EL-546W - Calculator SHARP - Free user manual and instructions
Find the device manual for free EL-546W SHARP in PDF.
| Product Type | Scientific calculator |
| Brand | Sharp |
| Model | EL-546W |
| Display | 2-line WriteView LCD |
| Number of Functions | 336 |
| Power Supply | Solar cell with battery backup (LR44) |
| Dimensions (W x D x H) | 85.5 x 17 x 168.5 mm |
| Weight | Approx. 100 g |
| Logic System | Direct Algebraic Logic (D.A.L.) |
| Display Capacity | 10-digit mantissa + 2-digit exponent |
| Memory | 9 independent memory variables |
| Fraction Operations | Yes, with simplification and mixed numbers |
| Complex Number Support | Yes |
| Equation Solver | Yes (Newton method) |
| Statistical Functions | Yes, with SCAT data entry |
| Auto Power Off | Yes (approx. 10 minutes) |
| Battery Life | Approx. 3 years under normal use |
| Cleaning and Maintenance | Wipe with a soft, dry cloth. Do not use solvents |
| Safety Precautions | Do not expose to extreme temperatures, water, or humidity |
| Repair and Spare Parts | Contact Sharp authorized service centers for replacement parts |
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USER MANUAL EL-546W SHARP
©
| Prefijo | Operación | Unidad | |
| k | {kilo} | MATH 1 0 | 10-3 |
| M | {Mega} | MATH 1 1 | 10-6 |
| G | {Giga} {MATH} 1 2 | 10 | 9 |
| T | {Tera} | MATH 1 3 | 10-12 |
| m | {milli} | MATH 1 4 | 10-3 |
| μ | {micro} | MATH 1 5 | 10-6 |
| n | {nano} | MATH 1 6 | 10-9 |
| p | {pico} | MATH 1 7 | 10-12 |
| f | {lemto} | MATH 1 8 | 10 -10 |
Función modificar
[17]
③ Presione 2ndF ALGB.
http://sharp-world.com/calculator/
SHARP
SHARP CORPORATION
EL-506W EL-546W
CALCULATION EXAMPLES
ANWENDUNGSBEISPIELE
EXEMPLES DE CALCUL
EJEMPLOS DE CÁLCULO
EXEMPLOS DE CÁLCULO
ESEMPI DI CALCOLO
REKENVOORBEELDEN
PÉLDASZÁMÍTÁSOK
PŘÍKLADY VÝPOČTŮ
RÄKNEEXEMPEL
LASKENTAESIMERKKEJÄ
ПРИМЕРЫ ВЫЧИСЛЕНИЙ
UDREGNINGSEKSEMPLER
ตัวอย่างการดำเนวน
نماذج للحسابات
计算例子
CONTOH-CONTOH PENGHITUNGAN
CONTOH-CONTOH PERHITUNGAN
[1] ▲ ▼
| 13(5+2)= | 0√√c 3 [ ] 5 [ + ] 2 [ ] - | 21. |
| 23×5+2= | 3 [ × ] 5 [ + ] 2 [ - | 17. |
| 33×5+3×2= | 3 [ × ] 5 [ + ] 3 [ × ] 2 [ - | 21. |
| →1 | 2ndF ▲ | |
| →3 | ▼ | |
| →3 | ▼ | |
| →2 | ▲ |
[2] SET UP
| 100000÷3= | ||||
| [NORM1] | ONVC | 100000 | ÷3 | -33'333.33333 |
| →[FIX] | SETUP | 1 | 0 | 33'333.33333 |
| [TAB 2] | SETUP | 2 | 2 | 33'333.333 |
| →[SCI] | SETUP | 1 | 1 | 3.33×10 64 |
| →[ENG] | SETUP | 1 | 2 | 33.33×10 63 |
| →[NORM1] | SETUP | 1 | 3 | 33'333.33333 |
| 3÷1000= | ||||
| [NORM1] | ONVC | 3 | ÷1000 | =0.003 |
| →[NORM2] | SETUP | 1 | 4 | 3.×10 68 |
| →[NORM1] | SETUP | 1 | 3 | 0.003 |
[3] + - × ÷ ( ) +/- Exp
| 45+285÷3= | ON/C 45 + 285 ÷ 3 - | 140. | ||||
| 18+6/15-8 = | ( ) 18 (+) 6 ( ) ÷( ) 15 (-) 8 = | 3.428571429 | ||||
| 42×(-5)+120= | 42 [ × ] (+/-) 5 (+) 120 (-)*1 (5 (+/-)) *1 | -90. | ||||
| (5×10^n)·(4×10^3)= | 5 Eo 3 ÷ 4 Ep+/- 3 - | 1'250'000. | ||||
[4]
| 34+57= 34 + 57 = | 91. | |||
| 45+57= 45 = | 102. | |||
| 68×25= | 68 [×] | 25 - | 1'700. | |
| 68×40= | 40 = | 2'720. | ||
| [5] | sin | cos | tan | sin-1 | cos-1 | tan-1 | π | hyp | arc hyp |
| ln | log | ε4 | 104 | X-1 | X2 | X3 | √ | yx | |
| √ | √ | nl | nPr | nCr | % |
| sin60[°]= | 2N | 60 | - | 0.866025403 | |
| cos π/4 [rad]= | -UP | 0 | 1 | 0.707106781 | |
| 2ndF | π | ÷ | 4 | - | |
| -1=[g] | -UP | 0 | 2 | 2ndF | 1 - 50. |
| -UP | 0 | 0 | |||
| ( 1.5 + 1.5)2 = | ( & \\ sin & 1.5 ) | ( hyp \\ x2 ) | - | 20.08553692 | |
| 5/7 = | 2ndF | ( 0 \\ tan \\ ÷ ) | ( 5\\ = ) | 0.895879734 |
| In 20 = | 20 - | 2.995732274 |
| log 50 = | 50 - | 1.698970004 |
| e 3 = | 2ndF x 3 - | 20.08553692 |
| 10 1,7 = | 2ndF 10 1 1.7 - | 50.11872336 |
| 1/6 + 1/7 = | 6 2ndF -1 + 7 2ndF -1 - | 0.309523809 |
| 8 -2 -3 4 × 5 2 = | 8 x +/- 2 - 3 x1 4 × 5 2 - | -2'024.984375 |
| (12 y ) 14 = | 12 x 3 x1 4 2ndF -1 - | 6.447419591 |
| 8 3 | 8 a - | 512. |
| √49 -4 √81 = | 2ndF x 49 - 4 2ndF x 81 - | 4. |
| 3√27 | 2ndF x 27 - | 3. |
| 4! = | 4 2ndF x - | 24. |
| 16P3 = | 10 2ndF 3 - | 720. |
| 5C2 = | 5 2ndF 2 - | 10. |
| 500×25%= | 500 × 25 2ndF % | 125. |
| 120÷400=?% | 120 ÷ 400 2ndF % | 30. |
| 500+(500×25%)= | 500 + 25 2ndF % | 625. |
| 400-(400×30%)= | 400 - 30 2ndF % | 280. |
• The range of the results of inverse trigonometric functions
- Der Ergebnisbereich für inverse trigonemetrische Funktionen
- Plage des résultats des fonctions trigonométriques inverses
- El rango de los resultados de funciones trigonométricas inversas
• Gama dos resultados das trigonométricas inversas
- La gamma dei risultati di funzioni trigonometriche inverse
- Het bereik van de resultaten van inverse trigonometrie
- Az inverz trigonometriai funkciók eredmény-tartománya
- Rozsah výsledků inverzních trigonometrických funkcí
- Omfång för resultaten av omvända trigonometriska funktioner
- Käänteisten trigonometristen funktioiden tulosten alue
• Диапазон результатов обратных тригонометрических функций
- Område for resultater af omvendte trigonometriske funktioner
- พิสัยของผลลัพทของ หึ่งกรุนตรีโกนมตริกผกผืน
• نطاق نتائج الدول المثلثية المع Kosovoة
- 反三角函数计算结果的范围
• Julat hasil fungsi trigonometri songsang
- Kisaran hasil fungsi trigonometri inversi
| θ = -1x,θ = -1x | θ = -1x | |
| DEG | - 90 ≤ θ ≤ 90 | 0 ≤ θ ≤ 180 |
| RAD | - π /2 ≤ θ ≤ π /2 | 0 ≤ θ ≤ π |
| GRAD | - 100 ≤ θ ≤ 100 | 0 ≤ θ ≤ 200 |
[6] d/dx fd x
| d/dx ( x4 - 0.5x3 + 6x2) | ON/C | ALPHA | ν T | 4 | - | 0.5 | ALPHA | |
| x = 2 | 2 | + | 6 | NLPHA | * | |||
| dx=0.00002 | 2ndF | [ddx] | 2 | [ENT] | [ENT] | 50. | ||
| x = 3 | ENT | 3 | ENT | 0.001 | ENT | 130.5000029 | ||
| dx = 0.001 | ||||||||
| 08( x2 - 5) dx | ON/C | ALPHA | 2 | [-] | 5 | |||
| n=100 | ddx | 2 | ENT | 8 | ENT | [ENT] | 138. | |
| n=10 | ENT | [ENT] | [ENT] | 10 | [ENT] | 138. |
[7] DRG▶
| 90° → [rad] | ONC 90 2ndF DRG▶ | 1.570796327 |
| → [g] | 2ndF DRG▶ | 100. |
| → [°] | 2ndF DRG▶ | 90. |
| sin-10.8 = [°] | 2ndF[ sin-1 0.8 [- ] | 53.13010235 |
| → [rad] | 2ndF DRG▶ | 0.927295218 |
| → [g] | 2ndF DRG▶ | 59.03344706 |
| → [°] | 2ndF DRG▶ | 53.13010235 |
[8] ALPHA RCL STO M+ M- ANS F1 F2 F3 F4
| ON/C | 8 × 2 | STO | M | 16. | |
| 24 ÷ (8 × 2) = (8 × 2) × 5 = | 24 [÷] | [ALPH] | [M] | [-] | 1.5 |
| ALPHA | M | × | 5 - | 80. | |
| ON/C | [STO] | M | 0. | ||
| 150×3:M1 | 150 [×] | 3 [M+] | 450. | ||
| +\250:M2=M1+250 | 250 [M+] | 250. | |||
| -]M2×5% | [RCL] | [M] | × | 5 [2ndF, %] | 35. |
| M | [2ndF] | [M] | [PCL] | [M] | 665. |
| 1=¥110 | 110 [STO][Y] | 110. |
| ¥26,510=? | 26510 ÷ RCL Y - | 241. |
| $2,750=¥? | 2750 [X][RCL][Y] - | 302'500. |
| r=3cm (r→Y) | 3 STO Y | 3. |
| πE=? | [2ndF][π][Alpha][Y][X2][-] | 28.27433388 |
| 24/4+6 = 2.4...(A) | 24 ÷ [4 + 6] - | 2.4 |
| 3×(A)+60÷(A)= | 3 X [Alpha](ANS) + 60 ÷ | |
| ALPHANS= | 32.2 | |
| πP⇒F1 | [2ndF][π][Alpha][Y][X2] | |
| STOF1 | F1 | |
| 3 STO Y | 3. | |
| V=? | RCL F1 X 4 ÷ 3 - | 37.69911184 |
[9]
| 6+4=ANS | 6 + 4 - | 10. |
| ANS+5 | + 5 = | 15. |
| 8×2=ANS | 8 [×] 2 - | 16. |
| ANS 2 | ' - | 256. |
| 44+37=ANS | 44 + 37 - | 81. |
| = | 2ndF [√] (-) | 9. |
[10] a b/c c d/c
| 31/2 + 4/3 = [acb] | (ONC) \\ 4 3 abcb \\ abcb 1 abcb \\ - 2 + \\ - | ||
| →[a.xxx] | abcb | 4r56* | |
| →[d/c][2ndF][s/c] | 4.833333333 | ||
| 29r6 | |||
| 102/3 = | 2ndF 10+ \\ abcb 2 abcb \\ y+ 3 - \\ - | 4.641588834 | |
| ( 7/5 )5 = | 7 abcb \\ abcb 5 y+ \\ y+ 5 - \\ - | 16807r3125 | |
| ( 1/8 )1/3 = | 1 abcb \\ abcb 8 y+ \\ y+ 1 abcb \\ abcb 3 \\ - | 1r2 | |
| √64/225 = | 2ndF [√ ] 64 abcb \\ abcb 225 - \\ - | 8r-15 | |
| 2/3 = | 2 \\ 3 y+ \\ y+ 3 \\ 4 abcb \\ - | 8r81 | |
| 1.2/2.3 = | 1.2 abcb \\ abcb 2.3 - \\ - | 12r23 | |
| 1°2'3'' = | 1 OTWS 2 OTWS 3 abcb \\ abcb 2 - \\ - | 0°31'1.5'' | |
| 1× 1092× 109 = | 1 Exp 3 abcb \\ abcb 2 Exp 3 - \\ - | 1r2 | |
| A=7 | ONC 7 STG A | 7. | |
| 4/A = | 4 abcb \\ abcb ALPHA A A - \\ - | 4r7 | |
| 1.25 + 2/5 = [a.xxx] | 1.25 + \\ - 2 abcb \\ abcb 5 = \\ - | 1.65 | |
| →[a c ] abc | 1r13,20 |
*4r5r6=45/6
[11] BIN PEN OCT HEX DEC NEG NOT AND OR XOR XNOR
| DEC(25)→BIN | ONC [2ndF] | DEC 25 | 2ndF | 3IX | 11001 b |
| HEX(1AC) | [2ndF] | EX 1AC | |||
| →BIN [2ndF] | [2ndF] | 110101100 b | |||
| →PEN [2ndF] | [2ndF] | 3203 p | |||
| →OCT | [2ndF] | [2ndF] | 654 g | ||
| →DEC | [2ndF] | [2ndF] | 428. | ||
| BIN(1010–100) | [2ndF] | [2ndF] | [1010] | - 100 | 10010 b |
| ×11 = | X | 11 | - | ||
| BIN(111)→NEG | NEG | 111 | - | 1111111001 h | |
| HEX(1FF)+ | [2ndF] | HEX 1FF | [2ndF] | [2ndF] + | |
| OCT(512)= | 512 | - | 1511 g | ||
| HEX(?) | [2ndF] | HEX | 349 H | ||
| 2FEC- | ONC | STC | M | [2ndF] | 2FEC - |
| 2C9E=(A) | 2C9E | M+ | 34E H | ||
| +)2000- | 2000 | - | |||
| 1901=(B) | 1901 | M+ | 6FF H | ||
| (C) | RCL | M | A4d H | ||
| 1011 AND | ONC | 2ndF | [2ndF] | 1011 AND | |
| 101 = (BIN) | 101 | - | 1 h | ||
| 5A OR C3 = (HEX) | [2ndF] | [2ndF] | 5A | [2ndF] | db H |
| NOT 10110 = (BIN) | [2ndF] | [2ndF] | [2ndF] | 10110 [ - ] | 1111101001 h |
| 24 XOR 4 = (OCT) | [2ndF] | [2ndF] | 24 | [XOR] 4 | 20 g |
| B3 XNOR | [2ndF] | [2ndF] | B3 | [XNOR] | |
| 2D = (HEX) | 2D | - | FFFFFFF61 H | ||
| →DEC | [2ndF] | [2ndF] | -159. |
[12] D'M'S ↔DEG MATH (→sec, →min)
| 12°39'18.05"→[10] [2ndF]↔DE3 | ON/C 12 DMS 39 DMS 18.05 | 12.65501389 |
| 123.678→[60] | 123.678 [2ndF]↔DE3 | 123°40'40.8" |
| 3h30m45s +6h45m36s = [60] | 3 (DMS) 30 (DMS) 45 (+) 6 (DMS)45 (DMS) 36 = | 10°16'21." |
| 1234°56'12" +0°0'34.567" = [60] | 1234 (DMS) 56 (DMS) 12 +0 (DMS) 0 (DMS) 34.567 = | 1234°56'47." |
| 3h45m -1.69h = [60] | 3 (DMS) 45 - 1.69 =2ndF ↔DE0 | 2°3'36." |
| sin62°12'24" = [10] | sin 62 (DMS) 12 (DMS) 24 = | 0.884635235 |
| 24"→[ " ] | 24 (DMS) MATH 2 | 86'400. |
| 1500"→[ ' ] | 0 (DMS) 0 (DMS) 1500 (MATH) 3 | 25. |
[13] →rθ →xy , ←→
| 6NUC 6 2ndF , 4 | ||
| x = 6 y = 4 → r = \\ θ = [°] | 2ndF → θ[r] | 7.211102551 |
| 2ndF [θ] | 33.69006753 | |
| 2ndF [r] | 7.211102551 | |
| 14 2ndF , 36 | ||
| r = 14 θ = 36[°] → x = \\ y = | 2ndF ,y[x] | 11.32623792 |
| 2ndF [y] | 8.228993532 | |
| 2ndF [x] | 11.32623792 |
[14] CNST
| V0 = 15.3m/s | 15.3 × 10 + 2 2ndF - × |
| t = 10s | 03 × 10 - = 643.3325 |
| V0t + 1/2gt2 = ?m |
[15] CONV
| 125yd = ?m | ONJC 125 [2ndF] [CONV] 5 [= ] | 114.3 |
[16] MATH (k, M, G, T, m, μ, n, p, f)
| 100m×10k= 100 [MATH] | 1 | 4 | × | ||
| 10 | [MATH] | 1 | 0 | = |
[17] MDF SET UP
| 5÷9=ANS | ON/C | SET UP | 1 | 0 | SET UP | 2 | 1 | |
| ANS×9=[FIX,TAB=1] | 5 | ÷ | 9 | = | 0.6 | |||
| × | 9 | = | *1 | 5.0 | ||||
| 5 | ÷ | 9 | = | 2ndF | MDF | 0.6 | ||
| × | 9 | = | *2 | 5.4 | ||||
| SET UP | 1 | 3 | ||||||
*1 5.55555555555555×10 -1 ×9
*2 0.6×9
[18] MATH (SOLV)
| sin x-0.5 | ON/C | sin | ALPHA | x | - | 0.5 |
| Start= 0 | MATH | 0 | 0 | 'ENT | 'ENT | |
| Start= 180 | ENT | 180 | ENT | 'ENT | 150. |
[19] ALGB
| MODE 0 | |||
| f(x) = x2 - 3x2 + 2 | ALPHA X | yx | 3 (-) 3 (ALPHA) |
| X | X2 | + 2 (2ndF) [ALGB] | |
| x = -1 | 1 (+/-) ENT | ||
| x = -0.5 | 2ndF [ALGB] | 0.5 (+/-) ENT | |
| 2 + B2 | 2ndF √ | ( ALPHA A | Xx + |
| ALPHA B | X2 | 2ndF [ALGB] | |
| A = 2, B = 3 | 2 ENT | 3 ENT | 3.605551275 |
| A = 2, B = 5 | 2ndF [ALGB] | ENT 5 (ENT) | 5.385164807 |
[20] DATA (xy) Sx σX n x xi SY σy y yi xy r a b c x' y' ↔ MATH ( → t, P(, Q(, R))
| DATA | ||
| 95 [MODE (1) (0) | 0. | |
| 80 95 [DATA] | 1. | |
| 80 80 [DATA] | 2. | |
| 75 [DATA] | 3. | |
| 75 75 [(x,y)] 3 [DATA] | 4. | |
| 75 50 [DATA] | 5. | |
| 50 | ||
| = [RCL] ( ) | 75.71428571 | |
| σx = [RCL] (Gx) | 12.37179148 | |
| n = [RCL] (n) | 7. | |
| x = [RCL] (Σx) | 530. | |
| x2 = [RCL] (Σx^2) | 41'200. | |
| sx = [RCL] (Sx) | 13.3630621 | |
| sx2 = (X^2) (=) | 178.5714286 | |
| (95-x)/s.x × 10+50= | (95 - [ALPHA] (X) )÷ [ALPHA] (Sx) (X) 10+ 50 = | 64.43210706 |
| x = 60 → P(t) ? | [MATH 1 60 [MATH 0 , } = | 0.102012 |
| t = -0.5 → R(t) ? | [MATH 3 0.5 (+/-) ] = | 0.691463 |
| x y [MODE 1 1 | 0. | |
| 2 5 2 [(x,y) 5 DATA] | 1. | |
| 2 5 [DATA] | 2. | |
| 12 24 12 [(x,y) 24 DATA] | 3. | |
| 21 40 | 21 [(x,y) 40 [(x,y) 3 [DATA] | 4. |
| 21 40 15 [(x,y) 25 DATA] | 5. | |
| 21 40 [RCL] (a) | 1.050261097 | |
| 15 25 [RCL] (b) | 1.826044386 | |
| [RCL] (r) | 0.995176343 | |
| [RCL] (Sx) | 8.541216597 | |
| [RCL] (Sy) | 15.67223812 | |
| x=3 → y'=? | 3 [2ndF, y'] | 6.528394256 |
| y=46 → x'=? | 46 [2ndF, X'] | 24.61590706 |
| x y [MODE 1 2 | 0. | |
| 12 41 12 [(x,y) 41 DATA] | 1. | |
| 8 13 8 [(x,y) 13 [DATA] | 2. | |
| 5 2 5 [(x,y) 2 [DATA] | 3. | |
| 23 200 23 [(x,y) 200 [DATA] | 4. | |
| 15 71 15 [(x,y) 71 [DATA] | 5. | |
| [RCL] a | 5.357506761 | |
| [RCL] b | -3.120289663 | |
| [RCL] c | 0.503334057 | |
| x=10 → y'? = ? | 10 [2ndF, y'] | 24.4880159 |
| y=22 → x'? = ? | 22 [2ndF] (x') | 9.63201409 |
| [2ndF] ←→ | -3.432772026 | |
| [2ndF] ←→ | 9.63201409 | |
[21] DATA ▲ ▼
| DATA | |
| 30 MODE 1 0 | |
| 40 30 [DATA] | |
| 40 40 (kx) 2 DATA | |
| 50 50 [DATA] | |
| ↓ | |
| DATA | |
| 30 ▼ ▼ ▼ | |
| 45 45 45 3 DATA | |
| 45 ▼ 60 [DATA] |
[22] = x/n σx = √ x2 - n2n
sx = √ x ^ 2 - n x ^ 2n - 1 amp; x = x _ 1 + x _ 2 + ... + x _ n amp; x ^ 2 = x _ 1 ^ 2 + x _ 2 ^ 2 + ... + x _ n ^ 2
y = y/n σy = √ y ^ 2 - n y ^ 2n
sy = √ y ^ 2 - n y ^ 2n - 1 xy = x _ 1 y _ 1 + x _ 2 y _ 2 + ... + xny _ n y = y _ 1 + y _ 2 + ... + y _ n y ^ 2 = y _ 1 ^ 2 + y _ 2 ^ 2 + ... + y _ n ^ 2
[23]










Standardization conversion formula
Standard Umrechnungsformel
Formule de conversion de standardisation
Fórmula de conversión de estandarización
Fórmula de conversão padronizada
Formula di conversione della standardizzazione
Standaardisering omzettingsformule
Standard átváltási képlet
Vzorec pro prepočet rozdělení
Omvandlingsformel för standardisering
Normituksen konversiokaava
Формула стандартизованного преобразования
Omregningsformel for standardisering
สูตรแคลังมาตรฐาน
صيلة التحويل لتوحيد المقياس
标准化的转换公式
Rumus penukaran pemlawalan
Rumus konversi standarisasi
[24] MODE (2-VLE)

| MODE 2 D | ||
| 2x + 3y = 4 | 2 ENT 3 ENT 4 ENT | |
| 5x + 6y = 7 | 5 ENT 6 ENT 7 | |
| x = ? | ENT [x] | -1. |
| y = ? | ENT [y] | 2. |
| det(D) = ? | ENT [det(D)] | -3. |
[25] MODE (3-VLE)

| MODE 2 1 | ||
| x+y-z=9 | 1 [ENT] 1 [ENT] 1 [+/-] ENT 9 [ENT] | |
| 6y+6y-z=17 | 6 [ENT] 6 [ENT] 1 [+/-] ENT 17 [ENT] | |
| 14x-7y+2z=42 | 14 [ENT] 7 [+/-] ENT 2 [ENT] 42 | |
| x=? | [ENT] [y] | 3.238095238 |
| y=? | [ENT] [y] | -1.638095238 |
| z=? | [ENT] [z] | -7.4 |
| det(D)=? | [ENT] [det(D)] | 105. |
[26] MODE (QUAD, CUBIC)
| MODE 2 2 | ||
| 3x2 + 4x - 95 = 0 | 3 [ENT] 4 [ENT] +/− 95 | |
| x1 = ? [ENT] | 5. | |
| x2 = ? [ENT] | -6.333333333 | |
| 2ndF ENT | ||
| MODE 2 3 | ||
| 5x2 + 4x2 + 3x + 7 = 0 | 5 [ENT] 4 [ENT] 3 [ENT] 7 | |
| x1 = ? [ENT] | -1.233600307 | |
| x2 = ? [ENT] | 0.216800153 | |
| 2ndF ←→ | ||
| x3 = ? [ENT] | 1.043018296; | |
| 2ndF ←→ | ||
[27] MODE (CPLX)
| [MODE] [3] | ||
| (12-6i) + (7+15i) - (11+4i) = | 12 [—] 6 [i] + 7 [+] 15 [i] — | |
| [11] [+] 4 [i] [—] [x] | 8. | |
| [2ndF] [↔] [y] | 5. i | |
| [2ndF] [↔] [x] | 8. | |
| 6×(7-9i) × (-5+8i) = | 6 [×] [7] [—] 9 [i] [—] [x] | |
| [5] [+-] [+] 8 [i] [—] [x] | 222. | |
| [2ndF] [↔] [y] | 606. | |
| 16×(sin30°+icos30°)+(sin60°+icos60°)= | 16 [×] [—] [sin] 30 [+] | |
| [i] [cos] 30 [—] [—] [sin] 60 [+] | ||
| [i] [cos] 60 [—] [x] | 13.85640646 | |
| [2ndF] [↔] [y] | 8. i | |

| (1+i) | 2ndF→xy 1+ i= | 1. |
| ↓ | 2ndF→r# [r] | 1.414213562 |
| r=?, θ=? | 2ndF←→ [θ] | 45. |
| (2-3i)2= | 2ndF→xy 2-3 i|X2 | -5. |
| [x] | -12. | |
| [2ndF]←→ [v] | ||
| 1/1+i= | 1+ j 2ndF X - [v] | 0.5 |
| [2ndF]←→ [v] | -0.5j | |
| CONJ(5+2i) | [MATH][0][1]5[+]2[i][i][-][v] | 5. |
| [2ndF]←→ [v] | 2. |
[28] MODE (MAT)
| [1 2]→ matA | MODE 4▼ 2 DATA 2 DATA 1 DATA 2 DATA3 DATA 4 DATAON/G MATH 2 0[▼ 2 DATA 2 DATA]3 [DATA] 1 [DATA] 2 [DATA] 6 [DATA]ON/G MATH 2 1 |
| [3 1]→ matB | |
| matA × matB = [7 13/17 27] | ON/C MATH 0 5 X MATH 0 1 - |
| matA-1= [-2 1/1.5 -0.5] | ON/C MATH 0 0 (2ndF) x-1 = |
| dim(matA,3,3) = [1 2 0/3 4 0/0 0] | ON/C MATH 3 0 MATH 0 02ndF , 3 2ndF , 3 ) - |
| fill(5,3,3) = [5 5 5/5 5 5/5] | ON/C MATH 3 1 5 2ndF ,3 2ndF , 3 ) = |
| cumul matA = [1 2/4 6] | ON/C MATH 3 2 MATH 0 0 - |
| aug(matA,matB) = [1 2 3 1/3 4 2 6] | ON/C MATH[3][3]MATH[0][0]2ndF , MATH 0 1 ) - |
| identity 3 = [1 0 0/0 1 0/0 1] | ON/C MATH 3 4 3 - |
| rnd_mat(2,3) | ON/C MATH 3 5 2 2ndF , 3 ] = |
| det matA = -2 | ON/C MATH 4 0 MATH 0 8 = |
| trans matB = [3 2/1 6] | ON/C MATH 4 1 MATH 0 1 - |
| mat → list L1: {1 3}L2: {3 2} | ON/C MATH 5 |
[29] MODE (LIST)
| MODE 5 | |
| 2,7,4→L1 | 3 [DATA] 2 [DATA] 7 [DATA] 4 [DATA] |
| -3,-1,-4→L2 | ONJC MATH 2 0 |
| 3 [DATA] | |
| +/- 3 [DATA] +/- 1 [DATA] +/- 4 [DATA] | |
| ONJC MATH 2 1 | |
| L1+L2 = (-1 6 0) | ONJC MATH 0 0 + MATH 0 1 = |
| sortA L1 = {2 4 7} | ONJC [MATH 3 0 [MATH 0 0] - |
| sortD L1 = {7 4 2} | ONJC [MATH 3 1 [MATH 0 0] - |
| dim(L1,5) = {2 7 4 0 0} | ONJC MATH 3 2 [MATH 0 0 |
| 2ndF , 5 1 = | |
| fill(5,5) = {5 5 5 5 5} | ONJC MATH 3 3 5 2ndF , 5 1 = |
| cumul L1 = {2 9 13} | ONJC [MATH 3 4 [MATH 0 0] - |
| df_list L1 = {5 -3} | ONJC MATH 3 5 [MATH 0 0] = |
| aug(L1,L2) = {2 7 4 -3 -1 -4} | ONJC [MATH 3 8 [MATH 0 0] - |
| 2ndF , MATH 0 1 ) = | |
| min L1 = 2 | ONJC [MATH 4 0 [MATH 0 0] - |
| max L1 = 7 | ONJC [MATH 4 1 [MATH 0 0] - |
| mean L1 = 4.333333333 | ONJC [MATH 4 2 [MATH 0 0] - |
| med L1 = 4 | ONJC [MATH 4 3 [MATH 0 0] - |
| sum L1 = 13 | ONJC [MATH 4 4 [MATH 0 0] - |
| prod L1 = 56 | ONJC [MATH 4 5 [MATH 0 0] - |
| stdDv L1 = 2.516611478 | [0NC] [MATH] [4] [6] [MATH] [0] [0] [-] |
| vari L1 = 6.333333333 | [0NC] [MATH] [4] [7] [MATH] [0] [0] [-] |
| o_prod(L1,L2) = {-24 -4 19} | [0NC] [MATH] [4] [8] [MATH] [0] [0] [2ndF], [MATH] [0] [1] [-] |
| i_prod(L1,L2) = -29 | [0NC] [MATH] [4] [9] [MATH] [0] [0] [2ndF], [MATH] [0] [1] [-] |
| abs L2 = 5.099019514 | [0NC] [MATH] [4] [A] [MATH] [0] [1] = |
| list → matA matA: [2 -3] [7 -1] [4 -4] | [0NC] [MATH] [6] |
[30]
| FunctionFunktionFonctionFunciónFunçãoFunzioniFunctieFüggvény Megengedett számítási tartományFunkceFunktionFunktioФункцияFunktion fin grn الله函数FungsiFungsi | Dynamic rangezulässler BereichPlage dynamiqueRango dinámicoGama dinámicaCampi dinamiciRekencapaciteitDynamic rozsahDefinitionsomrádeDynaaminen alaДинамический диапазонDynamikomráde fin grn الله的なطانيسيكی取值范围Julat dinamikKisaran dinamis |
| sin x, cos x,tan x | DEG: |x| < 1010(tan x : |x| ≠ 90 (2n-1))*RAD: |x| < π/180 × 1010 (tan x : |x| ≠ π/2 (2n-1))*GRAD: |x| < 10/9 × 1010 (tan x : |x| ≠ 100 (2n-1))* |
| sin-x, cos-x | |x| ≤ 1 |
| tan-1x,3y |x| < 10 | 100 |
| ln x, log x | 10-69≤ x < 1060 |
| yx | • y > 0: -1060< x log y < 100• y = 0: 0 < x < 1010• y < 0: x = n(0 < |x| < 1: 1/x = 2n-1, x ≠ 0)*,-10-100< x log |y| < 100 |
| xy | • y > 0: -1060< 1/x log y < 100 (x ≠ 0)• y = 0: 0 < x < 1010• y < 0: x = 2n-1(0 < |x| < 1: 1/x = n, x ≠ 0)*,-10-100< 1/x log |y| < 100 |
| e' | -10100< x ≤ 230.2585092 |
| 10x | -10100< x < 100 |
| sinh x, cosh x,tanh x | |x| ≤ 230.2585092 |
| sinh-1x |x| < 10 | 50 |
| cosh-1x | 1 ≤ x < 1050 |
| tanh-1x | |x| < 1 |
| x2 | |x| < 1060 |
| x3 | |x| < 2.15443469 × 1063 |
| y' | 0 ≤ x < 10100 |
| x-1 | |x| < 10100(x ≠ 0) |
| n! | 0 ≤ n ≤ 69* |
| nPr | 0 ≤ r ≤ n ≤ 99999999999*n!/(n-t)! < 10100 |
| nCr | 0 ≤ r ≤ n ≤ 99999999999*0 ≤ r ≤ 69 n!/(n-t)! < 10100 |
| ←DEG, D*M'S | 0"0"0.00001" ≤ |x| < 10000" |
| x, y → r, 0 | 2 + y2 < 1060 |
| r, θ → x, y | 0 ≤ r < 10100DEG: |θ| < 1040RAD: |θ| < π/180 × 1010GRAD: |θ| < 10/9 × 1010 |
| DRG▶ | DEG→RAD, GRAD→DEG: |x| < 10100RAD→GRAD: |x| < π/2 × 1069 |
| (A+Bi)+(C+Di) | |A + C| < 1060, |B + D| < 10600 |
| (A+Bi)-(C+Di) | |A - C| < 1060, |B - D| < 10600 |
| (A+Bi)×(C+Di) | (AC - BD) < 10100(AD + BC) < 10100 |
| (A+Bi)÷(C+Di) | + BDC2 + D2 < 10-100 - ADC2 + D2 < 10-100 C0 + D0 ≠ 0 |
| →DEC | DEC : |x| ≤ 9999999999 |
| →BIN | BIN : 100000000 ≤ x ≤ 1111111111 |
| →PEN | |
| →OCT | PEN : 2222222223 ≤ x ≤ 4444444444 |
| →HEX | |
| AND | OCT : 4000000000 ≤ x ≤ 7777777777 |
| OR | |
| XOR | HEX : FDABF41C01 ≤ x ≤ FFFFFFFFFF |
| XNOR | |
| NOT | BIN : 1000000000 ≤ x ≤ 1111111111 |
| PEN : 2222222223 ≤ x ≤ 4444444444 | |
| OCT : 4000000000 ≤ x ≤ 7777777777 | |
| HEX : FDABF41C01 ≤ x ≤ FFFFFFFFFF | |
| NEG | BIN : 1000000001 ≤ x ≤ 1111111111 |
| PEN : 2222222223 ≤ x ≤ 4444444444 | |
| OCT : 4000000001 ≤ x ≤ 7777777777 | |
| HEX : FDABF41C01 ≤ x ≤ FFFFFFFFFF | |
* n, r: integer / ganze Zahlen / entier / entero / inteiro / intero / geheel getal / egész számok / celé číslo / heltal / kokonaisluku / целые / heltal / จำนวนเต็ม / عدد صحیح / 整数 / integer / bilangan bulat
In Europe:
This equipment complies with the requirements of Directive 89/336/EEC as amended by 93/68/EEC.
METRIC CONVERSIONS
x 2ndF CONV 1 — 44
| No. | UNIT | No. | UNIT | No. | UNIT |
| 1 | in→cm | 16 | kg→lb | 31 | J→cal r |
| 2 | cm→in | 17 | °F→°C | 32 | cal r →J |
| 3 | ft→m | 18 | °C→°F | 33 | hp→W |
| 4 | m→ft | 19 | gal (US)→ | 34 | W→hp |
| 5 | yd→m | 20 | →gal (US) | 35 | ps→W |
| 6 | m→yd | 21 | gal (UK)→ | 36 | W→ps |
| 7 | mile→km | 22 | →gal (UK) | 37 | kgf/cm→Pa |
| 8 | km→mile | 23 | fl oz (US)→m | 38 | Pa→kgf/cm 2 |
| 9 | n mile→m | 24 | m →fl oz (US) | 39 | atm→Pa |
| 10 | m→n mile | 25 | fl oz (UK)→m | 40 | Pa→atm |
| 11 | acre→m 2 | 26 | m →fl oz (UK) | 41 | mmHg→Pa |
| 12 | m 2 →acre | 27 | J→cal | 42 | Pa→mmHg |
| 13 | oz→g | 28 | cal→J | 43 | kgf·m→J |
| 14 | g→oz | 29 | J→cal 15 | 44 | J→kgf·m |
| 15 | lb→kg | 30 | cal 15 →J |