Jane has six apples Tom has seven apples who has the most apples

Answers

Answer 1
Answer: Tom has more apples than Jane
Answer 2
Answer: tom has the most apples

Related Questions

Emily is a very good student. She is more likely to attend class than to miss class. Which could be t.he probability that she misses class tomorrow?a. -0.4 b. 0.1 c. 0.7 d. 1.2 (PLEASE EXPLAIN HOW YOU RECEIVED YOUR ANSWER)
An ice cream cone is made of a cone shape and half a sphere shape. Explain how you could find the volume of the entire ice cream cone.
Which is more 4.027 or 4.0092
You have $3.25 to buy bananas. Each bananas costs $0.35. How many bananas will you buy? Will you use all your money? If not, how much will you have left over?

Peter uses unit cubes to build a figure in the shape of letterX.What is the fewest unit cubes that Peter can use to build the figure

Answers

5 unit cubes you would put them corner to corner like this:
X. X
X
X. X

Hope this helps!
I agree.  Five cubes.   x   x
                                      x
                                    x   x

Write 115.9% as a fraction

Answers

1 \ \% = (1)/(100)\n \n115.9 \ \%= 115.9 *(1)/(100)=(115.9)/(100) *(10)/(10)=(1159)/(1000)


the answer would be 1 159/1000
hope that helps! :)

How many kilograms are equal to 5,000grams?

Answers

5000 grams are equal to 5 kilograms
1 Kg = 1,000 gr.
5 Kg = 5.000gr.  

:)


Dominic books with 12 postcards in each book. He has 4 boxes with 20 coins in each box. If he gives 15 post cards to his friends, how many postcards and coins does he have?

Answers

How many books are there?

The awnser is 80 coins

If you want to watch a 2 hour movie that starts at 4PM and you want to watch a 3 hour movie that starts at 2PM,there is a schedule conflict.

A: True

B : False ​

Answers

True.

A 3 hour movie that starts at 2PM would end at 5PM  (2 + 3 = 5) which is an hour past the 4PM time.

true, if you start the three hour movie at 2pm then you will be done with that one at five, while the other one starts at four so you would miss an hour of it

Say that you put the set of tiles shown below into a bag and conduct a series of trials in which you draw one tile randomly from the bag, record the color, and replace it. The table below shows the number of times in each set of trials that you drew a blue tile. Round tiles: 5 purple, 6 orange, 2 yellow, 4 red, 1 white, 10 blue, 5 black, 3 green. Trial 1 2 3 4 5 # of Draws 54 36 80 22 75 # of Blues 18 11 20 4 32 Between the theoretical probability that you will draw a blue tile and the experimental probability that you will draw a blue tile, which is greater, and how much greater is it? Express all probabilities as percentages to two decimal places, and express differences by number of percentage points (for example, 12% is 2 percentage points greater than 10%). a. The theoretical probability is 2.78 percentage points greater than the experimental probability. b. The theoretical probability is 1.49 percentage points greater than the experimental probability. c. The experimental probability is 4.06 percentage points greater than the theoretical probability. d. The experimental probability is 2.17 percentage points greater than the theoretical probability.

Answers

The correct answer is (c) The experimental probability is 4.06 percentage points greater than the theoretical probability.

To compare the theoretical probability and the experimental probability of drawing a blue tile, we need to first calculate each one.

Theoretical probability of drawing a blue tile:

Total number of tiles = 5 + 6 + 2 + 4 + 1 + 10 + 5 + 3 = 36

Number of blue tiles = 10

Theoretical probability of drawing a blue tile = number of blue tiles / total number of tiles = 10 / 36 = 27.78%

Experimental probability of drawing a blue tile:

Number of draws in the five trials = 54 + 36 + 80 + 22 + 75 = 267

Number of blue tiles drawn in the five trials = 18 + 11 + 20 + 4 + 32 = 85

Experimental probability of drawing a blue tile = number of blue tiles drawn / number of draws = 85 / 267 = 31.84%

To compare the two probabilities, we subtract the experimental probability from the theoretical probability:

Theoretical probability - experimental probability = 27.78% - 31.84% = -4.06%

The result is negative, which means that the experimental probability is greater than the theoretical probability.

However, we need to express this difference as an absolute value (i.e., without the negative sign) and as a number of percentage points.

The absolute value of -4.06% is 4.06%, and this is the amount by which the experimental probability is greater than the theoretical probability.

For more details regarding probability, visit:

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Answer:

c.

The experimental probability is 4.06 percentage points greater than the theoretical probability.

Step-by-step explanation: