Eureka Math Grade 5 Module 2 Lesson 4 Answer Key (2024)

Engage NY Eureka Math 5th Grade Module 2 Lesson 4 Answer Key

Eureka Math Grade 5 Module 2 Lesson 4 Problem Set Answer Key

Question 1.
Circle each expression that is not equivalent to the expression in bold.
a. 16 × 29
Eureka Math Grade 5 Module 2 Lesson 4 Answer Key (1)

Answer:
16 x 29 = 464.

Explanation:
In the above-given question,
given that,
29 sixteens = 29 x 16.
16 x (30 – 1).
16 x 29.
(15 – 1) x 29.
(10 x 29) – (6 x 29)
290 – 174.
26.
Eureka Math Grade 5 Module 2 Lesson 4 Answer Key (2)

b. 38 × 45
Eureka Math Grade 5 Module 2 Lesson 4 Answer Key (3)

Answer:
38 x 45 = 1710.

Explanation:
In the above-given question,
given that,
(38 + 40) x ( 38 + 45) = 78 x 83 = 6474.
(38 x 40 ) + ( 38 x 5) = 1520 + 190 = 1710.
45 x (40 + 2) = 45 x 42 = 1890.
45 thirty-eights = 45 x 38 = 1710.
Eureka Math Grade 5 Module 2 Lesson 4 Answer Key (4)

c. 74 × 59
Eureka Math Grade 5 Module 2 Lesson 4 Answer Key (5)

Answer:
74 x 59 = 4366.

Explanation:
In the above-given question,
given that,
74 x (50 + 9) = 74 x 59 = 4366.
74 x (60-1) = 74 x 59 = 4366.
(74 x 5) + (74 x 9) = 370 + 666 = 1036.
59 seventy-fours = 59 x 74 = 4366.
Eureka Math Grade 5 Module 2 Lesson 4 Answer Key (6)

Question 2.
Solve using mental math. Draw a tape diagram and fill in the blanks to show your thinking. The first one is partially done for you.
a. 19 × 25 = __nineteen________ twenty-fives
Eureka Math Grade 5 Module 2 Lesson 4 Answer Key (7)
Think: 20 twenty-fives – 1 twenty-five.
= ( ____20______ × 25) – ( ____1______ × 25)
= ____500______ – ____25______
= ___475_______

Answer:
19 x 25 = 475.

Explanation:
In the above-given question,
given that,
20 twenty-fives – 1 twenty-five.
20 x 25 – 1 x 25.
500 – 25.
475

b. 24 × 11 = _____eleven_____ twenty-fours

Think: ___10__ twenty fours + __1___ twenty four
= ( ____10______ × 24) + ( ____1______ × 24)
= _____240_____ + _____24_____
= __264________

Answer:
10 x 24 = 264.

Explanation:
In the above-given question,
given that,
10 twenty-fours + 1 twenty-four.
10 x 24 + 1 x 24.
240 + 24.
264.
Eureka Math Grade 5 Module 2 Lesson 4 Answer Key (8)

c. 79 × 14 = _____79_____ fourteens

Think: _____78_____ fourteens – 1 fourteen
= (_____78_____ × 14) – (_____1_____ × 14)
= ____1092______ – ___14_______
= ____1078______

Answer:
79 x 14 = 79 fourteens.

Explanation:
In the above-given question,
given that,
78 fourteens – 1 fourteen.
78 x 14 – 1 x 14.
1092 – 14.
1078.
Eureka Math Grade 5 Module 2 Lesson 4 Answer Key (9)

d. 21 × 75 = ______21____ seventy-fives

Think: ___20__ seventy-fives + __1___ seventy-five
= (____20______ × 75) + (_____1_____ × 75)
= ___1500_______ + ____75______
= ___1625_______

Answer:
21 x 75 = 1625.

Explanation:
In the above-given question,
given that,
20 seventy-fives + 1 seventy-five.
20 x 75 + 1 x 75.
1500 + 25.
1625.
Eureka Math Grade 5 Module 2 Lesson 4 Answer Key (10)

Question 3.
Define the unit in word form and complete the sequence of problems as was done in the lesson.
a. 19 × 15 = 19 ___15_______

Think: 20 _______15______ – 1 ____15_________
= (20 × _____15_____) – (1 × __15________)
= ___300_______ – _____15_____
= _____285_____

Answer:
19 x 15 = 285.

Explanation:
In the above-given question,
given that,
20 fifteens – 1 fifteen.
20 x 15 – 1 x 15.
500 – 15.
285.

b. 14 × 15 = 14 ____15______

Think: 10 _____5_______ + 4 ______10_____
= (10 × ____5______) + (4 × ____10______)
= _____50_____ + ____40______
= ___90_______

Answer:
14 x 15 = 210.

Explanation:
In the above-given question,
given that,
10 5 + 4 10.
50 + 40.
90

c. 25 × 12 = 12 _____25_____

Think: 10 ____15______ + 2 __25_______
= (10 × ___25_______) + (2 × _____25_____)
= ____250______ + _____50_____
= ____300______

Answer:
25 x 12 = 300.

Explanation:
In the above-given question,
given that,
10 fifteens + 2 twenty-five.
10 x 15 + 2 x 25.
250 + 50.
300.

d. 18 × 17 = 18 ___17_______

Think: 20 ____17______ – 2 ____17______
= (20 × _____17_____) – (2 × ___17_______)
= ______340____ – ____34______
= ____306______

Answer:
18 x 17 = 306.

Explanation:
In the above-given question,
given that,
20 seventeen – 2 seventeen.
20 x 17 – 2 x 17.
340 – 34.
306.

Question 4.
How can 14 × 50 help you find 14 × 49?

Answer:
14 x 50 = 14 x (50 – 1).

Explanation:
In the above-given question,
given that,
14 fifty – 14 fourty nine.
14 x 50 – 14 x 49.
700 – 686.
14

Question 5.
Solve mentally.
a. 101 × 15 = __1515________

Answer:
101 x 15 = 1515.

Explanation:
In the above-given question,
given that,
101 x 15
1515.

b. 18 × 99 = ____1782______

Answer:
18 x 99 = 1782.

Explanation:
In the above-given question,
given that,
18 x 99
1782.

Question 6.
Saleem says 45 × 32 is the same as (45 × 3) + (45 × 2). Explain Saleem’s error using words, numbers, and/or pictures.

Answer:
45 x 32 = 1440 and (45 x 3) + (45 x 2) = 135 + 90 = 225..

Explanation:
In the above-given question,
given that,
45 x 32
1440.

Question 7.
Juan delivers 174 newspapers every day. Edward delivers 126 more newspapers each day than Juan.
a. Write an expression to show how many newspapers Edward will deliver in 29 days.

Answer:
The newspapers Edward will deliver in 29 days =

Explanation:
In the above-given question,
given that,
Juan delivers 174 newspapers every day.
Edward delivers 126 more newspapers each day than Juan.
174 + 126 = 300.
Edward will deliver in 29 days = 300 x 29.
300 x 29 = 8700.

b. Use mental math to solve. Show your thinking.

Eureka Math Grade 5 Module 2 Lesson 4 Exit Ticket Answer Key

Solve using mental math. Draw a tape diagram and fill in the blanks to show your thinking.

a. 49 × 11 = ____49______ elevens

Think: 50 elevens – 1 eleven

= (___50_______ × 11) – (_____1_____ × 11)
= ____550______ – _____11_____
= _____539_____

Answer:
49 x 11 = 539.

Explanation:
In the above-given question,
given that,
50 x 11 – 1 x 11.
550 – 11.
539.
Eureka Math Grade 5 Module 2 Lesson 4 Answer Key (11)

b. 25 × 13 = ____13______ twenty-fives

Think: __10___ twenty-fives + __3___ twenty-fives
= (____10______ × 25) + (____3______ × 25)
= ____250______ + ____75______
= _____325_____

Answer:
25 x 13 = 325.

Explanation:
In the above-given question,
given that,
10 x 25 + 3 x 25.
250 + 75
325.
Eureka Math Grade 5 Module 2 Lesson 4 Answer Key (12)

Eureka Math Grade 5 Module 2 Lesson 4 Homework Answer Key

Question 1.
Circle each expression that is not equivalent to the expression in bold.
a. 37 × 19
Eureka Math Grade 5 Module 2 Lesson 4 Answer Key (13)

Answer:
37 x 19 = 703.

Explanation:
In the above-given question,
given that,
37 nineteens = 37 x 19 = 703.
(30 x 19) – (7 x 29) = 570 – 203 = 367.
37 x (20 – 1) = 37 x 19 = 703.
(40 – 2) x 19 = 38 x 19 = 722.
Eureka Math Grade 5 Module 2 Lesson 4 Answer Key (14)

b. 26 × 35
Eureka Math Grade 5 Module 2 Lesson 4 Answer Key (15)

Answer:
26 x 35 = 910

Explanation:
In the above-given question,
given that,
35 x 26 = 910
(26 + 30) x (26 + 5) = 56 x 31 = 1736.
(26 x 30) + (26 x 5) = 780 + 130 = 910.
35 x (20 + 60) = 35 x 80 = 2800
Eureka Math Grade 5 Module 2 Lesson 4 Answer Key (16)

c. 34 × 89
Eureka Math Grade 5 Module 2 Lesson 4 Answer Key (17)

Answer:
34 x 89 = 3026

Explanation:
In the above-given question,
given that,
34 x (89) = 3026.
(34 x 8) + (34 x 9) = 272 + 306 = 578.
34 x 89 = 3026.
89 thirty-fours = 89 x 34 = 3026.
Eureka Math Grade 5 Module 2 Lesson 4 Answer Key (18)

Question 2.
Solve using mental math. Draw a tape diagram and fill in the blanks to show your thinking. The first one is partially done for you.
a. 19 × 50 = _____19_____ fifties
Eureka Math Grade 5 Module 2 Lesson 4 Answer Key (19)
Think: 20 fifties – 1 fifty
= ( _____20_____ × 50) – ( ____1______ × 50)
= _____1000_____ – ____50______
= ____950______

Answer:
19 x 50 = 950.

Explanation:
In the above-given question,
given that,
19 x 50
20 x 50 – 1 x 50.
1000 – 50.
950.

b. 11 × 26 = ____11______ twenty-sixes

Think: __10___ twenty-sixes + __1___ twenty-six
= ( _____10_____ × 26) + ( ___1_______ × 26)
= _____260_____ + _____26_____
= _____234_____

Answer:
11 x 26 = 234.

Explanation:
In the above-given question,
given that,
11 x 26
10 x 26 + 1 x 26.
260 + 26.
234.
Eureka Math Grade 5 Module 2 Lesson 4 Answer Key (20)

c. 49 × 12 = ______49____ twelves

Think: ___50__ twelves – 1 twelve
= ( ____50______ × 12) – ( ____1______ × 12)
= ____600______ – _____12_____
= ____588______

Answer:
49 x 12 = 588.

Explanation:
In the above-given question,
given that,
49 x 12
50 x 12 – 1 x 12.
600 – 12.
588.
Eureka Math Grade 5 Module 2 Lesson 4 Answer Key (21)

d. 12 × 25 = ______12____ twenty-fives

Think: ___10__ twenty-fives + __2___ twenty-fives
= ( ____10______ × 25) + ( ____2______ × 25)
= _____250_____ + ____50______
= ____300______

Answer:
12 x 25 = 300.

Explanation:
In the above-given question,
given that,
12 x 25
10 x 25 + 2 x 25.
250 – 50.
300.
Eureka Math Grade 5 Module 2 Lesson 4 Answer Key (22)

Question 3.
Define the unit in word form and complete the sequence of problems as was done in the lesson.
a. 29 × 12 = 29 ____12______

Think: 30 _____12_____ – 1 ____12______
= (30 × ______12____ ) – (1 × _____12_____ )
= ____360______ – ___12_______
= ____348______

Answer:
29 x 12 = 348.

Explanation:
In the above-given question,
given that,
29 x 12
30 x 12 – 1 x 12.
360 – 12.
348.

b. 11 × 31 = 31 __11________

Think: 30 _____11_____ + 1 _____11_____
= (30 × ___11_______ ) + (1 × ___11_______ )
= _______330___ + ____11______
= _____341_____

Answer:

11 x 31 = 341.

Explanation:
In the above-given question,
given that,
11 x 31
30 x 11 + 1 x 11.
330 + 11.
341.

c. 19 × 11 = 19 _____11_____

Think: 20 ____11______ – 1 ______11____
= (20 × ___11_______ ) – (1 × ____11______ )
= ____220______ – ___11_______
= ____209______

Answer:
19 x 50 = 950.

Explanation:
In the above-given question,
given that,
19 x 50
20 x 50 – 1 x 50.
1000 – 50.
950.

d. 50 × 13 = 13 ____50______

Think: 10 _____50_____ + 3 _____50_____
= (10 × ____50______ ) + (3 × ____50______ )
= ___500_______ + ____150______
= ____650______

Answer:
13 x 50 = 650.

Explanation:
In the above-given question,
given that,
13 x 50
10 x 50 + 3 x 50.
500 + 150.
650.

Question 4.
How can 12 × 50 help you find 12 × 49?

Answer:
12 x 50 = 600.

Explanation:
In the above-given question,
given that,
12 x 49 = 12 x (50 – 1).
12 x 49 = 588.
12 x 50 = 600.

Question 5.
Solve mentally.
a. 16 × 99 = ___1584_______

Answer:
16 x 99 = 1584.

Explanation:
In the above-given question,
given that,
16 x 99.
1584.

b. 20 × 101 = ___2020_______

Answer:
20 x 101 = 2020.

Explanation:
In the above-given question,
given that,
20 x 101
20 x 102 – 1.
20 x 101.
2020.

Question 6.
Joy is helping her father to build a rectangular deck that measures 14 ft by 19 ft. Find the area of the deck using a mental strategy. Explain your thinking.

Answer:
The area of the deck = 266 sq ft.

Explanation:
In the above-given question,
given that,
Joy is helping her father to build a rectangular deck that measures 14 ft by 19 ft.
area = l x b.
area = 14 x 19.
area = 266 sq ft.

Question 7.
The Lason School turns 101 years old in June. In order to celebrate, they ask each of the 23 classes to collect 101 items and make a collage. How many total items will be in the collage? Use mental math to solve. Explain your thinking.

Answer:
The total items will be in the college = 2323.

Explanation:
In the above-given question,
given that,
The Lason School turns 101 years old in june.
In order to celebrate, they ask each of the 23 classes to collect 101 items and make a collage.
23 x 101 = 2323.

Eureka Math Grade 5 Module 2 Lesson 4 Answer Key (2024)

FAQs

What grade does Eureka math go to? ›

Eureka Math offers a full complement of Prekindergarten through Grade 12 print materials including Teacher Editions, student workbooks, and more. Spanish language editions are available for Grades K–8.

What are the four core components of a Eureka Math TEKS lesson? ›

A typical Eureka lesson is comprised of four critical components: fluency practice, concept development (including a problem set), application problem, and student debrief (including the Exit Ticket).

What is the purpose of the concept development in Eureka math? ›

The concept development is generally comprised of carefully sequenced problems centered within a specific topic to begin developing mastery via gradual increases in complexity.

What is the hardest math in 5th grade? ›

Some of the hardest math problems for fifth graders involve multiplying: multiplying using square models, multiplying fractions and whole numbers using expanded form, and multiplying fractions using number lines.

What is the hardest math grade? ›

Generally speaking, the most rigorous math courses in high school include Advanced Placement (AP) Calculus AB and BC, AP Statistics, and for some, Multivariable Calculus (which might be offered at your school or at a local college).

Is Eureka Math scripted? ›

Eureka Math is scripted for the teacher and anticipates student responses, which is very useful for studying in advance. This makes each module easy to follow and easy to understand what is expected.

Is Eureka math common core math? ›

Eureka Math is a Common Core math. Eureka Math's framework is entirely built on the Common Core Learning Standards and Progressions for the Common Core State Standards in Mathematics.

What are the 4 parts of the TEKS? ›

Explore how the TEKS are organized by Introduction, Knowledge and Skill Statement, Strand, and Student Expectations across a grade level or course. Recognize and differentiate between cognitive and content expectations noted in the TEKS.

Who is the father of math Eureka? ›

Here's a closer look into this sudden discovery (the “Eureka!” moment): The famous Greek mathematician, physicist, and astronomer, Archimedes was born in 287 BC in Syracuse, a Greek colony in Sicily (an island now part of Italy).

Who created Eureka math? ›

LYNNE MUNSON

At the urging of educators seeking knowledge-building resources, Lynne and her team moved into curriculum development with Common Core curriculum maps in English language arts and then with EngageNY, which later became Eureka Math®.

How many states use Eureka math? ›

We wrote EngageNY Math, and over time we developed that program into Eureka Math. The original OER curriculum is available on the EngageNY and Great Minds sites for free, and it has been downloaded over 13 million times by users in all 50 states, making Eureka Math the most widely used K–5 math program in the country.

What grade level is Eureka Math? ›

Eureka Math Print Materials

New Learn, Practice, Succeed student workbooks (Grades K–8) offer teachers multiple ways to differentiate instruction, provide extra practice, and assess student learning, and are available in Armenian, Arabic, French, Korean, Mandarin, and Spanish.

Why are schools using Eureka Math? ›

Eureka Math, a Common Core-aligned curriculum published by the non-profit Great Minds Inc., equates mathematical concepts to stories, with the aim of developing conceptual understanding.

What kind of math is taught in 5th grade? ›

In fifth grade, students focus on adding, subtracting, multiplying, and dividing whole numbers, fractions, and decimals.

Shoreham-Wading River Central School District ...Shoreham-Wading River School Districthttps://www.swrschools.org ›

Model Lessons for every classroom teacher provided by our Math Coach during every Module taught (6-8 hours of Eureka lessons for each classroom teacher with the...
General · Grades K-5: A Story of Units · Grades 6-12: A Story of Ratios and Functions.
The Eureka Math curriculum supports rigor by integrating a section on fluency, application problems, concept development, and a student debrief in every lesson....

What math is 8th grade level? ›

Eighth-grade math is typically a course in pre-algebra to help prepare students for high school algebra.

What math level is 5th grade? ›

In fifth grade, students focus on adding, subtracting, multiplying, and dividing whole numbers, fractions, and decimals. Your kid will become fluent with computing these types of numbers and understanding the relationship between them. Students should also be able to use these numbers in real-world scenarios.

What is 8th grade advanced math? ›

Eighth graders who score proficient or advanced are considered to have mastered concepts such as number sense and operations; expressions, equations, and inequalities; functions; geometry and measurement; and data, analysis, and statistics.

What grade does prodigy math go up to? ›

Prodigy Math Game features more than 1,500 mathematical skills, aligned with curriculum standards for grades 1 to 8.

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