A dragster crosses the finish line with a velocity of 140m/s . Assuming the vehicle maintained a constant acceleration from start to finish, what was its average velocity for the race?

Answers

Answer 1

Answer:

Answer is attached

A Dragster Crosses The Finish Line With A Velocity Of 140m/s . Assuming The Vehicle Maintained A Constant
Answer 2

The average velocity for the race is 70 m/s if the dragster crosses the finish line with a velocity of 140 m/s.

What is linear acceleration?

It is defined as the rate of change in linear velocity with respect to time. It is also known as linear acceleration.

It is given that:

A dragster crosses the finish line with a velocity of 140m/s.

The vehicle maintained a constant acceleration from start to finish.

As we know,

The average velocity can be given as:

V(avrg) = (v1 + v2)/2

v1 = 140 m/s

v2 = 0 m/s

v(avrg) is the average of the velocity.

V(avrg) = (140 + 0)/2

V(avrg) = 140/2

V(avrg) = 70 m/s

Thus, the average velocity for the race is 70 m/s if the dragster crosses the finish line with a velocity of 140 m/s.

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Related Questions

Object A has a charge of -1 C. Object A has a charge of -1 C. At a given distance, the object with which
charge would be most strongly attracted by object A?*
+1 C
-1 C
+2 C
-2 C

Answers

The positive charge with the highest magnitude is +2 C and this charge would be most strongly attracted by object A.

Attraction of opposite charges

Opposite charges have the ability to attract each other while, similar charges repel each other.

The given charge of object A is negative, and it will be strongly attracted to a positive charge.

The greater the positive charge, the greater the force of attraction of object A.

From the given options, the positive charge with the highest magnitude is +2 C and this charge would be most strongly attracted by object A.

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Speed and velocity are not the same thing.How?​

Answers

Explanation:

speed only have magnitude whereas velocity have magnitude and direction

if i got rolled over and then survided and then i would go home then i died what happened

Answers

Answer:

you had probably died from the impact

Explanation:

because you got rolled over you would probably died due to your organs being damage and wouldn't function properly

A race starts and finishes a race that is 50,000m. (30miles). The time is 23 minutes. The final velocity is 67m/s. What is the average acceleration ?

Use acceleration formula

Answers

Answer:

a = 0.0505 [m/s^2]

Explanation:

In order to solve this formula we must use the following formula of kinematics.

[tex]x=(v_{o} *t)+(\frac{1}{2} )*a*t^{2}[/tex]

where:

x = distance = 50000 [m]

Vo = initial velocity = 0

a = acceleration [m/s^2]

t = time = 23 [min] = 1380 [s]

Note: the positive sign in the above equation shows that the car accelerates.

50000 = (0*1380) + (0.5*a*1380^2)

a = 0.0525 [m/s^2]

But we can calculate the acceleration using the following formula:

[tex]v_{f} =v_{o} +a*t[/tex]

where:

Vf = final velocity = 67 [m/s]

67 = 0 + (a*1380)

a = 0.0485 [m/s^2]

We can see that by means of kinematics and with the given values we can find two values of accelerations, however, we can determine the average acceleration, by means of the mathematical average.

a = (0.0485 + 0.0525) / 2

a = 0.0505 [m/s^2]

the filament of an electric lamp, which draws a current of 0.5 a is used for 2 hours. calculate the amount of charge flowing through the circuit

Answers

Answer:

I = 0.25  AND  T= 4 HOURS, Q = ??  

 multiply  both min  and sec , 240 and 60

we get 1400 sec  

the formula for current is   I = Q/T

substitute the given data in the formula  and simplify it

so , Q = 3600C  

A solenoid used to produce magnetic fields for research purposes is 2.5 mm long, with an inner radius of 30 cmcm and 1300 turns of wire. When running, the solenoid produced a field of 1.4 TT in the center. Part A Given this, how large a current does it carry

Answers

Answer:

2.14 A

Explanation:

L = 2.5 mm, N = 1300, B = 1.4 T, find I

B = μ₀N*I/L

so I = B*L/(μ₀N) = 1.4 * 0.0025/(4π x 10⁻⁷ x 1300) = 2.14 A

Describe the sequence of the formation of the solar system. Make sure you include these terms: solar nebula, planetesimals, protoplanets, protosun, condensation, accretion, differentiation, Jovians, terrestrials.

Answers

Answer:

Explanation:

e Sun and planets began to form in a rotating cloud of nebular gas and dust. These materials eventually clumped together with a hot protosun at the center and chunks of planetesimals rotating around it. Through repeated collisions, the planetesimals grew into protoplanets, and eventually the solar system came about.

The sequence of the solar system formation is started from sun and the planet's origination 4.6 billion years ago from the solar nebula, a cloud of gas and dust.

What is the solar system?

The solar system consists of the planet's satellites, as well as numerous comets, asteroids, and meteoroids, as well as the interplanetary medium.

The Sun and planets formed in a revolving cloud of nebular gas and dust. These components finally clumped together, creating a hot proton in the middle with fragments of planetesimals orbiting around it.

Planetesimals developed into protoplanets as a result of repeated collisions, and the solar system finally formed.

Hence,the sequence of the solar system formation is started from sun and the planet's origination 4.6 billion years ago from the solar nebula, a cloud of gas and dust.

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A slingshot is used to shoot a BB at a velocity of 96 feet per second straight up from ground level. When will the BB reach its maximum height of 144 feet?

Answers

The time taken for the BB to reach its maximum height is 1.5 seconds.

What is time?

Time can be defined as the measure of duration or period of past, present or future event.

To calculate the time it will take BB to reach the maximum height,

la we use the formula below

Formula:

v = d/t............ Equation 1

Where:

v = velocityd = distance/heightt = time

Make t the subject of the equation

t = d/v............ Equation 2

From the question,

Given:

d = 144 feetv = 96 feet/second

Substitute these values into equation 2

t = 144/96t = 1.5 seconds.

Hence, The time taken for the BB to reach its maximum height is 1.5 seconds.

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What is formula for finding period of a planet if its mass is found by sending a spacecraft

Answers

T = D/V, where D = distance, V = tangential velocity.

A cat, which mass 2.5 kg walks on a uniform plank of 4.0m long and mass 6.0kg. Two sawhorses at 0.3m and 2.4m from its right end to support the plank as shown in figure. The cat walks on it from right to the left until a certain position where the plank just begin to tip. Calculate the position of the cat from the left sawhorse when the plank just begin to tip .

Answers

Answer:

Explanation:

Let when cat reaches the point L distance from the right end , the plank starts turning about the left sawhorse.

The weight of the plank will at at middle point , ie at 2 m from the right end .

The plank will turn about the left sawhorse . Taking torque about this point of weight of the plank and weight of the cat , we have

2.5 g x ( L - 2.4 ) = 6 x g x ( 2.4 - 2.0 )

2.5 L - 6 = 14.4 - 12

2.5 L = 8.4

L = 3.36

position from left sawhorse = 3.36 - 2.4 = .96 m to the left of left sawhorse.

long narrow uniform stick of length ! and mass m lies motionless on ice (assume the ice provides a frictionless surface). The center of mass of the stick is the same as the geometric center (at the midpoint of the stick). The moment of inertia of the stick about its center of mass is lcm . A puck (with putty on one side) has same mass m as the stick. The puck slides without spinning on the ice with a speed of v0 towards the stick, hits one end of the stick, and attaches to it. You may assume that the radius of the puck is much less than the length of the stick so that moment of inertia of the puck about its center of mass is negligible compared to Icm . (a) How far from the midpoint of the stick is the center of mass of the stick-puck combination after the collision?

Answers

Answer:

the answer would be 0 as known to the length

Explanation:

0m x96 would put as an mass of 900 into 0 so there for your answer would be 0

In which soil layer do plant seeds germinate and plant roots thrive?
subsoil
organic
bedrock
topsoil

Answers

Answer: Topsoil

Explanation:

Bio

Answer:

topsoil

Explanation:

the force F is given in terms of time 'y'all and displacement 'X' by the equation F=AsinBx+CsinDt. what is the dimension of D/B?​

Answers

Answer:

D/B ahs units of  Length over Time

Explanation:

Notice that B is multiplying "x" (displacement) as argument of the sine function, therefore it has to have units of the reciprocal of Length.

Also the constant D is multiplying "t" as argument of the sine function, and as such, it must have units of the reciprocal of time.

Therefore, the quantity D/B must have units of Length over Time.

The less energy a wave has, the ________

Answers

Answer:

The less energy a wave has, the smaller the amplitude

Explanation:

Hope this helps!!!

Waste of points. Claim if you want.

Answers

okay............. sweet.

What are two differences and two similarities between applied force and tension force

Answers

Answer:

similarities: They are both members of an action reaction-pair and are produced by electromagnetic forces between the particles. In the case of tension a force is acting to separate the molecules from their equilibrium position, the tension is the resistance to this separatio; that is the electrical attraction among the charged particles that opposes the action of the applied force. In the case of the normal force when gravity pulls an object downward, the electrons of the two surfaces are pulled so close that they mutually reject each other. This rejection between the electrons of the 2 surfaces produces the normal force, acting in opposition to gravity.

Differences: The main difference between tension and force is the direction of force. ... Tension is a force pulling something apart, such as a force pulling apart on the ends of a rope. You often calculate tension in pulley problems. A force is a more general term applying to pushing or pulling on something.

Explanation:

i hope this helps you :)

100 POINTS QUESTION. PLEASE PROVIDE EXPLANATION

Answers

Answer:

t = 0, p = 12.0, v = 6.00

t = 20, p = 112, v = 56.0

t = 25, p = 62.0, v = 31.0

Explanation:

Impulse = change in momentum

J = Δp

FΔt = mΔv

The impulse equals the area under the F vs t graph.

At t = 0 s, the initial velocity is 6.00 m/s, so the momentum is:

p = (2.00 kg) (6.00 m/s)

p = 12.0 kg m/s

From t=0 s to t=20 s, the impulse is:

J = (20 N) (5 s) + ½ (20 N) (5 s) + ½ (-10 N) (10 s)

J = 100 Ns

So the new momentum is:

p = 12.0 kg m/s + 100 kg m/s

p = 112 kg m/s

And the new velocity is:

v = (112 kg m/s) / (2.00 kg)

v = 56.0 m/s

From t=20 s to t=25 s, the impulse is:

J = (-10 N) (5 s)

J = -50 Ns

So the new momentum is:

p = 112 kg m/s − 50 kg m/s

p = 62.0 kg m/s

And the new velocity is:

v = (62.0 kg m/s) / (2.00 kg)

v = 31.0 m/s

A 20 ohm lamp and a 5 ohm lamp are connected in series and placed across a potential difference of 50 V.
1. What is the equivalent resistance of the circuit?
2. What is the voltage drop across each lamp?
3. What is the power dissipated in each lamp

Answers

Hi there!

1.

Since the two resistors are in series, we can simply add:
[tex]R_T = R_1 + R_2 + ... R_n[/tex]

[tex]R_T = 20 + 5 = \boxed{25 \Omega}[/tex]

2.

In series, the potential difference of each resistor (lamp) ADDS UP. We can begin by finding the current through the circuit using Ohm's law:
[tex]V = IR\\\\I = \frac{V}{R_T}[/tex]

Plug in the values:
[tex]I = \frac{50}{25} = 2 A[/tex]

Now,

we can use Ohm's law to find the individual voltage for each lamp.

20 Ohm lamp:
[tex]V = 2 * 20 = \boxed{40 V}[/tex]

5 Ohm lamp:
[tex]V = 2 * 5 = \boxed{10 V}[/tex]

3.

To solve, we can use the power equation.

[tex]P (\text{Watts})= IV[/tex]

Plug in the values for each.

20 Ohm lamp:
[tex]P = 2 * 40 = \boxed{80 W}[/tex]

5 Ohm lamp:
[tex]P = 2 * 10 = \boxed{100 W}[/tex]

the center of mass is located a distance x from the less-dense end. Explain how Blake can determine the location of the center of mass

Answers

Blake can determine the center mass by dividing the product of less dense and its position by the sum of the two end densities.

What is center mass?

The center mass of an object is the point on the object where the weighted relative position of the distributed mass sums to zero.

Blake can determine the location of the center mass as follows;

Let the end position of the high dense = 0Let the density of the "high dense end" = ρ₁Let the density of the "less dense end" = ρ₂

[tex]C_{xm }= \frac{\rho_1 (0) + \rho(x)}{\rho_1 + \rho_2} \\\\C_{xm }= \frac{\rho(x)}{\rho_1 + \rho_2}[/tex]

Thus, Blake can determine the center mass by dividing the product of less dense and its position by the sum of the two end densities.

Learn more about center mass here: https://brainly.com/question/13499822

The isotope of an atom containing 40 protons and 51 neutrons suddenly has two neutrons added to it.

What isotope is created?

Answers

Answer:

91 :)

Explanation:

I need to know the answer to this and I do not need an explanation

Answers

Answer:

3rd sentence

Explanation:

When a force of 50 newtons acts on a mass of 10 kilograms, what is the resulting
acceleration in m/s2?

Answers

Answer:

The answer is 5 m/s²

Explanation:

The acceleration of an object given it's mass and the force acting on it can be found by using the formula

[tex]a = \frac{f}{m} \\ [/tex]

where

f is the force

m is the mass

From the question we have

[tex]a = \frac{50}{10} \\ [/tex]

We have the final answer as

5 m/s²

Hope this helps you

What is the name of the area around a charged object where the object can exert a force on other charged objects?

A) electric field
B) electric charge
C) electric induction
D) electric force

Answers

I believe it’s the electric field.

The name of the area around a charged object where the object can exert a force on other charged objects will be the electric field. Option A is correct.

What is an electric field?

An electric field is an electric property that is connected with any location in space where a charge exists in any form. The electric force per unit charge is another term for an electric field.

The electric field formula is as follows:

E = F /Q

Where,

The electric field is denoted by the letter E.

F is the electric force

The charge is Q.

The name of the area around a charged object where the object can exert a force on other charged objects will be the electric field.

Hence option A is correct.

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3. For a constant launch speed, what angle produces the same range
as a launch angle of
a) 30°?
b) 15°?

Answers

Answer:

A) 60 degrees B) 75 degrees

Explanation:

You use complementary angles to solve this. A complementary angle is when two angles add up to 90 degrees. For A), it says that the angle is 30 degrees. So you can do 90 minus 30 and you get 60. For B), it’s says the angle is 15 degrees. So you do 90 minus 15 and you get 75 degrees.

According to Newton's First Law, what will an object in straight-line motion
tend to do?
O A. Slow down because of friction
B. Speed up
C. Stay in straight-line motion
D. Experience a force

Answers

Answer:

It will remain in straight-line motion at constant speed until acted on by an

external force. Moreover, it'll not only tend to do that ... it'll actually do it.

Explanation:

11. The measurement of an object's mass is a
a. physical change
b. physical property
c. chemical
d. chemical property
change

Answers

Try B if it is not it I am sorry I checked on Google

A baseball is batted. It's a long fly ball. 4 seconds later the ball reaches the outfield 100 meters away and returns to the height from which it left the bat. Determine the horizontal component of the ball's initial velocity in magnitude, in m/s,

Answers

Answer:

25 m/s

Explanation:

First we should define the variables

T=4

Dx = 100

ay=-9.8

ax=0

We can use formula 1 from the BIG 5

x=(v+v0)t/2

By plugging in our variables we can get 100=4(v+v0)/2

Which is 50=v+v0

v=v0 since horizontal acceleration always equals zero

so 2v0 = 50

v0 = 25

Through an orbit what remains constant ?

a. Kinetic energy
B. Potential energy
C. Total energy
D. Work

Answers

Answer:

c. Total energy

Explanation:

An "orbit" is a path for an object to follow. An example of an object is the "satellite."

At certain points in the orbit, the satellite increases its speed and decreases its speed in relation to the gravity caused by the Earth. As it moves farther away from the Earth, its speed slows down. So, this means that the kinetic energy changes. It also gains and loses height which is responsible for the changes occurring regarding potential energy. This is true for elliptical motion of satellites.

However, the total mechanical energy (TME) of the satellite remains the same or is unchanged (elliptical/circular).

A student is investigating magnetic fields. The student places four different objects near identical magnets and observes what happens. The student records her observations in the table below. Using data from the table, which argument can the student make about magnetic fields?
a. The effect that a magnetic field has on an object depends on the mass of the object.
b. The effect that a magnetic field has on an object depends on the material of the object.
c. The effect that a magnetic field has on an object depends on the type of magnet used.
d. The effect that a magnetic field has on an object depends on the distance to the object.

Answers

Answer:

B. The effect that a magnetic field has on an object depends on the material of the object.

Explanation:

Just makes sense

Based on the data given in the table, the best argument the student can make about magnetic fields is that b. The effect that a magnetic field has on an object depends on the material of the object.

Why can this argument be made?

Certain objects have properties that make them easier to be magnetizable than other materials. Crayons and wooden toothpicks for instance, are not magnetizable.

The conclusion that can be made therefore is that the effect of a magnet on an object depends on the material of the object.

In conclusion, option B is correct.

Find out more on magnetic fields at https://brainly.com/question/14411049.

Pls help me

What is the acceleration of a 10 kg mass pushed by a 5 N force? ​

Answers

Answer:

The answer is 0.5m/s²

Explanation:

Acceleration=Force ÷mass

= 5÷10=0.5m/s²

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