given as follows

S = ut + 1/2×a×t²

the third equation is given as follows

v² - u² = 2×a×s

As given in the problem If a rock falls for 4 seconds assuming its initial velocity is zero and its falls only under the influence of gravity it would fall

S = ut + 1/2at²

u= 0 m/s , a=9.81 m/s² and t =4seconds

S = 0+ 0.5*9.81*5²

S= 122.625 m

Thus, the rock would fall 122.625 m if it falls for 4 seconds

Learn more about equations of motion from here

brainly.com/question/5955789

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If an area has high air pressure and low humidity, what type of weather will it most likely have?

Answers

Answer:

c

Explanation:

A marble, rolling with speed of 20m/sec rolls off the edge of the table that is 180m high (g=10m/sec2), find time taken to drop to the ground.
a. 10sec
b. 8sec
c. 6sec
d. 12sec​

Answers

Answer:

Choice: c. 6sec

Explanation:

Horizontal Launch

When an object is thrown horizontally with a speed (v) from a height (h), it describes a curved path ruled by gravity until it finally hits the ground.

The horizontal component of the velocity is always constant because no acceleration exists in that direction, thus:

[tex]v_x=v[/tex]

The vertical component of the velocity changes in time because gravity makes the object fall at increasing speed given by:

[tex]v_y=g.t[/tex]

Where [tex]g=10 m/s^2[/tex]

To calculate the time the object takes to hit the ground, we use the same formula as for free-fall, since the time does not depend on the initial speed:

[tex]\displaystyle t=\sqrt{\frac{2h}{g}}[/tex]

The marble rolls the edge of the table at a height of h=180 m, thus:

[tex]\displaystyle t=\sqrt{\frac{2*180}{10}}[/tex]

[tex]\displaystyle t=\sqrt{36}[/tex]

t = 6 sec

Choice: c. 6sec

Answer:

The answer is:

C) 6sec

Hope it helps:D

Which two terms describe salt (NaCl)?

A. Mixture
B. Compound
C. Element
D. Pure substance

Answers

Answer:

B. compound

Explanation:

Because Salt (NaCl), sodium chloride, mineral substance of great importance to human and animal health, as well as to industry. The mineral form halite, or rock salt, is sometimes called common salt to distinguish it from a class of chemical compounds called salts.

Answer:

B and either C or D

Explanation:

It has been known for many years that ceramics can conduct electricity. In 2008, scientists found a ceramic material that can conduct electricity with no resistance at 133 K. What is the most important significance of this 2008 finding?

This is a lower temperature than Onnes’s experiment, and it will allow for a broader use of superconductors.

This is a higher temperature than Onnes’s experiment, and it will allow for a broader use of superconductors.

Materials that can conduct electricity with no resistance are new and can allow for new materials to be made.

Ceramic materials have been known to be able to conduct electricity prior to year 2008.

Answers

Answer:

mercury

Explanation:

edge 2020

Do not bounce as stretching because this can cause muscle fibers to shorten, not lengthen, causing injury to the muscles

True or False

Answers

Answer:

True

Explanation:

I searched it up :)

Nuclear power plants produce a waste product of cesium-137, which has a half-life of 30 years. How long would it take for the cesium to decay to 1/8 of its original amount?

90 years
120 years
30 years
60 years

Answers

The correct answer is 120 years

Two sound waves, from two different sources with the same frequency, 540 Hz, travel in the same direction at 330 m s . The sources are in phase. What is the phase difference of the waves at a point that is 4.40 m from one source and 4.00 m from the other?

Answers

Answer:

The value is [tex]\Delta \phi = 4.12 \ rad[/tex]

Explanation:

From the question we are told that

    The frequency of each sound is  [tex]f_1 = f_2 = f = 540 \ Hz[/tex]

      The speed of the sounds is  [tex]v = 330 \ m/s[/tex]

       The  distance of the first source from the point considered is  [tex]a = 4.40 \ m[/tex]

        The distance of the second source from the point considered is  [tex]b = 4.00 \ m[/tex]

Generally the phase angle made by the first sound wave at the considered point is mathematically represented as

           [tex]\phi_a = 2 \pi [\frac{a}{\lambda} + ft][/tex]

Generally the phase angle made by the first sound wave at the considered point is mathematically represented as

           [tex]\phi_b = 2 \pi [\frac{b}{\lambda} + ft][/tex]          

Here b is the distance o f the first wave from the considered point  

Gnerally the phase diffencence is mathematically represented as  

           [tex]\Delta \phi= \phi_a - \phi_b = 2 \pi [\frac{ a}{\lambda} + ft ] - 2 \pi [\frac{b}{\lambda} + ft ][/tex]      

=>      [tex]\Delta \phi = \frac{2\pi [ a - b]}{ \lambda }[/tex]

Gnerally the wavelength is mathematically represented as

        [tex]\lambda = \frac{v}{f}[/tex]

=>     [tex]\lambda = \frac{330}{540}[/tex]

=>     [tex]\lambda = 0.611 \ m[/tex]

=>    [tex]\Delta \phi = \frac{2* 3.142 [ 4.40 - 4.0 ]}{ 0.611 }[/tex]

=>    [tex]\Delta \phi = 4.12 \ rad[/tex]

     

Sasha lifts a couch 8.2 meters from the ground floor of her house to the attic. If the couch has a mass of 120 kg, what is the gravitational potential energy gained by the couch? Estimate g as 9.81 m/s^2.

Answers

Answer:

9653.04 joules

Explanation:

H= 8.2 m

M= 120 kg

G= 9.81 m/s^2

P.E= ?

P.E = MGH

P.E = 120 x 9.81 x 8.2

P.E = 9653.04 joules

A driver slows down her car from 32.7 km/hr at a constant rate of 0.63 m/s2 just by taking her foot of the accelerator (the gas pedal). Calculate the distance the car travels during the sixth second (between t=5 and t=6 seconds)that she is coasting.

Answers

Answer: She moves 5.616 meters in that second.

Explanation:

If we define t = 0s as the moment when she starts decelerating we can write the function of acceleration as:

a(t) = -(0.63 m/s^2)

where the negative sign is because she is slowing down.

The velocity equation can be found if we integrate over time:

v(t) = -(0.63m/s^2)*t + v0

Where v0 is the constant of integration, that represents the initial velocity, in this case is:

v0 = 32.7 km/h

Now, because the acceleration is in m/s^2, we should write this velocity in m/s.

in one km we have 1000 meters, and in one hour we have 3600 seconds, then we have that:

32.7 km/h = 32.7 *(1000/3600) m/s = 9.08 m/s

Then the velocity equation becomes:

v(t) = -(0.63m/s^2)*t  + 9.08 m/s

And for the position equation, we should integrate again to get:

p(t) = -(1/2)*(0.63m/s^2)*t^2 + (9.08m/s)*t + p0

Where p0 is the initial position.

For this problem, we want to find the distance that she moved between t = 5s and t = 6s, and that can be calculated as:

D = p(6s) - p(5s)

D = -(1/2)*(0.63m/s^2)*(6s)^2 + (9.08m/s)*6s + p0 +(1/2)*(0.63m/s^2)*(5s)^2 - (9.08m/s)*(5s) - p0

D = -(1/2)*(0.63m/s^2)*((6s)^2 - (5s)^2) + (9.08m/s)*(6s - 5s)

D = 5.615 m

She moves 5.616 meters in that second.

differentiate between basic quantities and physical quantities​

Answers

Answer:

Base quantities are the minimum numbers of the physical quantities. Base quantities are defined as the physical quantities which can not be defined in terms of other physical quanities. There are seven base quantities. Physical Quantitie Units Derived Quantities are defined as those physical quantities which are derived from the base quantities.

Explanation:

A physical quantity is a property of a material or system that can be quantified by measurement. A physical quantity can be expressed as the combination of a numerical value and a unit. For example, the physical quantity mass can be quantified as n kg, where n is the numerical value and kg is the unit. A physical quantity possesses at least two characteristics in common, one is numerical magnitude and other is the unit in which it is measured.

Distinguish between a basic physical quantity and a derived physical quantity giving an example of each. Answers. Basic physical quantities are quantities which can be obtained without derivation. e.g Temperature. While derived physical quantities are quantities which can only be obtained from other physical quantities.

Which object has the most potential energy...

ASAP

Answers

i think d is the correct answer

An airplane flying at 57 m/s releases a crate of supplies that lands 821 m from where it was released. How high was the plane flying?
1020 m
14.4 m
71 m
5910 m

Answers

Answer:1020

Explanation:

no work is said to be done by standing man carrying 500kg load.why?​

Answers

Answer:

no work is said to be done by standing man carrying 500kg load because

Explanation:

for the work to be done there should be two conditions i.e force should be applied and displacement must be covered.So for a man carring a 500 kg load force is there but he covers no distance by standing so displacement will be zero and since

work =force\displacement

displacement is zero so we can say that no work is done

PLEASE HELP: A planet has an average distance to the sun of 3.36AU. In two or more complete sentances, explain how to calculate the orbital peroid of the planet and calculate it.​

Answers

Answer:

Use the AU formula

Explanation:

1 astronomical unit = 149597871 kilometer

HELP PLS ITS BEEN AN 3 HOURS

Answers

Answer:

0.433 s

Explanation:

Let's break the projectile motion into its horizontal and vertical components:

Horizontal component (x):

3.22 * cos(62.9)

Vertical component (y):

3.22 * sin(62.9)

We want to find the time required for the hurdler to travel a distance of 0.635 m. In order words, his displacement should be 0.635 m in the x-direction.

Since we don't have the final velocity, we can use this constant acceleration equation:

Δx = v₀t + 1/2at²

We have three known variables and want to solve for t. Using this equation in the x-direction, we have:

Δx = 0.635 mv₀ = 3.22 * cos(62.9)a = 0 m/s² t = ?

Substitute these values into the equation.

0.635 = [3.22 * cos(62.9)] t + 1/2(0) t²

Simplify the equation.

0.635 = 3.22 * cos(62.9) t  

Divide both sides by the horizontal component of the initial velocity.

0.432899075 = t

Since we start with 3 sig figs, we will round this value to 0.433. The time it takes to clear the hurdle is 0.433 seconds.

Two cylinders A&B at the same temperature contains the same quantity of the same kind of gas. Cylinder A has three times the volume of cylinder B. What can you conclude about the pressure the gases exert

Answers

Answer:

pressure in cylinder A must be one third of pressure in cylinder B

Explanation:

We are told that the temperature and quantity of the gases in the 2 cylinders are same.

Thus, number of moles and temperature will be the same for both cylinders.

To this effect we will use the formula for ideal gas equation which is;

PV = nRT

Where;

P is prrssure

V is volume

n is number of moles

T is temperature

R is gas constant

We are told that Cylinder A has three times the volume of cylinder .

Thus;

V_a = 3V_b

For cylinder A;

Pressure = P_a

Volume = 3V_b

Number of moles = n

Thus;

P_a × 3V_b = nRT

For cylinder B;

Pressure = P_b

Volume = V_b

Number of moles = n

Thus,

P_b × V_b = nRT

Combining the equations for both cylinders, we have;

P_a × 3V_b = P_b × V_b

V_b will cancel out to give;

3P_a = P_b

Divide both sides by 3 to get;

P_a = ⅓P_b

Thus, pressure in cylinder A must be one third of pressure in cylinder B

Name three items to remember when completing a job application.

Answers

1. ) It's good to remember contact information such as phone number or email.

2.) Your address, so if they need to mail anything to you, they can. This is also a necessary point of information on most job applications anyway.

3.) Past job experiences and ways to contact them. This is probably one of the most important things as it shows you've worked before and are willing to talk to past employers.

May I have brainliest please? :)

Answer:

the other answer is correct

Explanation:

i do flvs and this was on the career final exam

Two masses, m1 & m2 are separated by a distance of 12 m between their centers. The gravitational force attraction between the two masses is measured to be 6.0 x 10-6 N. The masses are then moved closer to one another, to a distance of 4 m between centers, and the resulting gravitational force is measured again. According to the Universal Law of Gravitation, the second measurement is

Answers

The universal law of gravitation says that the gravitational force between the two masses is

F₁ = G mm₂ / r ² = 6.0 × 10⁻⁶ N

where r = 12 m. When the distance between the two masses is reduced to R = 4 m, i.e. 1/3 of the original distance r, we have

F₂ = G mm₂ / R ² = G mm₂ / (r/3)² = 1/9 G mm₂ / r ² = 1/9 F

so that the resulting gravitational force has 1/9 the first magnitude, or

F₂ = 1/9 (6.0 × 10⁻⁶ N) ≈ 6.7 × 10⁻⁷ N

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