Using PHP, Create a form that uses the method POST to send the
information. The form should capture the distance the package needs
to travel with the one field for the distance in miles.
All fields should have the REQUIRED attribute.
The form should have a submit button and reset button.
The form should look nice. All the labels should line up
horizontally and all the
INPUTS/SELECT should line up horizontally.
In: Computer Science
Write a C++ program that calculates mileage reimbursement for a salesperson at a rate of $ 0.35 per mile. Your program should interact with the user in this manner:
MILEAGE REIMBURSEMENT CALCULATOR
Enter beginning odometer reading: 13505.2
Enter ending odometer reading : 13810.6
You traveled 305.40 miles.
At $ 0.35 per mile, your reimbursement is $ 106.89.
The values in red color are inputs for the program.
The values in blue color are results of expressions.
In: Computer Science
I need the steps for this problem. If a runner (perpendicular area = 0.6 m2; fluid density = 1.14 kg/m3; Cd = 0.5) completes a marathon (26.2 miles) in three hours, while running against a 10-mph headwind throughout the race, how much more work will she have performed against the air, relative to completing the marathon in the same time on a still day (no wind)? Answer: ~395 KJ
In: Physics
Define the exception class called TornadoException. The class should have two constructors including one default constructor. If the exception is thrown with the default constructor, the method getMessage should return "Tornado: Take cover immediately!" The other constructor has a single parameter, m, of int type. If the exception is thrown with this constructor, the getMessage should return "Tornado: m miles away; and approaching!" Write a Java program to test the class TornadoException.
In: Computer Science
6.28 Modified You are to determine if exposure by oral ingestion to the chemicals xylene, toluene, arsenic, and hexavalent chromium poses a noncarcinogenic health risk. The chemical-specific reference doses (mg/kg-day) obtained from IRIS are: xylene (0.2), toluene (0.8), arsenic (0.0003), and hexavalent chromium (0.003) Assume a 70 kg individual consumes 2 liters of water per day with these chemicals dissolved at a concentration of 1 mg/L. Determine the HQ for the water.
In: Civil Engineering
4. Which of the following statement about chaperones is TRUE? (0.2 pt) Please select the single best answer and explain why other answers are wrong (0.8 pt).
In: Biology
Use the following data on ethanol-chloroform solutions at 35°C to calculate the activity coefficients of ethanol and chloroform based on the deviations from Raoult’s Law. Explain the meaning of your answers.
| c EtOH, liq | 0 | 0.2 | 0.4 | 0.6 | 0.8 | 1.0 |
| Y EtOH, vap | 0.000 | 0.138 | 0.186 | 0.255 | 0.425 | 1.000 |
| Ptot (kPa) | 39.35 | 40.56 | 38.69 | 34.39 | 25.36 | 13.70 |
Can someone help me with this please!? Thank you!!
In: Chemistry
A distribution and the observed frequencies of the values of a variable from a simple random sample of the population are provided. Use the chi-squaregoodness-of-fit test to decide, at a significance level of 0.10, whether the distribution of the variable differs from the given distribution. (You need to add the expected column based on the distribution)
a. Specify which Chi-Square test you are doing (Goodness-of-Fit or Test for Independence):
b. Formulate the null (H0) and alternate (HA) hypotheses:
c. Specify the level of significance (alpha, a):
d. What is the value of the test statistic?
e. What is the critical value?
f. Do you reject H0 or fail to reject H0?
g. To validate your results, we’ll also check our p-value. What is the p-value?
h. Based on your p-value, do you reject or do not reject?
i. State your summary statement of the conclusion in non-technical terms.
| frequency | distribution |
| 15 | 0.3 |
| 9 | 0.2 |
| 5 | 0.2 |
| 18 | 0.2 |
| 3 | 0.1 |
In: Statistics and Probability
Predict what the temperature anomaly would be at a CO2 level of 450 ppm
| CO2 (ppm) | Temp Anomaly (deg. C) |
| 335.40 | 0.2 |
| 336.84 | 0.34 |
| 338.75 | 0.43 |
| 340.11 | 0.14 |
| 341.45 | 0.39 |
| 343.05 | 0.21 |
| 344.65 | 0.2 |
| 346.12 | 0.25 |
| 347.42 | 0.41 |
| 349.19 | 0.52 |
| 351.57 | 0.38 |
| 353.12 | 0.53 |
| 354.39 | 0.53 |
| 355.61 | 0.24 |
| 356.45 | 0.28 |
| 357.10 | 0.39 |
| 358.83 | 0.57 |
| 360.82 | 0.49 |
| 362.61 | 0.55 |
| 363.73 | 0.85 |
| 366.70 | 0.6 |
| 368.38 | 0.58 |
| 369.55 | 0.68 |
| 371.14 | 0.8 |
| 373.28 | 0.78 |
| 375.80 | 0.69 |
| 377.52 | 0.88 |
| 379.80 | 0.78 |
| 381.90 | 0.86 |
| 383.79 | 0.65 |
| 385.60 | 0.79 |
| 387.43 | 0.92 |
| 389.90 | 0.79 |
| 391.65 | 0.77 |
| 393.85 | 0.81 |
| 396.52 | 0.88 |
| 398.65 | 0.96 |
| 400.83 | 1.23 |
In: Statistics and Probability
Predict what the temperature anomaly would be at a CO2 level of 450 ppm
| CO2 (ppm) | Temp Anomaly (deg. C) |
| 335.40 | 0.2 |
| 336.84 | 0.34 |
| 338.75 | 0.43 |
| 340.11 | 0.14 |
| 341.45 | 0.39 |
| 343.05 | 0.21 |
| 344.65 | 0.2 |
| 346.12 | 0.25 |
| 347.42 | 0.41 |
| 349.19 | 0.52 |
| 351.57 | 0.38 |
| 353.12 | 0.53 |
| 354.39 | 0.53 |
| 355.61 | 0.24 |
| 356.45 | 0.28 |
| 357.10 | 0.39 |
| 358.83 | 0.57 |
| 360.82 | 0.49 |
| 362.61 | 0.55 |
| 363.73 | 0.85 |
| 366.70 | 0.6 |
| 368.38 | 0.58 |
| 369.55 | 0.68 |
| 371.14 | 0.8 |
| 373.28 | 0.78 |
| 375.80 | 0.69 |
| 377.52 | 0.88 |
| 379.80 | 0.78 |
| 381.90 | 0.86 |
| 383.79 | 0.65 |
| 385.60 | 0.79 |
| 387.43 | 0.92 |
| 389.90 | 0.79 |
| 391.65 | 0.77 |
| 393.85 | 0.81 |
| 396.52 | 0.88 |
| 398.65 | 0.96 |
| 400.83 | 1.23 |
In: Statistics and Probability